14
Agarwal DC, Singh F, Kabiraj D, Sen S, Kulariya PK, Sulania I, Nozaki S, Chauhan RS, Avasthi DK, Journal of Physics D: Applied Physics, 2008, 41, 045305. Ahn K-S, Yan Y, Al-Jassim MM, J. Mater. Res., 2010, 25, 45-51. Air Products and Chemicals, available at http://www.airproducts.com/Products /Liquid-BulkGases/HydrogenEnergy/FuelCells/2003. Ajuba AE, Ezugwu SC, Asogwa PU, Ezema FI, Chalcogenide Lett, 2010, 7, 573- 79. Aloney RK, Dongre JK, Chandra BP, Ramrakhiani M, Chalcogenide Letters, 2009, 6, 569-575. Ang Wei, Li Xiong, Li Sun, Jun LY, Wei LW, Chin. Phys. Lett., 2013, 30 (4), 046202. Aroutiounian VM, Arakelyan VM, Shahnazaryan GE, Solar Energy, 2005, 78, 581-592. Ashrafi A, Jagadish C, J. Appl. Phys., 2007, 102, 0711011-12. Askland DR, The Science and Engineering of Materials, Third Edition, London, Chapman & Hall, 1996, 854. Baeck S-H, Choi K-S, Jaramillo TF, Stucky GD, McFarland EW, Adv Mater., 2003, 15, 1269-73. Baek K-K, Tuller HL, Solid State Ionics, 1995, 75, 179-186. Bak T, Nowotny J, Rekas M, Sorrell CC, Int J Hydrogen Energy, 2002, 27, 991- 1022. Balamurugan B, Mehta BR, Avasthi DK, Singh F, Arora AK, Rajalakshmi M, Raghavan G, Tyagi AK, Shivprasad SM, J Appl Phys, 2002, 92, 3304-3307. Banerjee S, Mohapatra SK, Misra M, J Phys Chem C, 2011, 115, 12643-12649. Bär M, Weinhardt L, Marsen B, Cole B, Gaillard N, Miller E, Heske C, Applied Physics Letters, 2010, 96, 032107. Benhamou K, The Sahara Wind Project: A Regional Catalyst for Renewables, Maghreb/ Middle East Renewable Energy Summit, 2010. Berger S, Tsuchiya H, Ghicov A, Schmuki P, Appl Phys Lett, 2006, 88, 203119- 21. REFERENCES

References - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/14564/15/14_bibliograph… · Physics Letters, 2010, 96, 032107. Benhamou K, The Sahara Wind Project: A Regional Catalyst

  • Upload
    others

  • View
    4

  • Download
    0

Embed Size (px)

Citation preview

Agarwal DC, Singh F, Kabiraj D, Sen S, Kulariya PK, Sulania I, Nozaki S, Chauhan

RS, Avasthi DK, Journal of Physics D: Applied Physics, 2008, 41, 045305.

Ahn K-S, Yan Y, Al-Jassim MM, J. Mater. Res., 2010, 25, 45-51.

Air Products and Chemicals, available at http://www.airproducts.com/Products

/Liquid-BulkGases/HydrogenEnergy/FuelCells/2003.

Ajuba AE, Ezugwu SC, Asogwa PU, Ezema FI, Chalcogenide Lett, 2010, 7, 573-

79.

Aloney RK, Dongre JK, Chandra BP, Ramrakhiani M, Chalcogenide Letters,

2009, 6, 569-575.

Ang Wei, Li Xiong, Li Sun, Jun LY, Wei LW, Chin. Phys. Lett., 2013, 30 (4),

046202.

Aroutiounian VM, Arakelyan VM, Shahnazaryan GE, Solar Energy, 2005, 78,

581-592.

Ashrafi A, Jagadish C, J. Appl. Phys., 2007, 102, 0711011-12.

Askland DR, The Science and Engineering of Materials, Third Edition, London,

Chapman & Hall, 1996, 854.

Baeck S-H, Choi K-S, Jaramillo TF, Stucky GD, McFarland EW, Adv Mater., 2003,

15, 1269-73.

Baek K-K, Tuller HL, Solid State Ionics, 1995, 75, 179-186.

Bak T, Nowotny J, Rekas M, Sorrell CC, Int J Hydrogen Energy, 2002, 27, 991-

1022.

Balamurugan B, Mehta BR, Avasthi DK, Singh F, Arora AK, Rajalakshmi M,

Raghavan G, Tyagi AK, Shivprasad SM, J Appl Phys, 2002, 92, 3304-3307.

Banerjee S, Mohapatra SK, Misra M, J Phys Chem C, 2011, 115, 12643-12649.

Bär M, Weinhardt L, Marsen B, Cole B, Gaillard N, Miller E, Heske C, Applied

Physics Letters, 2010, 96, 032107.

Benhamou K, The Sahara Wind Project: A Regional Catalyst for Renewables,

Maghreb/ Middle East Renewable Energy Summit, 2010.

Berger S, Tsuchiya H, Ghicov A, Schmuki P, Appl Phys Lett, 2006, 88, 203119-

21.

REFERENCES

. References

Bisquert J, Cahen D, Hodes G, Ruhle S, Zaban A, J Phys Chem B, 2004, 108,

8106-18.

Bjorksten U, Moser J, Gratzel M, Chem Mater, 1994, 6, 858-863.

Blanco S, AutoBlogGreen.com, http://green.autoblog.com/2009/10/30/gm-ceo-

electric-cars-require-teamwork-hydrogen-cars-10x-more-e/, October 30, 2009.

Bolton JR, Strickler SJ, Connolly JS, Nature, 1985, 316, 495.

Bolts JM, Wrighton MS, J Phys Chem, 1976, 80, 2641-46.

Brus L, J Phys Chem, 1986, 90, 2555.

Burnside S, Moser J-E, Brooks K, Graetzel M, Cahen D, J Phys Chem B, 1999, 103

(43), 9328.

Caglar M, Ilican S, Caglar Y, Yakuphanoglu F, App Surf Science, 2009, 255,

4491-4496.

Cesar I, Kay A, Martinez JAG, Gratzel M, Journal of the American Chemical

Society, 2006, 128, 4582-3.

Chang HJ, Lu CZ, Wang Y, Son C-S, Kim S-II, Kim Y-H, Choi I-H, J Korean Phys

Soc, 2004, 45, 959-962.

Chaudhary YS, Khan SA, Shrivastav R, Satsangi VR, Prakash S, Tiwari UK,

Avasthi DK, Dass S, Nucl Instrum Methods Phys Res Sect B, 2004, 225, 291-296.

Chaudhary YS, Khan SA, Tripathi C, Shrivastav R, Satsangi VR, Dass S, Nucl Instr

and Meth Phys Res, Sect B 2006, 244, 128-131.

Chauhan D, Satsangi VR, Dass S, Shrivastav R, Bull Mater Sci, 2006, 29,

709-716.

Chen H, Li W, Liu H, Zhu L, Solar Energy, 2010, 84, 1201-1207.

Chen L, Zhang Q, Huang R, Yin S-F, Luo S-L, Au C-T, Dalton Trans, 2012, 41,

9513.

Chen Z, Jaramillo TF, Deutsch TG, Shwarsctein A K, Forman AJ, Gaillard N,

Garland R, Takanabe K, Heske C, Sunkara M, McFarland EW, Domen K, Miller

EL, Turner JA, Dinh HN, J Mater Res: Review, 2010, 25, 3-16.

Cheng S, Fu W, Yang H, Zhang L, Ma J, Zhao H, Sun M, Yang L, J Phys Chem C,

2012, 116, 2615-2621.

Chi C-F, Lee Y-L, Weng H-S, Nanotechnology, 2008, 19, 125704 (5pp).

Chi C-F, Liau S-Y, Lee Y-L, Nanotechnology, 2010, 21, 025202 (6pp).

. References

Chi YJ, Fu HG, Qi LH, Shi KY, Zhang HB, Yu HT, J Photochem Photobiol A: Chem,

2008, 195, 357-363.

Chiang CY, Aroh K, Ehrman SH, Int J Hydrogen Energy, 2012, 37, 4871-4879.

Chiang CY, Aroh K, Franson N, Satsangi VR, Dass S, Ehrman S, Int J Hydrogen

Energy, 2011, 36, 15519-15526.

Chiang C-Y, Chang M-H, Liu H-S, Tai CY, Ehrman S, Ind Eng Chem Res, 2012,

51(14), 5207-5215.

Choudhary S, Upadhyay S, Kumar P, Singh N, Satsangi VR, Shrivastav R, Dass S,

Int. J Hydrogen Energy, 2012, 37, 18713-30.

Colton R, Guzman A, Rabalais J, J Appl Phys, 1978, 49, 409-17.

Cui J, Gibson UJ, J Phys Chem C, 2010, 114, 6408.

Cullity BD, Elements of X-ray Diffraction; Addison-Wesley: Reading, MA, 1959.

Cullity BD, Stock SR, Elements of X-Ray Diffraction, Third Edition, New Jersey:

Prentice-Hall, Inc., 2001.

Dai G, Yu J, Liu G, J Phys Chem C, 2011, 115, 7339-7346.

Dang TC, Pham DL, Le HC, Pham VH, Adv Nat Sci: Nanosci Nanotechnol, 2010, 1,

015002 (5pp).

Dang TC, Pham DL, Nguyen HL, Pham VH, Adv Nat Sci: Nanosci Nanotechnol,

2010, 1, 035010 (6pp).

Deo M, Shinde D, Yengantiwar A et al, J Mater Chem, 2012, 22, 17055.

Derbal A, Omeiri S, Bouguelia A, Trari M, Int J Hydrogen Energy, 2008, 33,

4274-4282.

Dincer I, Jordan J Mech Ind Eng, 2008, 2, 1-14.

DOE 2003, Alternative fuel data center, Properties of Fuels, available at

www.afdc.doe.gov/pdfs/fueltable.pdf, 2007.

Dresselhaus MS, Thomas IL, Nature, 2001, 414, 332-7.

Dusastre V, Tarascon J-M, Gratzel M, Materials for sustainable energy. Nature

Publishing Group, 2010.

EC, Hydrogen Energy and Fuel Cells-A Vision of Our Future. European

Commission — High level group on hydrogen and fuel cells, Brussels, 2003.

. References

Energy Generation and Supply KTN Fuel Cell and Hydrogen Mission to Japan,

Synnogy, Energy Generation and Supply Knowledge Transfer Network,

https://ktn.innovateuk.org/c/document_library/get_file?p_l_id=56852&folderId

=267589&name=DLFE-5102.pdf, April 2010.

Fernandez VSM, Geofísica International, 2002, 41, 223-228.

Fuel Cells: Emerging Markets, FuelCellToday, Industry Review, 2009.

Fujishima A, Honda K, Nature, 1972, 238, 37-8.

Gaillard N, Cole B, Kaneshiro J, Miller EL, Marsen B, Weinhardt L, Bar M, Heske

C, J Mater Res, 2010, 25, 45-51.

Gerischer H, McIntyre R, J Chem Phys, 1985, 83, 1363.

Gopalakrishnan J, Chemistry of Materials, 1995, 7, 1265-75.

Gratzel M, Nature, 2001, 414, 338-344.

Gupta M, Sharma V, Shrivastava J, Solanki A, Singh AP, Satsangi VR, Dass S,

Shrivastav R, Bull Mater Sci, 2009, 32, 23-30.

Gupta M, Shrivastava J, Sharma V, Solanki A, Singh AP, Satsangi VR, Dass S,

Shrivastav R, Adv Mater Res, 2009, 67, 95-102.

Habazaki H, Hayashi Y, Konno H, Electrochim Acta, 2002, 47, 4181.

Hafeldt A, Gratzel M, Acc Chem Res, 2000, 33, 269-273.

Hao EC, Qian XM, Yang B, Wang DJ, Shen JC, Mol Cryst Liq Cryst, 1999, 337, 181.

Haque SA, Tachibana Y, Willis RL, Moser JE, Gratzel M, Klug RD, Durrant JR, J

Phys Chem B, 2000, 104, 538-542.

Hardee KL, Bard AJ, J Electrochem Soc, 1977, 124, 215.

Hensel J, Wang G, Li Y, Zhang JZ, Nano Lett, 2010, 10, 478-483.

Hod I, Shalom M, Tachan Z , Ruhle S, Zaban A, J Phys Chem C, 2010, 114, 10015-

18.

Hodes G, Cahen D, Manassen J, Nature, 1976, 260, 312.

Hoffert MI, Caldeira K, Jain AK, Haites EF, Harvey LD, Potter SD, Schlesinger

ME, Wigley TML, Wuebbles DJ, Nature, 1998, 395, 881-884.

Hoh JH, Engel A, Langmuir, 1993, 9, 3310.

Holladay JD, Hu J, King DL, Wang Y, Catalysis Today, 2009, 139, 244-260.

Honda K, Ohta T, Solar-Hydrogen Energy Systems. Oxford: Pergamon Press,

1979, 137-69.

. References

Hotchandani S, Kamat PV, J Phys Chem, 1992, 96, 6834-6839.

Hou Y, Li XY, Zhao QD, Quan X, Chen GH, Applied Physics Letters, 2009, 95,

093108.

Hu X, Li G, Yu JC, Langmuir, 2010, 26, 3031.

Huang CJ, Hsiuping J, 2008, 16, 151-162.

Hussain MM, Dincer I, Li X, Appl Thermal Eng, 2007, 27, 2294-2299.

Hwang DW, Kim J, Park TJ, Lee JS, Catal Lett, 2002, 80, 53.

Hydrogen Fuel Cell Engines and Related Technologies, College of the Desert,

Palm Desert, CA, 2001.

Hydrogen Fuel Cell, http://www1.eere.energy.gov/hydrogenandfuelcells/

mypp/pdfs/production.pdf, May 2000.

Hyun YK, Jin CW, Heon KD, Thin Solid Films, 2000, 372, 250-6.

Jelle BP, Hagen G, Sol Energy Mater Sol Cells, 1999, 58, 277-286.

Jiang HQ, Endo H, Natori H, Nagai M Kobayashi K, Material Research Bulletin,

2009, 44, 700-706.

Joshi M, Bhattacharyya A, Ali SW, Indian Journal of Fibre & Textile Research,

2008, 33, 304-317.

Jung O-J, Bull Korean Chem Soc, 2001, 22, 1183-1191.

Jung S, Jeon S, Yong K, Nanotechnology, 2011, 22, 015606 (8pp).

Kale SS, Mane RS, Ganesh T, Pawar BN, Han S-H, Current Applied Physics, 2009,

9, 384-389.

Kamat PV, J Phys Chem C, 2007, 111, 2834-60.

Keisall R, Hamley I, GeoGhegan M, Nanoscale science and technology, John

Wiley & Sons Ltd. Publishers, 2005.

Kennedy CE, Review of mid- to high- temperature solar selective absorber

materials. NREL, 2002.

Kezzim A, Nasrallah N, Abdi A, Trari M, Energy Conversion and Management,

2011, 52, 2800-2806.

Khan SUM, Zhou ZY, Electroanal Chem, 1993, 357, 407-420.

Khaselev O, Bansal A, Turner JA, Int J Hydrogen Energy, 2001, 26(2), 127-132.

Khaselev O, Turner JA, Science, 1998, 280, 425-427.

Kim J, Kim W, Yong K, J Phys Chem C, 2012, 116(29), 15682-15691.

. References

Kim JH, Kim H, Kim D, Yoon SG, Choo WK, Solid State Commun., 2004, 131, 677.

Kimura T, Sekio Y, Nakamura H, Siegrist T, Ramirez P, Nat Mater, 2008, 7, 291-

294.

Klug HP, Alexander LE, X-ray Diffraction Procedures for Polycrystalline and

Amorphous Materials, New York, Wiley, 1974.

Ko EI, Sol-gel Process, in Handbook of heterogeneous catalysis, Weinheim, 1997,

86-94.

Kocha SS, Montgomery D, Peterson MW, Turner JA, Solar Energy Materials and

Solar Cells, 1998, 52, 389-97.

Koffyberg FP, Benko FA, J Appl Phys, 1982, 53, 1173.

Konyar M, Yatmaz HC, Ozturk K, Applied Surface Science, 2012, 258, 7440-

7447.

Kozuka H, Takahashi Y, Zhao G, Yoko T, Thin Solid Films, 2000, 358, 172-179.

Kreith F, West R, J Energy Resour Technol, 2004, 126(4), 249-257.

Kuang S, Yang L, Luo S, Cai Q, Applied Surface Science, 2009, 255, 7385-7388.

Kudo A, Tanaka A, Domen K, Onishi T, Journal of Catalysis, 1988, 111(2), 296-

301.

Kumari S, Singh AP, Sonal, Deva D, Shrivastav R, Dass S, Satsangi VR, Int J

Hydrogen Energy, 2010, 35, 3985.

Lee EC, Kim YS, Jin YG, Chang KJ, Phys Rev B, 2001, 64, 085120-085128.

Lee HW, Lau SP, Wang YG, Tse KY, Hng HH, Tay BK, J Cryst Growth, 2004, 268,

596-599.

Lee KH, Fang YK, Lee WJ, Ho JJ, Chen KH, Liao KS, Sensor Actuat B, 2000, 69,

96-99.

Lee Y-L, Chi C-F, Liau S-Y, Chem Mater, 2010, 22, 922-927.

Leng WH, Barnes PRF, Juozapavicius M, ORegan BC, Durrant JR, J Phys Chem

Lett, 2010, 1, 967-72.

Lewis NS, Nocera DG, PNAS, 2006, 103, 15729.

Lewis SN, Nature, 2001, 414, 589-90.

Li W, Li J, Wang X, Ma J, Chen Q, Int J Hydrogen Energy, 2010, 35, 13137-13145.

Li Y, Gao XP, Li GR, Pan GL, Yan TY, Zhu HY, J Phys Chem C, 2009, 113, 4386-94.

Li Y, Zhang JZ, Laser Photonics Rev, 2010, 4, 517.

. References

Licht S, J Phys Chem B, 2001, 105, 6281.

Licht S, Wang B, Mukerji S, Soga T, Umeno M, Tributsch H, Int J of Hydrogen

Energy, 2001, 26, 653-9.

Licht S, Wang B, Mukerji S, Soga T, Umeno M, Tributsch H, J Phys Chem B, 2000,

104, 8920-4.

Lin X, Xing J, Wang W, Shan Z, Xu F, Huang F, J Phys Chem C, 2007, 111, 18288-

93.

Lin Y, Zhou S, Liu X, Sheehan S, Wang D, J Am Chem Soc, 2009, 131, 2772-2773.

Liu D, Kamat PV, J Phys Chem, 1993, 97, 10769-10773.

Liu Z, Pan K, Zhang Q, Liu M, Jia R, Lu Q, Wang D, Bai Y, Li T, Thin Solid Films,

2004, 468, 291-297.

Lopes T, Andrade L, Ribeiro HA, Mendes A, Int J Hydrogen Energy, 2010, 35,

11601-11608.

Luo W, Yu T, Wang Y, Li Z, Ye J, Zou Z, J Phys D: Appl Phys, 2007, 40, 1091-1096.

Maeda K, Domen K, MRS Bulletin, 2011, 36, 25-31.

Mahapatra PK, Panda BB, Chalcogenide Letters, 2010, 7, 477-483.

Marsen B, Miller E, Paluselli D, Rocheleau R, Int J Hydrogen Energy, 2007, 32,

3110-5.

Martirosyan S, Sol Energy Mater Sol Cells, 2001, 70, 115-119.

Mavroides JG, Kafalas JA, Kolesar DF, Apl Phys Lett, 1976, 28, 241-243.

McDonald KJ, Choi K-S, Chem Mater, 2011, 23, 4863-4869.

Meher LC, Sagar DV, Naik SN, Renew Sustain Energy Rev, 2006, 10, 24-68.

Memming R, Semiconductor Electrochemistry, Wiley, 2000.

Meng N, Michael M, Leung KH, Leung DYC, Sumathy K, Renewable and

Sustainable Energy Reviews, 2007, 11, 401-25.

Mexico Energy Report, British Chamber of Commerce, Energy & Environment

Business Sector Group, July 2010.

Mexico’s Clean Energy Sector, Mexico Secretary of Economy,

http://www.mexicotradeandinvestment.com/pdf/Factsheet%20Clean%20Energ

y%20jan10.pdf, 2010.

Miller EL, Marsen B, Cole B, Lum M, Electrochem Solid- State Lett, 2006, 9(7),

G248.

. References

Miller EL, Paluselli D, Marsen B, Rocheleau RE, Solar Energy Materials & Solar

Cells, 2005, 88, 131.

Miller EL, Paluselli D, Marsen B, Rocheleau RE, Thin Solid Films, 2004, 466,

307.

Mishra PR, Shukla PK, Singh AK, Srivastava ON, Int J Hydrogen Energy, 2003,

28, 1089-94.

Mohapatra SK, Raja KS, Mahajan VK, Misra M, J Phys Chem C, 2008, 112, 11007-

12.

Morrison, SR, Electochemistry at Semiconductor and Oxidized Metal Electrodes,

New York: Plenum Press, 1980, 1-401.

Morrison, SR, Electrochemistry at Semiconductor and Oxidized Metal Electrodes,

2nd printing, Plenum, New York, 1984.

Murphy AB, Barnes PRF, Randeniya LK, Plumb IC, Grey IE, Horne MD,

Glasscock JA, Int J Hydrogen Energy, 2006, 31, 1999.

Mustafa B, Int J of Hydrogen Energy, 2008, 33, 4013-4029.

Nakato, Y, Photoelectrochemistry at semiconductor/liquid interfaces, in

Photocatalysis, Science and Technology, Kaneko, M. and Okura, I. (Eds),

Kodansha/Springer, Berlin, 2002, Chapter 4.

Nasr C, Kamat PV, Hotchandani S, Journal of Electroanalytical Chemistry, 1997,

420, 201-207.

National Hydrogen Energy Road Map, Path Way for Transition to Hydrogen

Energy for India (Abridged version, 2007), Ministry of New and Renawable

Energy (Natioanl Hydrogen Energy Board), Govn. of India.

Nazeeruddin MK, Kay A, Rodicio I, Humphry-Bker R, Muller E, Liska P,

Vlachopoulos N, Gratzel M, J. Am. Chem. Soc., 1993, 115, 6382-6388.

Niederberger M, Accounts of Chemical Research, 2007, 40, 793-800.

Nowotny J, Sorrell CC, Sheppard LR, Bak T, Int J of Hydrogen Energy, 2005, 30,

521-44.

Nozik AJ, Appl Phys Lett, 1977, 30(11), 567-569.

Nozik AJ, Memming R, J Phys Chem, 1996, 100(31), 13061-13078.

. References

Nozik AJ, Photoelectrochemical devices for solar energy conversion, in

Photovoltaic and Photoelectrochemical Solar Energy Conversion, Cardon F,

Gomes WP, Dekeyser W (Eds), Plenum, New York, 1981, 263.

Ogden JM, Annu Rev Energy Environ, 1999, 24, 227-279.

Ohtomo A, Hwang HY, Nature, 2004, 427, 423-6.

Ohya Y, Ito S, Ban T, Takahashi Y, Key Eng Mater, 2000, 181, 113.

Paracchino A, Laporte V, Sivula K, Grätzel M, Thimsen E, Nature Materials,

2011, 10.

Park H, Bak A, Ahn YY, Choi J, Hoffmannn MR, Journal of Hazardous Materials,

2011, 5, 9.

Park TE, Kim DC, Kong BH, Cho HK, J of the Korean Phys Soc, 2004, 45, S697-

S700.

Patil V, Pawar S, Chougule M, Godse P, Sakhare R, Sen S, Joshi P, Journal of

Surface Engineered Materials and Advanced Technology, 2011, 1, 35-41.

Paulauskas IE, Katz JE, Jellison Jr. GE, Lewis NS, Boatner LA, Thin Solid Films,

2008, 516, 8175-78.

Qian J, Finamore B, Clegg T, Fuel Cell Vehicle Development in China, 1996.

Qian X, Zhang X, Bai Y, Li T, Tang X, Wang E, Dong S, J Nanoparticle Res, 2000,

2, 191.

Rajeshwar K., Journal of Applied Electrochemistry, 1985, 15, 1-22.

Reece SY, Hamel JA, Sung K, Jarvi TD, Esswein AJ, Pijpers JJH, Nocera DG,

Science 2011, 334 (6056), 645-648.

Reyren N, Thiel S, Caviglia AD, Kourkoutis LF, Hammerl G, Richter C, et al,

Science, 2007, 317, 1196.

Rincon ME, Sanchez M, Olea A, Ayala I, Nair PK, Sol. Energy Mater Sol Cells,

1998, 52, 399-411.

Romm, JJ, The Hype about Hydrogen, Fact and Fiction in the Race to Save the

Climate. Island Press, available at http://en.wikipedia.org/wiki/The Hype about

Hydrogen, Washington, D. C., 2004.

Roy S, Basu S, Bull Mater Sci, 2002, 25, 513-515.

Rynders RM, Hegedus CR, Gilicinski AG, J Coat Technol, 1995, 667, 59.

Santato C, Ulmann M, Augustynski J, J Phys Chem B, 2001, 105, 936-40.

. References

Sartoretti BD, Solarska AR, Rutkowska IA, Augustynski J, J Phys Chem B, 2005,

109, 13685.

Satsangi VR, Kumari S, Singh AP, Shrivastav R, Dass S, Int J Hydrogen Energy,

2008, 33, 312-18.

Seabold JA, Shankar K, Wilke RHT, Paulose M, Varghese OK, Grimes CA, Choi K-

S, Chem Mater, 2008, 20, 5266-5273.

Sharma P, Kumar P, Deva D, Shrivastav R, Dass S, Satsangi VR, Int J of Hydrogen

Energy, 2010, 35:, 10883-10889.

Sharma P, Kumar P, Solanki A, Shrivastav R, Dass S, Satsangi VR, J Solid State

Electrochem, 2012, 16, 1305-1312.

Shimpi P, Gao P-X, Goberman DG, Ding Y, Nanotechnology, 2009, 20, 125608.

Shin K, Seok S, Im SH, Park JH, Chem Commun, 2010, 46, 2385-2387.

Shinar R, Kennedy JH, J Electrochem Soc, 1983, 130, 860.

Singh AP, Kumari S, Shrivastav R, Dass S, Satsangi VR, J Phys D: Appl Phys,

2009, 42, 085303.

Singh AP, Kumari S, Tripathi A, Singh F, Gaskell KJ, Shrivastav R, Dass S,

Ehrman SH, Satsangi VR, J Phys Chem C, 2010, 114, 622-26.

Singh DP, Srivastava ON, Journal of Nanoscience and Nanotechnology, 2009, 9,

5345-5350.

Singh S, Kaur H, Pathak D, Bedi RK, Digest Journal of Nanomaterials and

Biostructures, 2011, 6, 689-698.

Siripala W, Ivanovskaya A, Jaramillo TF, Baeck SH, McFarland EW, Sol. Energy

Mater Sol Cells, 2003, 77, 229-237.

Sivakumar R, Moses Ezhil Raj A, Subramanian B, Jayachandran M, Trivedi D,

Sanjeeviraja C, Mater Res Bull, 2004, 39, 1479-89.

Sivula K, Formal FL, Gratzel M, Chem Mater, 2009, 21, 2862-2867.

Smestad GP, Krebs FC, Lampert CM, Granqvist CG, Chopra KL, Mathew X, et al.,

Sol Energy Mater Sol Cells, 2008, 92, 371.

Solanki A, Choudhary S, Satsangi VR, Shrivastav R, Dass S, Journal of Alloys and

Compounds, 2013, 561, 114-120.

. References

Solanki A, Shrivastav J, Upadhyay S, Choudhary S, Sharma V, Sharma P, Kumar

P, Kumar P, Ehrman S, Satsangi VR, Shrivastav R, Dass S, Current Applied

Physics, 2013, 13, 344-350.

Solanki A, Shrivastav J, Upadhyay S, Sharma V, Sharma P, Kumar P, Gaskell K,

Satsangi VR, Shrivastav R, Dass S, Int J of Hydrogen Energy, 2011, 36, 5236-

5245.

Srinivasan G, Kumar J, Cryst Res Technol, 2006, 41, 893- 896.

Steiner T, Semiconductor nanostructures for optoelectronic applications. Boston,

Mass. [u.a.]: Artech House, 2004.

Su J, Guo L, Bao N, Grimes CA, Nano Lett, 2011, 11, 1928-1933.

Suzuki Y, Ngamsinlapasathian S, Yoshida R and Yoshikawa S, Central European

Journal of Chemistry, 2006, 4(3), 476-488.

Tan B and Wu YY, Journal of Physical Chemistry B, 2006, 110(32), 15932-

15938.

Tania L, Luısa A, Aguilar RH, Adelio M, Int J Hydrogen Energy, 2010, 35, 11601-

11608.

The Business Case for Electrical Energy Efficiency: Japan, The International

Copper Association, http://www.copperinfo.com/energy/pdf/ICA_Japan_

Business_Case.pdf, 2010.

The German Stationary Fuel Cell Market, Germany Trade & Invest,

http://www.gtai.com/fileadmin/user_upload/Downloads/Industries/Energy

Efficiency/Fuel_Cells/1_Englisch/FactSheet_StationaryFuelCells_February2009_

GTAI.pdf, February 2009.

The Hydrogen Economy: Opportunities, Costs, Barriers and R&D Needs, National

Research Council, National Academies Press, Washington, 2004, available at

http://www.nap.edu/catalog/10922.html, accessed May 2007.

Tian HY, Luo WG, Pu XH, Ding AL, J Materials Science Letters, 2000, 19, 1211-

1213.

Tseng C-L, Tseng C-J, Chen J-C, Int J Hydrogen Energy, 2010, 35, 2781-5.

Turner JA, J Chemical Education, 1983, 60, 327-329.

Turner JA, Science 1999, 285, 687.

. References

Turyan I, Krasovec UO, Orel B, Saraidorov T, Reisfeld R, Mandler D, Adv. Mater.

2000, 12, 330-333.

U.S. Department of Energy, Office of Basic Energy Sciences, Committee on

Alternatives and Strategies for Future Hydrogen Production and Use, The

Hydrogen Economy: Opportunities, Costs, Barriers, and R&D Needs, National

Research Council, National Academies Press, Washington, available at

http://www.nap.edu/catalog/10922.html (accessed May 2007), 2004.

U.S. Department of Energy. Hydrogen, fuel cells & infrastructure technologies

program. Hydrogen production. DOE/GO-102007-2430. p. 3.1-20. Available

from: http://www. eere.energy.gov/hydrogenandfuelcells/mypp, 2009.

U.S. Energy Information Administration, http://www. eia.gov/oog/info/gdu/

gas diesel.asp, May 30, 2011.

U.S. Market Report, National Hydrogen Association, March 22, 2010.

U.S. Department of Energy, Office of Basic Energy Sciences. Basic research

needs for solar energy utilization (Report), 2005.

Vayssieres L, Sathe C, Butorin SM, Shuh DK, Nordgren J, Guo JH, Adv Mater,

2005, 17, 2320.

Veziroglu TN, Int J Hydrogen Energy, 2000, 1143.

Vigil E, Zumeta I, Ayllon JA, Gonzalez B, Domenech X, Dominguez C, Phys Stat

Sol (B), 2005, 242, 1807-1811.

Walter MG, Warren EL, McKone JR, Boettcher SW, Mi Q, Santori EA, et al, Chem

Rev, 2010, 110, 6446-73.

Wang F, Valentin CD, Pacchioni G, J Phys Chem C, 2012, 116, 8901.

Wang G, Wang H, Ling Y, Tang Y, Yang X, Fitzmorris RC, Wang C, Zhang JZ, Li Y,

Nano Lett, 2011, 11, 3026-3033.

Wang G, Yang X, Qian F, Zhang JZ, Li Y, Nano Lett, 2010, 10, 1088-1092.

Wang J, Han Y, Feng M, Chen J, Li X, Zhang S, J Mater Sci, 2011, 46, 416-421.

Wang P, Zhao X, Li B, Optics Express, 2011, 11271.

Wang Y, Yu T, Chen X, Zhang H, Ouyang S, Li Z, Ye J, Zou Z, J Phys D: Appl Phys,

2007, 40, 3925-3930.

Wang ZL, J Phys.: Condens. Matter, 2004, 16, R829–R858.

Weber MF, Dignam MJ, Int J Hydrogen Energy, 1986, 11, 225-232.

. References

Weber MF, Dignam MJ, Journal of Electrochemical Society, 1984, 131, 1258-

1265.

Wee JH, Renewable Sustainable Energy Rev., 2007, 11, 1720-1738.

Weicker F & Company, BC Ministry of Small Business, Technology and

Economic Development, Assessment of the Economic Impact of the Canadian

Hydrogen and Fuel Cell Sector, http://www.empr.gov.bc.ca/RET/Renewable

EnergyTechnologies/HFC/Documents/HFC%20Economic%20Impact%20Study

%20-%20Final%20Report.pdf, March 26, 2010.

Wenzhang Li, Jie Li, Xuan Wang, Jun Ma, Qiyuan Chen, Int J Hydrogen Energy,

2010, 35, 13137-45.

White, CM, Steeper RR, Lutz AE, Int J Hydrogen Energy, 2006, 31, 1292-1305.

Wijesundera RP, Semicond Sci Technol, 2010, 25, 045015 (5pp).

Wilhelm E, Fowler M, Bull Sci Tech Soc, 2006, 26, 278.

Wrighton MS, Ellis AB, Wolczanski PT, Morse DL, Abrahamson HB, Ginley DS, J

Am Chem Soc, 1976, 98, 2774-79.

Xintong Z, Yaan C, Shihai K, Yongmei C, Jun T, Haiyan J, et al, Thin Solid Films,

1998, 327, 568-70.

Xu C, Koo T-W, Kim B-S, Lee J-H, Hwang SW, Whang D, J Nanosci and

Nanotechnol, 2011, 11, 1-5.

Yamada S, Nosaka AY, Nosaka Y, Journal of Electroanalytical Chemistry, 2005,

585, 105-112.

Yamane S, Kato N, Kojima S, Imanishi A, Ogawa S, Yoshida N, Nonomura S,

Nakato Y, J Phys Chem C, 2009, 113, 14575-14581.

Yang B, Barnes PRF, Zhang Y, Luca V, Catal Lett, 2007, 118, 280-284.

Yang XS, Kim H, Int J Applied Physics and Mathematics, 2011, 1, 1.

Yat L, Zhang JZ, Laser Photonics Rev, 2010, 4, 517-528.

Yin J, Bie L-J, Yuan Z-H, Materials Research Bulletin, 2007, 42, 1402-1406.

Yin Y, Jin Z, Hou F, Nanotechnology, 2007, 18, 495608 (6pp).

Ying J, Sun T, Journal of Electroceramics, 1997, 1, 219-238.

Yoon KH, Choi WJ, Kang DH, Thin Solid Films, 2000, 372, 250.

Yu H, Chen S, Quan X, Zhao H, Zhang Y, Applied Catalysis B: Environmental,

2009, 90, 242-248.

. References

Zanetti SM, Leite ER, Longo E, Varela JA, Appl Organomet Chem, 1999, 13, 373-

382.

Zhang DK, Liu YC, Liu YL, Yang H, Physica B, 2004, 351, 178-183.

Zhang J, Bang JH, Tang C, Kamat PV, ACS Nano, 2010, 4, 387-395.

Zhang X, Lei L, App Surf Sci, 2008, 254, 2406-12.

Zhang YG, Ma LL, Li JL, Yu Y, Environ Sci Technol., 2007, 41, 6264-9.

Zhang Z, Wang P, J Mater Chem, 2012, 22, 2456-2464.

Zhao G, Kozuka H, Lin H, Takahashi M, Yoko T, Thin Solid Films, 1999, 340,

125-131.

Zhao X, Wang P, Li B, Chem Commun, 2010, 46, 6768-6770.

Zhou S-M, Zhang X-H, Meng X-M, Zou K, Fan X, Wu S-K, Lee S-T,

Nanotechnology, 2004, 15, 1152.

Zhou Z, Kato K, Komaki T, Yoshino M, Yukawa H, Morinaga M, Morita K, Journal

of Electroceramics, 2003, 11, 73-79.

Zhu S, Zu XT, Wang LM, Ewing RC, Applied Physics Letters, 2002, 80, 23.

Zhu Y, Sow C-H, Yu T, Zhao Q, Li P, Shen Z, Yu D, Thong JTL, Advanced

Functional Materials, 2006, 16, 2415.