List of Publications

(for reprints please contact San Ping Jiang)

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List of publications, patents and patent applications

 

 

Books:

  1. S.P. Jiang and Scott Barnett, “Solid Oxide Fuel Cells: Status and Opportunities of Key Engineering Materials”, Springer-Verlag, to be completed in 2009.

 

Invited Chapters:

  1. SP Jiang, “Chapter 31 – Thin coating technologies and applications in high temperature solid oxide fuel cells” in Handbook of Nanostructured Thin Films and Coatings, Three-Volume Set, Edited by Sam Zhang, CRC Press (to be completed in June 2009).

 

  1. S.P. Jiang and Jian Li, 2009, “Chapter 3 - Cathodes” in Solid Oxide Fuel Cells: Materials Properties and Performance, Edited by Jeffrey W. Fergus, Rob Hui, Xianguo Li, David P. Wilkinson, and Jiujun Zhang, CRC Press, Taylor and Francis Group, pp. 131-177.

 

  1. S.P. Jiang, J.G. Love, and S.P.S. Badwal, 1997, “Electrochemical techniques in studies of solid ionic conductors” in Electrical Properties of Oxide Materials, Edited by J. Nowotny and C.C. Sorrell, Trans Tech Publications, Zurich, Switzerland (Key Engineering Materials, 125-126) pp.81-132.

 

Patents and Patent Applications:

 

5.       Jiang San Ping, Tang Haolin and Tang Ee Ho, “High Temperature PEM Fuel Cell with ordered HPW Embedded in Mesoporous Silica as Proton Exchange Membrane”, US Provisional Patent Application No. 61/050,368, 5 May 2008.

 

6.       Jiang San Ping, Wang Xin and Wang Shuangyin, “A method to synthesize Pt, Pd and noble metal nanoparticles on polyelectrolyte-functionalized carbon nanotubes and their application in fuel cells”, US Provisional Patent Application No. 61/013,909, 14 December 2007.

 

7.       Zhang Yujun, Zhang Lan, Jiang San Ping and Gong Hongyu, “A process to synthesize cathode nano-powders of solid oxide fuel cells”, China Patent No. ZL 2006 1 0070564.8, 31 December 2008.

 

8.       Zhang Lan, Zhang Yujun, Jiang San Ping, kwek Wen Rui, and Gong Hongyu, “A process to fabricate anode-supported solid oxide fuel cells”, China Patent No. ZL 2007 1 0013401.0, 31 December 2008.

 

9.       A.C.C. Tseung, S.P. Jiang, Y.Z. Chen, and J.K. You, "Process for the electrochemical preparation of porous metal", PCT Int. Appl. WO 9000208 A1, 11 Jan 1990, Priority: GB 88-15494, 29 June 1988.

 

10.    A.C.C. Tseung, S.P. Jiang, H. Shen, and P.K. Shen, "Water-free coating compositions and the coated substrates", PCT Int. Appl. WO 9204297 A1, 19 March 1992, Priority: GB 90-19037, 31st August 1990.

 

 

Journal Papers:

2009

  1. Y Shen, MN Liu, TM He, SP Jiang, 2010, “A potential interconnect material for solid oxide fuel cell: Nd0.75Ca0.25Cr0.98O3”, Journal of Power Sources, 195, 977-983.
  2. SF Lu, DL Wang, SP Jiang, Y Xiang, JL Lu, J Zeng, 2009, “HPW/MCM-41 mesoporous silica composites as novel proton exchange membranes for elevated temperature fuel cells”, Adv. Mater., in press.
  3. SY Wang, SP Jiang, TJ White, J Guo, X Wang, 2009, “Electrocatalytic activity and interconnectivity of Pt nanoparticles on multi-walled carbon nanotubes for fuel cells”, J. Phys. Chem. C, in press.
  4. SY Wang, SP Jiang, TJ White, X Wang, 2009, “Synthesis of Pt and Pd nanosheaths on multi-walled carbon nanotubes as potential electrocatalysts of low temperature fuel cells”, Electrochim. Acta, in press.
  5. SY Wang, SP Jiang, TJ White, J Guo, X Wang, 2009, “Assembling interconnected Pt nanoparticles on multi-walled carbon nanotubes and their electrocatalytic activity for fuel cells”, Adv. Functional Mater., in press.
  6. Y Shen, MN Liu, TM He, SP Jiang, 2009, “Preparation, electrical conductivity, and thermal expansion behavior of dense Nd1-xCaxCrO3 solid solutions”, J. Am. Ceram. Soc., 92, 2259-2264.
  7. SB Yin, PK Shen, SQ Song, SP Jiang, 2009, “Functionalization of carbon nanotubes by an effective intermittent microwave heating-assisted HF/H2O2 treatment for electrocatalyst support of fuel cells”, Electrochim. Acta, 54, 6954-6958.
  8. J Chen, FL Liang, LN Liu, SP Jiang, L Jian, 2009, “Characterization and evaluation of La0.8Sr0.2Co0.8Ni0.2O3 prepared by a polymer-assisted combustion synthesis as a cathode material for intermediate temperature solid oxide fuel cells”, International Journal of Hydrogen Energy, in press.
  9. J Chen, FL Liang, B Chi, J Pu, SP Jiang, L Jian, 2009, “Palladium and ceria infiltrated La0.8Sr0.2Co0.5Fe0.5O3 cathodes of solid oxide fuel cells”, J. Power Sources, in press.
  10. XB Chen, B Hua, J Pu, J Li, SP Jiang, 2009, “Interaction between (La,Sr)MnO3 cathodes and Ni-Mo-Cr metallic interconnect with suppressed chromium vaporization for solid oxide fuel cells”, International Journal of Hydrogen Energy, 34, 5737-5748.
  11. NW Khun, E Liu, GC Yang, WG Ma, SP Jiang, 2009, “Structure amd corrosion behavior of platinum/ruthenium/nitrogen doped diamondlike carbon thin films”, J. Applied Phys., 106, 013506 (9 pages).
  12. CW Xu, YZ Su, LL Tan, JH Zhang, S Chen, SP Jiang, 2009, “Electrodeposited PtCo and PtMn electrocatalysts for methanol and ethanol electrooxidation of direct alcohol fuel cells”, Electrochim. Acta, 54, 6322-6326.
  13. FL Liang, J Chen, SP Jiang, FZ Wang, B Chi, J Pu, L Jian, 2009, “Mn-stabilized microstructure and performance of Pd-impregnated YSZ cathode for intermediate temperature solid oxide fuel cells”, Fuel Cells, in press.
  14. A Babaei, SP Jiang, J Li, 2009, “Electrocatalytic promotion of palladium nanoparticles on hydrogen oxidation on Ni/GDC anodes of SOFCs via spillover”, 156, B1022-B1029.

The paper was selected for the July 20, 2009 issue of Virtual Journal of Nanoscience & Technology. The Virtual Journal, which is published by the American Institute of Physics and the American Physical Society in cooperation with numerous other societies and publishers, is an edited compilation of links to articles from participating publishers, covering a focused area of frontier research. See http://www.vjnano.org

  1. L Zhang, XB Chen, SP Jiang, HQ He, Y Xiang, 2009, “Characterization of doped La0.7A0.3Cr0.5Mn0.5O3 (A=Ca, Sr, Ba) electrodes for solid oxide fuel cells”, Solid State Ionics, 180, 1076-1082.
  2. JL Lu, SF Lu, Deli Wang, Meng Yang, Zili Liu, CW Xu, SP Jiang, 2009, “Nano-structured PdxPt1-x/Ti anodes by electrodeposition for alcohol electrooxidation”, Electrochim. Acta, 54, 5486-5491.
  3. FL Liang, J Chen, SP Jiang, B Chi, J Pu, L Jian, 2009, “High performance solid oxide fuel cells with electrocatalytically enhanced (La,Sr)MnO3 cathodes”, Electrochem. Commun., 11, 1048-1051.
  4. JL Lu, CW Xu and SP Jiang, 2009, “Electro-oxidation of ethanol on nanocrystalline Pd/C catalyst promoted with oxide in alkaline media”, International Journal of Nanoscience, 8 (1&2), 203-207.
  5. SP Jiang, L Zhang, HQ He, RK Yap and Y Xiang, 2009, “Synthesis and characterization of lanthanum silicate apatite by gel-casting route as electrolytes for solid oxide fuel cells”, J. Power Sources, 189, 972-981.
  6. Y Fu, ZD Wei, SG Chen, L Li, YQ Wang, XL Ma, MJ Liao, PK Shen, SP Jiang, 2009, “Synthesis of Pd/TNTs/Ti for oxygen reduction reaction in acidic solution”, J. Power Sources, 189, 982-987.
  7. GC Yang, EJ Liu, NW Khun, SP Jiang, 2009, “Direct electrochemical response of glucose at nickel-doped diamondlike carbon thin film electrodes”, J. Electroanal. Chem., 627, 51-57.
  8. L Zhang, HQ He, WR Kwek J Ma, EH Tang, SP Jiang, 2009, “Fabrication and characterization of anode-supported tubular solid oxide fuel cells by slip casting and dip coating techniques”, J. Am. Ceram. Soc., 92, 302-310.

23.    SY Wang, N Kristian, SP Jiang, X Wang, 2009, “Controlled synthesis of dendritic Au@Pt core-shell nanomaterials for use as an effective fuel cell electrocatalysts”, Nanotechnology, 20, 025605.

 

2008-2007

24.    HL Tang and SP Jiang, 2008, “Self-assembled Pt/mesoporous silica-carbon electrocatalysts for elevated-temperature polymer electrolyte membrane fuel cells”, J. Phys. Chem. C, 112, 19748-19755.

25.    FL Liang, J Chen, SP Jiang, B Chi, J Pu and Li Jian, 2008, “Development of nano-structured and palladium promoted (La,Sr)MnO3-based cathodes for intermediate temperature solid oxide fuel cells”, Electrochem. Solid-State Lett., 11, B213-b216.

26.    SP Jiang, 2008, “Development of lanthanum strontium manganite perovskite cathode materials of solid oxide fuel cells: a review”, J. Mater. Sci., 43, 6799-6833.

  1. SY Wang, X Wang and SP Jiang, 2008, “Controllable self-assembly of Pd nanowire networks as highly active electrocatalysts for direct formic acid fuel cells”, Nanotechnology, 19, 455602.
  2. H Wang, CW Xu, FL Cheng, M Zhang, SY Wang and SP Jiang, 2008, “Pd/Pt core-shell nanowire arrays as highly effective electrocatalysts for methanol electrooxidation in direct methanol fuel cells”, Electrochem. Commun., 10, 1575-1578.
  3. XB Chen, L Zhang and SP Jiang, 2008, “Chromium deposition and poisoning on (La0.6Sr0.4-xBax)(Co0.2Fe0.8)O3 (0 £ x £ 0.04) cathodes of solid oxide fuel cells’, J. Electrochem. Soc., 155, B1093-B1101.
  4. SY Wang, X Wang and SP Jiang, 2008, “PtRu nanoparticles supported on 1-aminopyrene functionalized MWCNTs and their electrocatalytic activity for methanol oxidation”, Langmuir, 24, 10505-10512.
  5. SP Jiang, YM Ye, TM He and SB Ho, 2008, “Nano-structured Palladium-La0.75Sr0.25Cr0.5Mn0.5O3/YSZ composite anodes for direct methane and ethanol solid oxide fuel cells”, J. Power Sources, 185, 179-182.
  6. SP Jiang and YD Zhen, 2008, “Mechanism of Cr deposition and its application in the development of Cr-tolerant cathodes of solid oxide fuel cells”, Solid State Ionics, 179, 1459-1464.
  7. J Chen, FL Liang, L Liu, SP Jiang, B Chi, J Pu and J Li, 2008, “Nano-structured (La,Sr)(Co,Fe)O3 + YSZ composite cathodes for intermediate temperature solid oxide fuel cells”, J. Power Sources, 183, 586-589.
  8. SP Jiang, 2008, “Dependence of cell resistivity on electrolyte thickness in solid oxide fuel cells”, J. Power Sources, 183, 595-599.
  9. SY Wang, N Kristian, SP Jiang and X Wang, 2008, “Controlled deposition of Pt on Au nanorods and their catalytic application towards formic acid oxidation”, Electrochem. Commun., 10, 961-964.
  10. YM Ye, TM He, YB Li, EH Tang, TL Reitz and SP Jiang*, 2008, “Pd-promoted La0.75Sr0.25Cr0.5Mn0.5O3/YSZ composite anodes for direct utilization of methane in solid oxide fuel cells”, J. Electrochem. Soc., 155, B811-B818.
  11. SY Wang, SP Jiang*, and X Wang*, 2008, “Highly effective polyelectrolyte-functionalization of carbon nanotubes for low temperature fuel cell applications”, Nanotechnology, 19, 265601.
  12. SB Sang, J Pu, SP Jiang and Li Jian, 2008, “Prediction of H2 leak rate in mica-based seals of planar solid oxide fuel cells”, J. Power Sources, 182, 141-144.
  13. YD Zhen and SP Jiang*, 2008, “Characterization and performance of (La,Ba)(Co,Fe)O3 cathode for solid oxide fuel cells with iron-chromium metallic interconnect”, J. Power Sources, 180, 695-703.
  14. L Li, LH Lim, QQ Wang and SP Jiang, 2008, “Thermoreversible micellization and gelation of a blend of pluronic polymers”, Polymers, 49, 1952-1960.
  15. M Han, JH Xu, SH Chan and SP Jiang, 2008, “Characterization of gas diffusion layers for PEMFC”, Electrochim. Acta, 53, 5361-5367.
  16. CS Cheng, L Zhang, YJ Zhang and SP Jiang*, 2008, “Synthesis of LaCoO3 nano-powders by aqueous gel-casting for intermediate temperature solid oxide fuel cells”, Solid State Ionics, 179, 282-289.
  17. W Wang, L Zhang and SP Jiang, 2008, “Potential oscillation of methane oxidation reaction on (La0.75Sr0.25)(Cr0.5Mn0.5)O3 electrodes of solid oxide fuel cells”, J. Power Sources, 178, 92-96.
  18. YD Zhen, AIY Tok, SP Jiang, and FYC Boey, 2008, “Fabrication and performance of gadolinia-doped ceria-based intermediate-temperature solid oxide fuel cells”, J. Power Sources, 178, 69-74.
  19. CW Xu, ZQ Tian, ZC Chen and SP Jiang*, 2008, “Pd/C promoted by Au for 2-proponal electrooxidation in alkaline media”, Electrochem. Commun., 10, 246-249.
  20. YD Zhen, AIY. Tok, FYC Boey, and SP Jiang, 2008, “Development of Cr-tolerant cathodes of solid oxide fuel cells”, Electrochem. Solid-State Lett., 11 (3), B42-B46.
  21. JP Liu, JQ Ye, CW Xu, SP Jiang and YX Tong, 2008, “Electro-oxidation of methanol, 1-propanol and 2-propanol on Pt and Pd in alkaline medium, J. Power Sources, 177, 67-70.
  22. CW Xu, ZQ Tian, PK Shen, and SP Jiang, 2008, “Oxides (CeO2, NiO, Co3O4 and Mn3O4) – promoted Pd/C electrocatalysts for alcohol electrooxidation in alkaline media”, Electrochim. Acta, 53 (5), 2610-2618.
  23. SP Jiang*, Li Liu, Khuong P. Ong, Ping Wu, Jian Li and Jian Pu, 2008, “Electrical conductivity and performance of doped LaCrO3 perovskite oxides for solid oxide fuel cells”, J. Power Sources, 176, 82-89.
  24. FL Liang, Jing Chen, Jinglan Cheng, SP Jiang, TM He, Jian Pu, and Jian Li, 2008, “Novel nano-structured Pd+yttrium doped ZrO2 cathodes for intermediate temperature solid oxide fuel cells”, Electrochem. Commun., 10, 42-46.
  25. CW Xu, H Wang, PK Shen and SP Jiang, 2007, “Highly ordered Pd nanowire arrays as effective electrocatalysts for ethanol oxidation in direct alcohol fuel cells”, Adv. Mater., 19, 4256-4259.
  26. JQ Ye, JP Liu, CW Xu, SP Jiang, YX Tong, 2007, “Electrooxidation of 2-propanol on Pt, Pd and Au in alkaline medium”, Electrochem. Commun., 9, 2760-2763.
  27. M Nie, HL Tang, ZD Wei, SP Jiang and PK Shen, 2007, “Highly efficient AuPd-WC/C electrocatalysts for ethanol oxidation”, Electrochem. Commun., 9, 2375-2379.
  28. JP Liu, JQ Ye, CW Xu, SP Jiang, and YX Tong, 2007, “Kinetics of ethanol electrooxidation at Pd electrodeposited on Ti”, Electrochem. Commun., 9, 2334-2339.
  29. HL Tang*, ZH Wan, Mu Pan and SP Jiang*, 2007, “Self-assembled Nafion-silica nanopartilces for elevated-high temperature polymer electrolyte membrane fuel cells”, Electrochem. Commun., 9, 2003-2008.
  30. HL Tang*, Mu Pan, Fang Wang, PK Shen and SP Jiang*, 2007, “Highly durable proton exchange membranes for low temperature fuel cells”, J. Phys. Chem. B, 111, 8684-8690.

One of the most-accessed articles published in J. Phys. Chem. B in the third quarter of 2007 and is being featured on the journal’s Most-Accessed Articles website at http://pubs.acs.org/journals/jpcbfk/promo/most/most_accessed/index.html

 

  1. CW Xu, YH Hu, JH Rong, SP Jiang and YL Liu, 2007, “Ni hollow spheres as catalysts for methanol and ethanol electrooxidation”, Electrochem. Commun., 9, 2009-2012.
  2. HL Tang, SL Wang, SP Jiang and Mu Pan, 2007, “A comparative study of CCM and hot-pressed MEAs for PEM fuel cells, J. Power Sources, 170, 140-144.
  3. YD Zhen, AIY Tok, SP Jiang, and FYC Boey, 2007, “La(Ni,Fe)O3 as a cathode material with high tolerance against Cr poisoning for solid oxide fuel cells”, J. Power Sources, 170, 61-66.
  4. HL Tang, Shen Peikang, S.P. Jiang, Fang Wang and Mu Pan, 2007, “A degradation study of Nafion proton exchange membrane of PEM fuel cells, J. Power Sources, 170, 85-92.
  5. Lan Zhang, SP Jiang, W Wang and YJ Zhang, 2007, “NiO/YSZ anode-supported thin-electrolyte solid oxide fuel cells fabricated by gelcasting”, J. Power Sources., 170, 55-60.
  6. ZQ Tian, SP Jiang, ZC Liu and L Li, 2007, “Polyelectrolyte-stabilized Pt nanoparticles as new electrocatalysts for low temperature fuel cells”, Electrochem. Commun., 9, 1613-1618.
  7. SP Jiang, L Zhang and YJ Zhang, 2007, “Lanthanum strontium manganese chromite perovskite oxides synthesized by gelcasting for solid oxide fuel cells”, J. Mater. Chem., 17, 2627-2635.
  8. Hong Wang, CW Xu, FL Cheng and SP Jiang, 2007, “Pd nanowire arrays as electrocatalysts for ethanol electrooxidation”, Electrochem. Commun., 9, 1212-1216.
  9. Lan Zhang, SP Jiang, CS Cheng, and YJ Zhang, 2007, “Synthesis and performance of (La0.75Sr0.25)1-x(Cr0.5Mn0.5)O3 cathode powders of solid oxide fuel cells by gelcasting technique”, J. Electrochem. Soc., 154, B577-B582.
  10. Lan Zhang, YJ Zhang, YD Zhen and SP Jiang, 2007, “Lanthanum strontium manganite powders  synthesized by gel-casting for SOFC cathode materials”, J. Am. Ceram. Soc., 90, 1406-1411.
  11. SH Chan, M Han and SP Jiang, 2007, “Guidelines for stable operation of a polymer electrolyte fuel cell with self-humidifying membrane electrolyte assembly”, J. Electrochem. Soc., 154, B486-B493.
  12. HL Tang, Mu Pan, SP Jiang, Xiaoen Wang, and YH Ruan, 2007, “Fabrication and characterization of PFSI/ePTFE composite proton exchange membranes of polymer electrolyte fuel cells”, Electrochim. Acta, 52, 5304-5311.
  13. M Han, SH Chan and SP Jiang, 2007, “Investigation of self-humidifying anode in polymer electrolyte fuel cells”, International. J. Hydrogen Energy, 32, 385-391.
  14. KP Ong, Ping Wu, L Liu and SP Jiang, 2007, “Optimization of electrical conductivity of LaCrO3 through doping – A combined study of molecular modelling and experiment”, Appl. Phys. Lett., 90, No. 044109.
  15. HL Tang, S. Wang, Mu Pan, SP Jiang, and Y. Ruan, 2007, “Performance of direct methanol fuel cells prepared by hot-pressed MEA and catalyst-coated membrane (CCM)”, Electrochim. Acta, 52, 3714-3718.

The paper was selected as Feature Article of the May 2007 issue of Fuel Cell Bulletin.

 

2006-2005

  1. ZQ Tian, SP Jiang, YM Liang and PK Shen, 2006, “Synthesis and characterization of Pt catalysts on multi-walled carbon nanotubes by intermittent microwave irradiation for fuel cell applications”, J. Phys. Chem. B, 110, 5343-5350.

The paper is placed in the top 1% within its field (Chemistry) according to Essential Science IndicatorsSM, Web of Science in 2007.

 

  1. YD Zhen, Jian Li and SP Jiang, 2006, “O2 reduction reaction on (La,Sr)MnO3 electrode in the absence and presence of Fe-Cr alloy interconnect”, J. Power Sources, 162, 1043-1052.
  2. YD Zhen and SP Jiang, 2006, “Transition behaviour for O2 reduction reaction on (La,Sr)MnO3/YSZ composite cathodes of solid oxide fuel cells”, J. Electrochem. Soc., 153 (12), A2245-A2254.
  3. M. Han, SH Chan and SP Jiang, 2006, “Development of carbon-filled gas diffusion layer for polymer electrolyte fuel cells”, J. Power Sources, 159, 1005-1014.
  4. ZC Liu, ZQ Tian and SP Jiang, 2006, “Synthesis and characterization of Nafion-stabilized Pt nanoparticles for polymer electrolyte fuel cells”, Electrochim. Acta, 52, 1213-1220.

Featured in Top 25 articles for the October – December 2006 for the Subject area of Chemical Engineering in Electrochim. Acta.

  1. SP Jiang, ZC Liu and ZQ Tian, 2006, “Layer-by-layer self-assembly of composite polyelectrolyte/Nafion membrane for direct methanol fuel cells”, Adv. Mater., 18, 1068-1072.
  2. SP Jiang, 2006, “Activation, microstructure and polarization of solid oxide fuel cell cathodes”, J. Solid State Electrochem., 11 (1), 93-102.
  3. SP Jiang, 2006, “A review of wet impregnation – an alternative method for the development of high performance and nano-structured electrodes of solid oxide fuel cells”, Mater. Sci. Eng. A, 418, 199-210.
  4. SP Jiang, YD Zhen, S Zhang, AIY Tok and Ping Wu, 2006, “An electrochemical method to assess the chromium volatility of chromia-forming metallic interconnect for solid oxide fuel cells”, J. Electrochem. Soc., 153(11), A2120-A2125.
  5. W Wang, SP Jiang, AIY Tok and L Luo, 2006, “GDC-impregnated Ni anodes for direct utilization of methane in solid oxide fuel cells”, J. Power Sources, 159, 68-72.
  6. ZC Liu and SP Jiang, 2006, “Synthesis of PDDA-Pt nanoparticles for the self-assembly of electrode/Nafion membrane interface of polymer electrolyte fuel cells”, J. Power Sources, 159, 55-58.
  7. Ho Hiang Kwee, Chan Siew Hwa and Jiang San Ping, 2006, “Fuel cells for transportation – promises and challenges”, The Singapore Engineer, September 2006, pp.7-9.
  8. YD Zhen, SP Jiang, S Zhang and V Tan, 2006, “Interaction between metallic interconnect and constituent oxides of (La,Sr)MnO3 electrodes of solid oxide fuel cells”, J. Euro. Ceram. Soc., 26, 3253-3264.
  9. W Wang and SP Jiang, 2006, “A mechanistic study on the activation process of (La,Sr)MnO3 electrodes of solid oxide fuel cells”, Solid State Ionics, 177, 1361-1369.
  10. SP Jiang, ZC Liu, HL Tang and M Pan, 2006, “Synthesis and characterization of PDDA-stabilized Pt nanoparticles for direct methanol fuel cells”, Electrochim. Acta, 51(26), 5721-5730.
  11. ZQ Tian, XL Wang, HM Zhang, BL Yi and SP Jiang, 2006, “Microwave-assisted synthesis of PTFE/C nanocomposite for polymer electrolyte fuel cells”, Electrochem. Comm., 8(7), 1158-1162.
  12. H Meng, PK Shen, ZD Wei and SP Jiang, 2006, “Improved performance of direct methanol fuel cells with tungsten carbide promoted Pt/C composite cathode electrocatalyst”, Electrochem. Solid-State Lett., 9 (7), A368-A372.
  13. SP Jiang, YD Zhen and S Zhang, 2006, “Interaction between Fe-Cr metallic interconnect and (La,Sr)MnO3/YSZ composite cathode of solid oxide fuel cells”, J. Electrochem. Soc., 153 (8), A1511-A1517.
  14. SP Jiang, S Zhang and YD Zhen, 2006, “Deposition of Cr species at (La,Sr)(Co,Fe)O3 cathodes of solid oxide fuel cells”, J. Electrochem. Soc., 153 (1), A127-A134.
  15. SP Jiang, XJ Chen, SH Chan, and JT Kwok, 2006, “GDC-impregnated (La0.75Sr0.25)(Cr0.5Mn0.5)O3 anodes for direct utilization of methane in solid oxide fuel cells”, J. Electrochem. Soc., 153 (5), A850-A856.

The paper was selected for the March 27, 2006 issue of Virtual Journal of Nanoscience & Technology. The Virtual Journal, which is published by the American Institute of Physics and the American Physical Society in cooperation with numerous other societies and publishers, is an edited compilation of links to articles from participating publishers, covering a focused area of frontier research. See http://www.vjnano.org

 

  1. YJ Leng, SH. Chan, KA Khor and SP Jiang, 2006, “(La0.8Sr0.2)0.9MnO3-Gd0.2Ce0.8O1.9 composite cathodes prepared from (Gd,Ce)(NO3)x-modified (La0.8Sr0.2)0.9MnO3 for intermediate-temperature solid oxide fuel cells”, J. Solid State Electrochem., 10, 339-347.
  2. SP Jiang, XJ Chen, SH Chan, JT Kwok and KA Khor, 2006, “(La0.75Sr0.25)(Cr0.5Mn0.5)O3/YSZ composite anodes for methane oxidation reaction in solid oxide fuel cells”, Solid State Ionics, 177 (1-2), 149-157.
  3. SP Jiang and W Wang, 2005, “Fabrication and performance of GDC-impregnated (La,Sr)MnO3 cathodes for intermediate temperature solid oxide fuel cells”, J. Electrochem. Soc., 152 (7), A1398-A1408.
  4. SP Jiang, W Wang and YD Zhen, 2005, “Performance and electrode behaviour of nano-YSZ impregnated nickel anodes used in solid oxide fuel cells”, J. Power Sources, 147, 1-7.
  5. SP Jiang, S Zhang, YD Zhen and W Wang, 2005, “Fabrication and performance of impregnated Ni anodes of solid oxide fuel cells”, J. Am. Ceram. Soc., 88 (7), 1779-1785.
  6. SP Jiang and W Wang, 2005, “Novel structured mixed ionic and electronic conducting cathodes of solid oxide fuel cells”, Solid State Ionics, 176 (15-16), 1351-1357.
  7. SP Jiang and W Wang, 2005, “Sintering and grain growth of (LaSr)MnO3 electrodes of solid oxide fuel cells under polarization”, Solid State Ionics, 176 (13-14), 1185-1191.
  8. SP Jiang, S Zhang and YD Zhen, 2005, “A fast method for the investigation of the interaction between metallic interconnect and Sr-Doped LaMnO3 of solid oxide fuel cells”, Mater. Sci. Eng. B, 119, 80-86.
  9. Q Wang, L Li and SP Jiang, 2005, “Effects of a PPO-PEO-PPO triblock copolymer on micellization and gelation of a PEO-PPO-PEO triblock copolymer in aqueous solution”, Langmuir, 21, 9068-9075.
  10. HL Tang, ZP Luo, Mu Pan, SP Jiang and ZC Liu, 2005, “Synthesis of platinum nanoparticles and then self-assembled on Nafion membrane to give a catalyst coated membrane”, J. Chem. Res.-S, (7), 449-451.
  11. HL Tang, M. Pan, SP Jiang and RZ Yuan, 2005, “Modification of Nafion membrane to reduce methanol crossover via self-assembled Pd nanoparticles”, Mater. Lett., 59, 3766-3770.
  12. SP Jiang, L Li, ZC Liu, M Pan and HL Tang, 2005, “Self-assembly of Pt-PDDA nanoparticles/Nafion membranes for direct methanol fuel cells”, Electrochem. Solid-State Lett., 8 (11), A574-A576.

The paper was selected for the October, 2005 issue of Materials Research News of Materials Research Society (MRS). The Materials Research News reports latest development in the materials science and technology. See http://lucy.mrs.org/connections/researchnews/200510_1.html

 

  1. HL Tang, M Pan, SP Jiang, Z Wan and RZ Yuan, 2005, “Self-assembling multi-layer Pd nanoparticles onto Nafion membrane to reduce methanol crossover”, Colloids and Surfaces A: Physicochem. Eng. Aspects, 262, 65-70.
  2. M Pan, HL Tang, SP Jiang and ZC Liu, 2005, “Fabrication and performance of polymer electrolyte fuel cells by self-assembly of Pt nanoparticles”, J. Electrochem. Soc., 152 (6), A1081-A1088.
  3. M Pan, HL Tang, SP Jiang and ZC Liu, 2005, “Self-assembled membrane-electrode-assembly of polymer electrolyte fuel cells”, Electrochem. Comm., 7, 119-124.
  4. SP Jiang, S Zhang and YD Zhen, 2005, “Early interaction between Fe-Cr alloy interconnect and Sr-Doped LaMnO3 cathodes of solid oxide fuel cells”, J. Mater. Res., 20 (3), 747-758.
  5. SP Jiang and W Wang, 2005, “Effect of polarization on the interface between (La,Sr)MnO3 electrode and Y2O3-ZrO2 electrolyte”, Electrochem. Solid-State Lett., 8 (2), A115-A118.

 

2004-2003

  1. SP Jiang and SH Chan, 2004, “A review of anode materials development in solid oxide fuel cells”, J. Mater. Sci., 39, 4405-4439.
  2. YJ Leng, SH Chan, KA Khor and SP Jiang, 2004, “Performance evaluation of anode-supported solid oxide fuel cells with thin film YSZ electrolyte”, International J. Hydrogen Energy, 29, 1025-1033.
  3. YJ Leng, SH Chan, SP Jiang and KA Khor, 2004, “Low-temperature SOFC with thin film GDC electrolyte prepared in situ by solid-state reaction”, Solid State Ionics, 170, 9-15.
  4. SP Jiang and SH Chan, 2004, “Development of Ni/Y2O3-ZrO2 cermet anodes of solid oxide fuel cells”, Materials Science and Technology-London, 20 (9) 1109-1118.
  5. SP Jiang, S Zhang, YD Zhen and AP Koh, 2004, “Performance of GDC-impregnated Ni anodes of SOFCs”, Electrochem. Solid-State Lett., 7 (9), A282-A285.
  6. W Wang and SP Jiang, 2004, “Effect of polarization on the electrode behavior and microstructure of (La,Sr)MnO3 electrodes of solid oxide fuel cells”, J. Solid State Electrochem., 8, 914-922.
  7. SP Jiang, 2004, “Cell configurations for performance evaluation in planar solid oxide fuel cells”, J. Appl. Electrochem., 34, 1045-1055.
  8. HK Ho, SH Chan and SP Jiang, 2004, “Fuel cell research, development and demonstration activities in Singapore”, Fuel Cells Bulletin, June 2004, 12-16.
  9. YJ Leng, SH Chan, KA Khor and SP Jiang, 2004, “Development of LSM-YSZ composite cathodes for anode-supported solid oxide fuel cells”, J. Appl. Electrochem., 34, 409-415.
  10. SP Jiang, YJ Leng, SH Chan and KA Khor, 2003, “Development of (La,Sr)MnO3-based cathodes for intermediate temperature solid oxide fuel cells”, Electrochem. Solid-State Lett., 6 (4), A67-A70.
  11. SP Jiang, 2003, “A comparative study of fabrication and performance of Ni/3 mol% Y2O3-ZrO2 and Ni/8 mol% Y2O3-ZrO2 cermet electrodes”, J. Electrochem. Soc., 150 (11) E548-E559.
  12. SP Jiang, 2003, “Issues on development of (La,Sr)MnO3 cathode for solid oxide fuel cells”, J. Power Sources, 124, 390-402.

The paper is placed in the top 1% within its field (Engineering) according to Essential Science IndicatorsSM, Web of Science in 2007.

 

  1. SP Jiang, 2003, “Sintering behavior of Ni/Y2O3-ZrO2 cermet electrodes of solid oxide fuel cells”, J. Mater. Sci., 38, 3775-3782.
  2. SP Jiang, JG Love and L Apateanu, 2003, “Effect of contact between electrode and current collector on the performance of solid oxide fuel cells”, Solid State Ionics, 160 (1/2), 15-26.
  3. SH Chan, SK Goh and SP Jiang, 2003, “A mathematical model of polymer electrolyte fuel cell with anode CO kinetics”, Electrochim. Acta, 48, 1905-1919.
  4. YJ Leng, SH Chan, KA Khor, SP Jiang and P Cheang, 2003, “Effect of characteristics of Y2O3-ZrO2 powders on fabrication of anode-supported solid oxide fuel cells”, J. Power Sources, 117, 26-34.
  5. SP Jiang, J-P Zhang and K Foger, 2003, “Chemical interactions between 3 mol% yttria-zirconia and Sr-doped lanthanum manganite”, J. European Ceramic Soc., 23 (11), 1865-1873.
  6. SP Jiang and JG Love, 2003, “Observation of structural change induced by cathodic polarization on (La,Sr)MnO3 electrodes in solid oxide fuel cells”, Solid State Ionics, 158, 45-53.

 

2002-2000

  1. SP Jiang, 2002, “A comparison of O2 reduction reactions on porous (La,Sr)MnO3 and (La,Sr)(Co,Fe)O3 electrodes”, Solid State Ionics, 146 (1-2), 1-22.
  2. SP Jiang, JG Love and Y Ramprakash, 2002, “Electrode behaviour at the (La,Sr)MnO3/Y2O3-ZrO2 interface by electrochemical impedance spectroscopy”, J. Power Sources, 110, 201-208.
  3. SP Jiang, JP Zhang and XG Zheng, 2002, “A comparative investigation of chromium deposition at air electrodes of solid oxide fuel cells”, J. European Ceramic Soc., 22(3), 361-373.
  4. SP Jiang, 2002, “Development and optimisation of electrode materials in solid oxide fuel cells”, Battery Bimonthly, 32(3), pp 133-137.
  5. SP Jiang, YY Duan and JG Love, 2002, “Fabrication of high performance Ni/Y2O3-ZrO2 cermet anodes of slid oxide fuel cells by ion impregnation”, J. Electrochem. Soc., 149 (9), A1175-A1183.
  6. SP Jiang, 2001, “Resistance measurement in solid oxide fuel cells”, J. Electrochem. Soc., 148 (8), pp A887-A897.
  7. SP Jiang, JP Zhang and K Foger, 2001, “Deposition of chromium species at Sr-doped LaMnO3 electrodes in solid oxide fuel cells – III. Effect of air flow”, J. Electrochem. Soc., 148(7), C447-C455.
  8. SP Jiang and JG Love, 2001, “Origin of the initial polarization behavior of Sr-doped LaMnO3 for O2 reduction in solid oxide fuel cells”, Solid State Ionics, 138, 183-190.
  9. SP Jiang, L Christiansen, R Hughan and K Foger, 2001, “Effect of glass sealant materials on microstructure and performance of Sr-doped LaMnO3 cathodes”, J. Mater. Sci. Lett., 20, 695-697.
  10. SP Jiang, 2001, “Use of gaseous Cr species to diagnose surface and bulk process for O2 reduction in solid oxide fuel cells”, J. Appl. Electrochem., 31 (2), 181-192.
  11. SPS Badwal, T Bak, SP Jiang, J Love, J Nowotny, M Rekas, CC Sorrell and ER Vance, 2001, “Application of work function measurements for surface monitoring of  oxide electrode kinetics (La,Sr)(Co,Mn,Fe)O3”, J. Phys. Chem. Solids, 62 (4), 723-729.
  12. SPS Badwal, SP Jiang, J Love, J Nowotny, M Rekas and ER Vance, 2001, “Chemical diffusion in perovskite cathodes of solid oxide fuel cells: the Sr doped LaMn1-xMxO3 (M=Co, Fe) systems”, Ceramics International, 27 (4), 419-429.
  13. SPS Badwal, SP Jiang, J Love, J Nowotny, M Rekas and ER Vance, 2001, “Application of work function measurements for surface monitoring of (La,Sr)(Co,Mn,Fe)O3 during oxidation and reduction”, Ceramics International, 27 (4), 431-441.
  14. SP Jiang, JP Zhang and K Foger, 2000, “Deposition of chromium species at Sr-doped LaMnO3 electrodes in solid oxide fuel cells – II. Effect on O2 reduction reactions”, J. Electrochem. Soc., 147(9), 3195-3205.
  15. SP Jiang, PJ Callus and SPS Badwal, 2000, “Fabrication and performance of Ni/3 mol% Y2O3-ZrO2 cermet anodes for solid oxide fuel cells”, Solid State Ionics, 132, 1-14.
  16. SP Jiang, JP Zhang, L Apateanu and K Foger, 2000, “Deposition of chromium species at Sr-doped LaMnO3 electrodes in solid oxide fuel cells – I. Mechanism and kinetics”, J. Electrochem. Soc., 147(11), 4013-4022.
  17. SP Jiang, JP Zhang, Y Ramprakash, D Milosevic and K Wilshier, 2000, “An investigation of shelf-life of strontium doped LaMnO3 materials”, J. Materials Science, 35, 2735-2741.

 

1999-1993

  1. SP Jiang, JP Zhang, L Apateanu and K Foger, 1999, “Deposition of chromium species on Sr-doped LaMnO3 cathodes in solid oxide fuel cells”, Electrochem. Commun., 1, 394-397.
  2. SP Jiang and SPS Badwal, 1999, "An electrode kinetics study of H2 oxidation on Ni/Y2O3-ZrO2 cermet electrode of the solid oxide fuel cell", Solid State Ionics, 123, 209-224.
  3. SP Jiang, JG Love, JP Zhang, M Hoang, Y Ramprakash, AE Hughes and SPS Badwal, 1999, “The electrochemical performance of LSM/zirconia-yttria interface as a function of A-site non-stoichiometry and cathodic current treatment”, Solid State Ionics, 121, 1-10.
  4. SP Jiang and Y Ramprakash, 1999, “H2 oxidation on Ni/Y-TZP cermet electrodes – a comparison of electrode behaviour by GCI and EIS techniques”, Solid State Ionics, 122, 211-222.
  5. SP Jiang and Y Ramprakash, 1999, “H2 oxidation on Ni/Y-TZP cermet electrodes – polarisation behaviour”, Solid State Ionics, 116, 145-156.
  6. JP Zhang, SP Jiang, JG Love, K Foger and SPS Badwal, 1998, “Chemical interactions between strontium doped praseodymium manganite and 3mol% yttria-zirconia”, J. Materials Chemistry, 8, 2787-2797.
  7. SP Jiang, Y Ramprakash and JG Love, 1998, “Investigation of electrode reactions in SOFC by GCI and EIS techniques”, J. Aust. Ceramic Soc., 34 (1), 112-117.
  8. SP Jiang and SPS Badwal, 1997, "H2 Oxidation reactions at the Ni and Pt electrodes on Y-TZP electrolytes", J. Electrochem. Soc., 144 (11), 3777-3784.
  9. PK Srivastava, T Quach, YY Duan, R Donelson, SP Jiang, FT Ciacchi and SPS Badwal, 1997, “Electrode supported solid oxide fuel cells prepared by DC magnetron sputtering”, Solid State Ionics, 99, 311-319.
  10. SP Jiang, 1993, "The role of water vapour on the kinetics of H2 oxidation on porous Ni electrodes at 1000oC", in: Science and Technology of Zirconia V, S.P.S.Badwal, M.J.Bannister, and R.H.J.Hannink, Editors, p.819-828, Technomic Publishing Co.

 

1992-1990

154.SP Jiang, CQ Cui and ACC Tseung, 1992, "Preparation and performance of reactively deposited active plates", J. Mater. Sci., 27, 2223-2230.

155.CQ Cui, SP Jiang, and ACC Tseung, 1992, "Reactive deposition of cobalt electrodes. VIII. Effect of oxygen reduction on the deposition of cobalt from Co(II) chloride DMF solution", J. Electrochem. Soc., 139 (6), 1535-1544.

156.CQ Cui, SP Jiang, and ACC Tseung, 1992, "Reactive deposition of cobalt electrodes. VII. Mechanistic studies in the presence of dissolved oxygen - calculation of kinetic parameters", J. Electrochem. Soc., 139 (5), 1276-1282.

157.SP Jiang, CQ Cui and ACC Tseung, 1991, "Reactive deposition of active battery plates", J. Power Sources, 13, 133-148.

158.CQ Cui, SP Jiang, and ACC Tseung, 1992, "Reactive deposition of cobalt electrodes. VI. mechanistic studies in the presence of dissolved oxygen -- the Co(OH)2 colloid layer model", J. Electrochem. Soc., 139 (1), 60-66.

159.SP Jiang, CQ Cui and ACC Tseung, 1991, "Reactive deposition of cobalt electrodes. V. Mechanistic studies of oxygen reduction in unbuffered neutral solutions saturated with oxygen", J. Electrochem. Soc., 138 (12), 3599-3605.

160.SP Jiang and ACC Tseung, 1991, "Reactive deposition of cobalt electrodes. IV. Alkaline water electrolysis", J. Electrochem. Soc., 138 (5), 1216-1222.

161.CQ Cui, SP Jiang, and ACC Tseung, 1991, "Mechanism of the electrodeposition of cobalt(II) chloride in N,N-dimethylformamide (DMF) solution", J. Electrochem. Soc., 138 (1), 94-100.

162.CQ Cui, SP Jiang, and ACC Tseung, 1991, "Mechanism of electrodeposition of Cobalt(II) thiocyanate in N,N-dimethylformamide (DMF) solution and effect of chloride ions", J. Electrochem. Soc., 138 (4), 1001-1006.

163.SP Jiang, WA Ashton and ACC Tseung, 1991, "An observation of homogeneous and heterogeneous catalysis process in the decomposition of H2O2 over MnO2 and Mn(OH)2", J. Catal., 131, 88-93.

164.SP Jiang and ACC Tseung, 1990, "Homogeneous and heterogeneous catalytic reactions in cobalt oxide/graphite air electrodes. III. Deposition of cobalt oxide catalysts onto graphite electrode for oxygen reduction", J. Electrochem. Soc., 137 (11), 3442-3446.

165.SP Jiang and ACC Tseung, 1990, "Reactive deposition of cobalt electrodes. III. Role of anions", J. Electrochem. Soc., 137 (11), 3387-3393.

166.SP Jiang and ACC Tseung, 1990, "Reactive deposition of cobalt electrodes. II. Role of bubbling oxygen", J. Electrochem. Soc., 137 (11), 3381-3386.

167.CQ Cui, SP Jiang, and ACC Tseung, 1990, "Electrodeposition of cobalt from aqueous chloride solutions", J. Electrochem. Soc., 137, 3418-3423.

168.SP Jiang, YZ Chen, JK You, TX Chen, and ACC Tseung, 1990, "Reactive deposition of cobalt electrodes. I. Experimental", J. Electrochem. Soc., 137 (11), 3374-3380.

169.ACC Tseung, SP Jiang, YZ Chen, and JK You, 1990, "Reactive deposition - a fundamental breakthrough in powder metallurgy", J. Mater. Sci. Letters, 9, 1294-1295.

170.SP Jiang, ZG Lin, and ACC Tseung, 1990, "Homogeneous and heterogeneous catalytic reactions in cobalt oxide/graphite air electrodes. II. Homogeneous role of Co(II) ions during oxygen reduction on Co3O4/graphite electrodes", J. Electrochem. Soc., 137 (3), 764-769.

171.SP Jiang, ZG Lin, and ACC Tseung, 1990, "Homogeneous and heterogeneous catalytic reactions in cobalt oxide/graphite air electrodes. I. Chemical kinetics of peroxide decomposition by Co(II) ions in alkaline solutions", J. Electrochem. Soc., 137 (3), 759-764.

 

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