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Volumn 40, Issue 5, 2015, Pages 2207-2215

In situ facile synthesis of Rh nanoparticles supported on carbon nanotubes as highly active catalysts for H2 generation from NH3BH3 hydrolysis

Author keywords

Ammonia borane; Carbon nanotubes; Hydrogen generation; Hydrolysis; Rhodium nanoparticles

Indexed keywords

ACTIVATION ENERGY; AMMONIA; CARBON NANOTUBES; CATALYST ACTIVITY; CHARCOAL; HYDROGEN PRODUCTION; HYDROLYSIS; NANOCATALYSTS; NANOPARTICLES; SYNTHESIS (CHEMICAL); YARN;

EID: 84921346705     PISSN: 03603199     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.ijhydene.2014.12.047     Document Type: Article
Times cited : (152)

References (61)
  • 1
    • 0035891289 scopus 로고    scopus 로고
    • Hydrogen-storage materials for mobile applications
    • Schlapbach L, Zuttel A. Hydrogen-storage materials for mobile applications. Nature 2001;414:353-8.
    • (2001) Nature , vol.414 , pp. 353-358
    • Schlapbach, L.1    Zuttel, A.2
  • 2
    • 0037153131 scopus 로고    scopus 로고
    • Interactionof hydrogen with metal nitrides and imides
    • Chen P, Xiong ZT, Luo JZ, Lin JY, Tan KL. Interactionof hydrogen with metal nitrides and imides. Nature 2002;420:302-4.
    • (2002) Nature , vol.420 , pp. 302-304
    • Chen, P.1    Xiong, Z.T.2    Luo, J.Z.3    Lin, J.Y.4    Tan, K.L.5
  • 4
    • 77955216404 scopus 로고    scopus 로고
    • Ammonia-borane and related compounds as dihydrogen sources
    • Staubitz A, Robertson APM, Manners I. Ammonia-borane and related compounds as dihydrogen sources. Chem Rev 2010;110:4079-124.
    • (2010) Chem Rev , vol.110 , pp. 4079-4124
    • Staubitz, A.1    Robertson, A.P.M.2    Manners, I.3
  • 5
    • 65549135419 scopus 로고    scopus 로고
    • Ammonia borane as an efficient and lightweight hydrogen storage medium
    • Peng B, Chen J. Ammonia borane as an efficient and lightweight hydrogen storage medium. Energy Environ Sci 2008;1:479-83.
    • (2008) Energy Environ Sci , vol.1 , pp. 479-483
    • Peng, B.1    Chen, J.2
  • 6
    • 66749096171 scopus 로고    scopus 로고
    • Sodium borohydride versus ammonia borane, in hydrogen storage and direct fuel cell applications
    • Demirci UB, Miele P. Sodium borohydride versus ammonia borane, in hydrogen storage and direct fuel cell applications. Energy Environ Sci 2009;2:627-37.
    • (2009) Energy Environ Sci , vol.2 , pp. 627-637
    • Demirci, U.B.1    Miele, P.2
  • 7
    • 84870888171 scopus 로고    scopus 로고
    • Liquid-phase chemical hydrogen storage materials
    • Yadav M, Xu Q. Liquid-phase chemical hydrogen storage materials. Energy Environ Sci 2012;5:9698-725.
    • (2012) Energy Environ Sci , vol.5 , pp. 9698-9725
    • Yadav, M.1    Xu, Q.2
  • 8
    • 84860122304 scopus 로고    scopus 로고
    • Recent progress in boron- and nitrogen-based chemical hydrogen storage
    • Lu ZH, Xu Q. Recent progress in boron- and nitrogen-based chemical hydrogen storage. Funct Mater Lett 2012;5(No. 1).1230001 (9 pages).
    • (2012) Funct Mater Lett , vol.5 , Issue.1
    • Lu, Z.H.1    Xu, Q.2
  • 9
    • 84896929652 scopus 로고    scopus 로고
    • Nanocatalysts for hydrogen generation from ammonia borane and hydrazine borane
    • Lu ZH, Yao QL, Zhang ZJ, Yang YW, Chen XS. Nanocatalysts for hydrogen generation from ammonia borane and hydrazine borane. J Nanomater 2014. Article ID 729029(11 pages); http://dx.doi.org/10.1155/2014/729029.
    • (2014) J Nanomater
    • Lu, Z.H.1    Yao, Q.L.2    Zhang, Z.J.3    Yang, Y.W.4    Chen, X.S.5
  • 10
    • 0009929387 scopus 로고    scopus 로고
    • Calorimetric process monitoring of thermal decomposition of B-N-H compounds
    • Wolf G, Baumann J, Baitalow F, Hoffman FP. Calorimetric process monitoring of thermal decomposition of B-N-H compounds. Thermochim Acta 2000;343:19-25.
    • (2000) Thermochim Acta , vol.343 , pp. 19-25
    • Wolf, G.1    Baumann, J.2    Baitalow, F.3    Hoffman, F.P.4
  • 11
    • 51049109630 scopus 로고    scopus 로고
    • The effects of chemical additives on the induction phase in solid-state thermal decomposition of ammonia borane
    • Heldebrant DJ, Karkamkar A, Hess NJ, Bowden M, Rassat S, Zheng F, et al. The effects of chemical additives on the induction phase in solid-state thermal decomposition of ammonia borane. Chem Mater 2008;20:5332-6.
    • (2008) Chem Mater , vol.20 , pp. 5332-5336
    • Heldebrant, D.J.1    Karkamkar, A.2    Hess, N.J.3    Bowden, M.4    Rassat, S.5    Zheng, F.6
  • 12
    • 79958825397 scopus 로고    scopus 로고
    • Catalytic hydrolysis of ammonia borane for chemical hydrogen storage
    • Jiang HL, Xu Q. Catalytic hydrolysis of ammonia borane for chemical hydrogen storage. Catal Today 2011;170:56-63.
    • (2011) Catal Today , vol.170 , pp. 56-63
    • Jiang, H.L.1    Xu, Q.2
  • 13
    • 77951078272 scopus 로고    scopus 로고
    • One-step seeding growth of magnetically recyclable Au@Co core-shell nanoparticles: Highly efficient catalyst for hydrolytic dehydrogenation of ammonia borane
    • Yan JM, Zhang XB, Akita T, Haruta M, Xu Q. One-step seeding growth of magnetically recyclable Au@Co core-shell nanoparticles: highly efficient catalyst for hydrolytic dehydrogenation of ammonia borane. J Am Chem Soc 2010;132:5326-7.
    • (2010) J Am Chem Soc , vol.132 , pp. 5326-5327
    • Yan, J.M.1    Zhang, X.B.2    Akita, T.3    Haruta, M.4    Xu, Q.5
  • 14
    • 34948836206 scopus 로고    scopus 로고
    • Preparation of ammonia borane in high yield and purity, methanolysis, and regeneration
    • Ramachandran PV, Gagare PD. Preparation of ammonia borane in high yield and purity, methanolysis, and regeneration. Inorg Chem 2007;46:7810-7.
    • (2007) Inorg Chem , vol.46 , pp. 7810-7817
    • Ramachandran, P.V.1    Gagare, P.D.2
  • 16
    • 84919403000 scopus 로고    scopus 로고
    • Methanolysis of ammonia borane by shape-controlled mesoporous copper nanostructures for hydrogen generation
    • Yao QL, Huang M, Lu ZH, Yang YW, Zhang YX, Chen XS, et al. Methanolysis of ammonia borane by shape-controlled mesoporous copper nanostructures for hydrogen generation. Dalton Trans 2015;44:1070-6.
    • (2015) Dalton Trans , vol.44 , pp. 1070-1076
    • Yao, Q.L.1    Huang, M.2    Lu, Z.H.3    Yang, Y.W.4    Zhang, Y.X.5    Chen, X.S.6
  • 17
    • 33646823784 scopus 로고    scopus 로고
    • A high-performance hydrogen generation system: Transitionmetal-catalyzed dissociation and hydrolysis of ammonia-borane
    • Chandra M, Xu Q. A high-performance hydrogen generation system: transitionmetal-catalyzed dissociation and hydrolysis of ammonia-borane. J Power Sources 2006;156:190-4.
    • (2006) J Power Sources , vol.156 , pp. 190-194
    • Chandra, M.1    Xu, Q.2
  • 18
    • 34247386350 scopus 로고    scopus 로고
    • Room temperature hydrogen generation from aqueous ammonia-borane using noble metal nanoclusters as highly active catalysts
    • Chandra M, Xu Q. Room temperature hydrogen generation from aqueous ammonia-borane using noble metal nanoclusters as highly active catalysts. J Power Sources 2007;168:135-42.
    • (2007) J Power Sources , vol.168 , pp. 135-142
    • Chandra, M.1    Xu, Q.2
  • 19
    • 84896345340 scopus 로고    scopus 로고
    • Rhodium(0) nanoparticles supported on nanotitania as highly active catalyst in hydrogen generation from the hydrolysis of ammonia borane
    • Akbayrak S, Genc¸türk S, Morkan ̄, Özkar S. Rhodium(0) nanoparticles supported on nanotitania as highly active catalyst in hydrogen generation from the hydrolysis of ammonia borane. RSC Adv 2014;4:13742-8.
    • (2014) RSC Adv , vol.4 , pp. 13742-13748
    • Akbayrak, S.1    Genc¸türk, S.2    Morkan, I.3    Özkar, S.4
  • 20
    • 65649129040 scopus 로고    scopus 로고
    • Zeolite framework stabilized rhodium(0) nanoclusters catalyst for the hydrolysis of ammonia-borane in air: Outstanding catalytic activity, reusability and lifetime
    • Zahmakiran M, Özkar S. Zeolite framework stabilized rhodium(0) nanoclusters catalyst for the hydrolysis of ammonia-borane in air: outstanding catalytic activity, reusability and lifetime. Appl Catal B: Environ 2009;89:104-10.
    • (2009) Appl Catal B: Environ , vol.89 , pp. 104-110
    • Zahmakiran, M.1    Özkar, S.2
  • 21
    • 84855614573 scopus 로고    scopus 로고
    • A facile one-step synthesis of polymer supported rhodium nanoparticles in organic medium and their catalytic performance in the dehydrogenation of ammonia-borane
    • Karahan S, Zahmakiran M, Ozkar S. A facile one-step synthesis of polymer supported rhodium nanoparticles in organic medium and their catalytic performance in the dehydrogenation of ammonia-borane. Chem Commun 2012;48:1180-2.
    • (2012) Chem Commun , vol.48 , pp. 1180-1182
    • Karahan, S.1    Zahmakiran, M.2    Ozkar, S.3
  • 22
    • 72449193898 scopus 로고    scopus 로고
    • Water soluble lauratestabilized rhodium(0) nanoclusters catalyst with unprecedented catalytic lifetime in the hydrolytic dehydrogenation of ammonia-borane
    • Durap F, Zahmakiran M, Özkar S. Water soluble lauratestabilized rhodium(0) nanoclusters catalyst with unprecedented catalytic lifetime in the hydrolytic dehydrogenation of ammonia-borane. Appl Catal A: General 2009;369:53-9.
    • (2009) Appl Catal A: General , vol.369 , pp. 53-59
    • Durap, F.1    Zahmakiran, M.2    Özkar, S.3
  • 24
    • 84893479388 scopus 로고    scopus 로고
    • Unique reactivity in Pt/CNT catalyzed hydrolytic dehydrogenation of ammonia borane
    • Chen W, Ji J, Duan X, Qian G, Li P, Zhou X, et al. Unique reactivity in Pt/CNT catalyzed hydrolytic dehydrogenation of ammonia borane. Chem Commun 2014;50:2142-4.
    • (2014) Chem Commun , vol.50 , pp. 2142-2144
    • Chen, W.1    Ji, J.2    Duan, X.3    Qian, G.4    Li, P.5    Zhou, X.6
  • 25
    • 84865660023 scopus 로고    scopus 로고
    • Immobilizing highly catalytically active Pt nanoparticles inside the pores of metal-organic framework: A double solvents approach
    • Aijaz A, Karkamkar A, Choi YJ, Tsumori N, Ronnebro E, Autrey T, et al. Immobilizing highly catalytically active Pt nanoparticles inside the pores of metal-organic framework: a double solvents approach. J Am Chem Soc 2012;134:13926-9.
    • (2012) J Am Chem Soc , vol.134 , pp. 13926-13929
    • Aijaz, A.1    Karkamkar, A.2    Choi, Y.J.3    Tsumori, N.4    Ronnebro, E.5    Autrey, T.6
  • 26
    • 84886552679 scopus 로고    scopus 로고
    • 2 multicore@shell self-assembled nanospheres: Clean synthesis, structure optimization, and catalytic applications
    • 2 multicore@shell self-assembled nanospheres: clean synthesis, structure optimization, and catalytic applications. J Am Chem Soc 2013;135:15864-72.
    • (2013) J Am Chem Soc , vol.135 , pp. 15864-15872
    • Wang, X.1    Liu, D.2    Song, S.3    Zhang, H.4
  • 27
    • 84857557128 scopus 로고    scopus 로고
    • 2 nanospheres in hydrolytic dehydrogenation of ammonia borane for chemical hydrogen storage
    • 2 nanospheres in hydrolytic dehydrogenation of ammonia borane for chemical hydrogen storage. J Mater Chem 2012;22:5065-71.
    • (2012) J Mater Chem , vol.22 , pp. 5065-5071
    • Lu, Z.H.1    Jiang, H.L.2    Yadav, M.3    Aranishi, K.4    Xu, Q.5
  • 28
    • 84885412319 scopus 로고    scopus 로고
    • Palladium(0) nanoparticles supported on silica-coated cobalt ferrite: A highly active, magnetically isolable and reusable catalyst for hydrolytic dehydrogenation of ammonia borane
    • Akbayrak S, Kaya M, Volkan M, Özkar S. Palladium(0) nanoparticles supported on silica-coated cobalt ferrite: a highly active, magnetically isolable and reusable catalyst for hydrolytic dehydrogenation of ammonia borane. Appl Catal B: Environ 2014;147:387-93.
    • (2014) Appl Catal B: Environ , vol.147 , pp. 387-393
    • Akbayrak, S.1    Kaya, M.2    Volkan, M.3    Özkar, S.4
  • 29
    • 84865503048 scopus 로고    scopus 로고
    • Surfactant free RGO/Pd nanocomposites as highly active heterogeneous catalysts for the hydrolytic dehydrogenation of ammonia borane for chemical hydrogen storage
    • Xi P, Chen F, Xie G, Ma C, Liu H, Shao C, et al. Surfactant free RGO/Pd nanocomposites as highly active heterogeneous catalysts for the hydrolytic dehydrogenation of ammonia borane for chemical hydrogen storage. Nanoscale 2012;4:5597-601.
    • (2012) Nanoscale , vol.4 , pp. 5597-5601
    • Xi, P.1    Chen, F.2    Xie, G.3    Ma, C.4    Liu, H.5    Shao, C.6
  • 30
    • 79957778558 scopus 로고    scopus 로고
    • Oleylamine-stabilized palladium(0) nanoclusters as highly active heterogeneous catalyst for the dehydrogenation of ammonia borane
    • Metin Ö, Duman S, Dinc M, Özkar S. Oleylamine-stabilized palladium(0) nanoclusters as highly active heterogeneous catalyst for the dehydrogenation of ammonia borane. J Phys Chem C 2011;115:10736-43.
    • (2011) J Phys Chem C , vol.115 , pp. 10736-10743
    • Metin, Ö.1    Duman, S.2    Dinc, M.3    Özkar, S.4
  • 31
    • 84902288023 scopus 로고    scopus 로고
    • Ruthenium(0) nanoparticles supported on nanotitania as highly active and nanoparticles supported on nanotitania as highly active and reusable catalyst in hydrogen generation from the hydrolysis of ammonia borane
    • Akbayrak S, Tanyildizi S, Morkan ̄, Özkar S. Ruthenium(0) nanoparticles supported on nanotitania as highly active and nanoparticles supported on nanotitania as highly active and reusable catalyst in hydrogen generation from the hydrolysis of ammonia borane. Int J Hydrogen Energy 2014;39:9628-37.
    • (2014) Int J Hydrogen Energy , vol.39 , pp. 9628-9637
    • Akbayrak, S.1    Tanyildizi, S.2    Morkan, I.3    Özkar, S.4
  • 32
    • 84870495084 scopus 로고    scopus 로고
    • Ruthenium(0) nanoparticles supported on multiwalled carbon nanotube as highly active catalyst for hydrogen generation from ammonia-borane
    • Akbayrak S, Özkar S. Ruthenium(0) nanoparticles supported on multiwalled carbon nanotube as highly active catalyst for hydrogen generation from ammonia-borane. ACS Appl Mater Interfaces 2012;4:6302-10.
    • (2012) ACS Appl Mater Interfaces , vol.4 , pp. 6302-6310
    • Akbayrak, S.1    Özkar, S.2
  • 33
    • 84868211594 scopus 로고    scopus 로고
    • In situ facile synthesis of ruthenium nanocluster catalyst supported on carbon black for hydrogen generation from the hydrolysis of ammonia-borane
    • Liang H, Chen G, Desinan S, Rosei R, Rosei F, Ma D. In situ facile synthesis of ruthenium nanocluster catalyst supported on carbon black for hydrogen generation from the hydrolysis of ammonia-borane. Int J Hydrogen Energy 2012;37:17921-7.
    • (2012) Int J Hydrogen Energy , vol.37 , pp. 17921-17927
    • Liang, H.1    Chen, G.2    Desinan, S.3    Rosei, R.4    Rosei, F.5    Ma, D.6
  • 34
    • 84896826990 scopus 로고    scopus 로고
    • 2 nanospheres: Highly efficient catalysts for hydrolytic dehydrogenation of ammonia borane
    • 2 nanospheres: highly efficient catalysts for hydrolytic dehydrogenation of ammonia borane. J Power Sources 2014;257:293-9.
    • (2014) J Power Sources , vol.257 , pp. 293-299
    • Yao, Q.1    Shi, W.2    Feng, G.3    Lu, Z.-H.4    Zhang, X.5    Tao, D.6
  • 35
    • 84912553473 scopus 로고    scopus 로고
    • Effective hydrolysis of ammonia borane catalyzed by ruthenium nanoparticles immobilized on graphic carbon nitride
    • Fan Y, Li X, He X, Zeng C, Fan G, Liu Q, et al. Effective hydrolysis of ammonia borane catalyzed by ruthenium nanoparticles immobilized on graphic carbon nitride. Int J Hydrogen Energy 2014;39:19982-9.
    • (2014) Int J Hydrogen Energy , vol.39 , pp. 19982-19989
    • Fan, Y.1    Li, X.2    He, X.3    Zeng, C.4    Fan, G.5    Liu, Q.6
  • 36
    • 33947606730 scopus 로고    scopus 로고
    • Catalytic activities of non-noble metals for hydrogen generation from aqueous ammonia-borane at room temperature
    • Xu Q, Chandra M. Catalytic activities of non-noble metals for hydrogen generation from aqueous ammonia-borane at room temperature. J Power Sources 2006;163:364-70.
    • (2006) J Power Sources , vol.163 , pp. 364-370
    • Xu, Q.1    Chandra, M.2
  • 37
    • 51049105756 scopus 로고    scopus 로고
    • Iron-nanoparticle- catalyzed hydrolytic dehydrogenation of ammonia borane for chemical hydrogen storage
    • Yan JM, Zhang XB, Han S, Shioyama H, Xu Q. Iron-nanoparticle- catalyzed hydrolytic dehydrogenation of ammonia borane for chemical hydrogen storage. Angew Chem Int Ed 2008;47:2287-9.
    • (2008) Angew Chem Int Ed , vol.47 , pp. 2287-2289
    • Yan, J.M.1    Zhang, X.B.2    Han, S.3    Shioyama, H.4    Xu, Q.5
  • 38
    • 84876286297 scopus 로고    scopus 로고
    • Catalytic hydrolysis of ammonia borane via magnetically recyclable copper iron nanoparticles for chemical hydrogen storage
    • Lu ZH, Li J, Zhu A, Yao Q, Huang W, Zhou RY, et al. Catalytic hydrolysis of ammonia borane via magnetically recyclable copper iron nanoparticles for chemical hydrogen storage. Int J Hydrogen Energy 2013;38:5330-7.
    • (2013) Int J Hydrogen Energy , vol.38 , pp. 5330-5337
    • Lu, Z.H.1    Li, J.2    Zhu, A.3    Yao, Q.4    Huang, W.5    Zhou, R.Y.6
  • 40
    • 80051577882 scopus 로고    scopus 로고
    • A highly efficient Co (0) catalyst derived from metal-organic framework for the hydrolysis of ammonia borane
    • Song P, Li Y, Li W, He B, Yang J, Li X. A highly efficient Co (0) catalyst derived from metal-organic framework for the hydrolysis of ammonia borane. Int J Hydrogen Energy 2011;36:10468-73.
    • (2011) Int J Hydrogen Energy , vol.36 , pp. 10468-10473
    • Song, P.1    Li, Y.2    Li, W.3    He, B.4    Yang, J.5    Li, X.6
  • 41
    • 71549138872 scopus 로고    scopus 로고
    • Room temperature hydrolytic dehydrogenation of ammonia borane catalyzed by Co nanoparticles
    • Yan JM, Zhang XB, Shioyama H, Xu Q. Room temperature hydrolytic dehydrogenation of ammonia borane catalyzed by Co nanoparticles. J Power Sources 2010;195:1091-4.
    • (2010) J Power Sources , vol.195 , pp. 1091-1094
    • Yan, J.M.1    Zhang, X.B.2    Shioyama, H.3    Xu, Q.4
  • 43
    • 76149130721 scopus 로고    scopus 로고
    • Monodisperse nickel nanoparticles and their catalysis in hydrolytic dehydrogenation of ammonia borane
    • Metin O, Mazumder V, Ozkar S, Sun S. Monodisperse nickel nanoparticles and their catalysis in hydrolytic dehydrogenation of ammonia borane. J Am Chem Soc 2010;132:1468-9.
    • (2010) J Am Chem Soc , vol.132 , pp. 1468-1469
    • Metin, O.1    Mazumder, V.2    Ozkar, S.3    Sun, S.4
  • 44
    • 50449086589 scopus 로고    scopus 로고
    • First row transition metal ion-assisted ammonia-borane hydrolysis for hydrogen generation
    • Kalidindi SB, Indirani M, Jagirdar BR. First row transition metal ion-assisted ammonia-borane hydrolysis for hydrogen generation. Inorg Chem 2008;47:7424-9.
    • (2008) Inorg Chem , vol.47 , pp. 7424-7429
    • Kalidindi, S.B.1    Indirani, M.2    Jagirdar, B.R.3
  • 45
    • 68149116256 scopus 로고    scopus 로고
    • Synthesis of longtime water/air-stable ni nanoparticles and their high catalytic activity for hydrolysis of ammonia-borane for hydrogen generation
    • Yan JM, Zhang XB, Han S, Shioyama H, Xu Q. Synthesis of longtime water/air-stable ni nanoparticles and their high catalytic activity for hydrolysis of ammonia-borane for hydrogen generation. Inorg Chem 2009;48:7389-93.
    • (2009) Inorg Chem , vol.48 , pp. 7389-7393
    • Yan, J.M.1    Zhang, X.B.2    Han, S.3    Shioyama, H.4    Xu, Q.5
  • 47
    • 84865272839 scopus 로고    scopus 로고
    • Copper(0) nanoparticles supported on silica-coated cobalt ferrite magnetic particles: Cost effective catalyst in the hydrolysis of ammonia-borane with an exceptional reusability performance
    • Kaya M, Zahmakiran M, Ozkar S, Volkan M. Copper(0) nanoparticles supported on silica-coated cobalt ferrite magnetic particles: cost effective catalyst in the hydrolysis of ammonia-borane with an exceptional reusability performance. ACS Appl Mater Interfaces 2012;4:3866-73.
    • (2012) ACS Appl Mater Interfaces , vol.4 , pp. 3866-3873
    • Kaya, M.1    Zahmakiran, M.2    Ozkar, S.3    Volkan, M.4
  • 48
    • 84896991785 scopus 로고    scopus 로고
    • Facile in situ synthesis of copper nanoparticles supported on reduced graphene oxide for hydrolytic dehydrogenation of ammonia borane
    • Yang Y, Lu ZH, Hu Y, Zhang Z, Shi W, Chen X, et al. Facile in situ synthesis of copper nanoparticles supported on reduced graphene oxide for hydrolytic dehydrogenation of ammonia borane. RSC Adv 2014;4:13749-52.
    • (2014) RSC Adv , vol.4 , pp. 13749-13752
    • Yang, Y.1    Lu, Z.H.2    Hu, Y.3    Zhang, Z.4    Shi, W.5    Chen, X.6
  • 49
    • 84905923818 scopus 로고    scopus 로고
    • Synergistic catalysis of MCM-41 immobilized Cu-Ni nanoparticles in hydrolytic dehydrogeneration of ammonia borane
    • Lu ZH, Li JP, Feng G, Yao QL, Zhang F, Zhou R, et al. Synergistic catalysis of MCM-41 immobilized Cu-Ni nanoparticles in hydrolytic dehydrogeneration of ammonia borane. Int J Hydrogen Energy 2014;39:13389-95.
    • (2014) Int J Hydrogen Energy , vol.39 , pp. 13389-13395
    • Lu, Z.H.1    Li, J.P.2    Feng, G.3    Yao, Q.L.4    Zhang, F.5    Zhou, R.6
  • 50
    • 84883861691 scopus 로고    scopus 로고
    • Nanocarbons for the development of advanced catalysts
    • Su DS, Perathoner S, Centi G. Nanocarbons for the development of advanced catalysts. Chem Rev 2013;113:5782-816.
    • (2013) Chem Rev , vol.113 , pp. 5782-5816
    • Su, D.S.1    Perathoner, S.2    Centi, G.3
  • 51
    • 13444310859 scopus 로고    scopus 로고
    • Preparation of novel RuB amorphous alloy catalyst supported on carbon nanotubes
    • Xu SX, Li FY, Wei RZ. Preparation of novel RuB amorphous alloy catalyst supported on carbon nanotubes. Carbon 2005;43:861-4.
    • (2005) Carbon , vol.43 , pp. 861-864
    • Xu, S.X.1    Li, F.Y.2    Wei, R.Z.3
  • 52
    • 84876515264 scopus 로고    scopus 로고
    • Mesoporous multiwalled carbon nanotubes as supports for monodispersed iron-boron catalysts: Improved hydrogen generation from hydrous hydrazine decomposition
    • Tong DG, Chu W, Wu P, Gu GF, Zhang L. Mesoporous multiwalled carbon nanotubes as supports for monodispersed iron-boron catalysts: improved hydrogen generation from hydrous hydrazine decomposition. J Mater Chem A 2013;1:359-66.
    • (2013) J Mater Chem A , vol.1 , pp. 359-366
    • Tong, D.G.1    Chu, W.2    Wu, P.3    Gu, G.F.4    Zhang, L.5
  • 53
    • 67650707930 scopus 로고    scopus 로고
    • Water-soluble poly(4- styrenesulfonic acid-co-maleic acid) stabilized ruthenium(0) and palladium(0) nanoclusters as highly active catalysts in hydrogen generation from the hydrolysis of ammoniaborane
    • Metin Ö, Şahin Ş, Özkar S. Water-soluble poly(4- styrenesulfonic acid-co-maleic acid) stabilized ruthenium(0) and palladium(0) nanoclusters as highly active catalysts in hydrogen generation from the hydrolysis of ammoniaborane. Int J Hydrogen Energy 2009;34:6304-13.
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 6304-6313
    • Metin, Ö.1    Şahin, Ş.2    Özkar, S.3
  • 54
    • 84878927059 scopus 로고    scopus 로고
    • Hydroxyapatite supported ruthenium(0) nanoparticles catalyst in hydrolytic dehydrogenation of ammonia borane: Insight to the nanoparticles formation and hydrogen evolution kinetics
    • Akbayrak S, Erdek P, Özkar S. Hydroxyapatite supported ruthenium(0) nanoparticles catalyst in hydrolytic dehydrogenation of ammonia borane: insight to the nanoparticles formation and hydrogen evolution kinetics. Appl Catal B: Environ 2013;142-143:187-95.
    • (2013) Appl Catal B: Environ , vol.142-143 , pp. 187-195
    • Akbayrak, S.1    Erdek, P.2    Özkar, S.3
  • 55
    • 84859779067 scopus 로고    scopus 로고
    • Preparation and characterization of LTAtype zeolite framework dispersed ruthenium nanoparticles and their catalytic application in the hydrolytic dehydrogenation of ammonia-borane for efficient hydrogen generation
    • Zahmakiran M. Preparation and characterization of LTAtype zeolite framework dispersed ruthenium nanoparticles and their catalytic application in the hydrolytic dehydrogenation of ammonia-borane for efficient hydrogen generation. Mate Sci Eng B 2012;177:606-13.
    • (2012) Mate Sci Eng B , vol.177 , pp. 606-613
    • Zahmakiran, M.1
  • 56
    • 84862758234 scopus 로고    scopus 로고
    • A facile synthesis of nearly monodisperse ruthenium nanoparticles and their catalysis in the hydrolytic dehydrogenation of ammonia borane for chemical hydrogen storage
    • Can H, Metin Ö. A facile synthesis of nearly monodisperse ruthenium nanoparticles and their catalysis in the hydrolytic dehydrogenation of ammonia borane for chemical hydrogen storage. Appl Catal B: Environ 2012;125:304-10.
    • (2012) Appl Catal B: Environ , vol.125 , pp. 304-310
    • Can, H.1    Metin, Ö.2
  • 57
    • 68349127238 scopus 로고    scopus 로고
    • Water soluble lauratestabilized ruthenium(0) nanoclusters catalyst for hydrogen generation from the hydrolysis of ammonia-borane: High activity and long lifetime
    • Durap F, Zahmakiran M, Özkar S. Water soluble lauratestabilized ruthenium(0) nanoclusters catalyst for hydrogen generation from the hydrolysis of ammonia-borane: high activity and long lifetime. Int J Hydrogen Energy 2009;34:7223-30.
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 7223-7230
    • Durap, F.1    Zahmakiran, M.2    Özkar, S.3
  • 58
    • 84881323001 scopus 로고    scopus 로고
    • The use of poly(vinyl phosphonic acid) microgels for the preparation of inherently magnetic Co metal catalyst particles in hydrogen production
    • Sahiner N, Sagbas S. The use of poly(vinyl phosphonic acid) microgels for the preparation of inherently magnetic Co metal catalyst particles in hydrogen production. J Power Sources 2014;246:55-62.
    • (2014) J Power Sources , vol.246 , pp. 55-62
    • Sahiner, N.1    Sagbas, S.2
  • 60
  • 61
    • 79958082712 scopus 로고    scopus 로고
    • Hydrogen production from ammonia borane via hydrogel template synthesized Cu, Ni, Co composites
    • Ozay O, Inger E, Aktas N, Sahiner N. Hydrogen production from ammonia borane via hydrogel template synthesized Cu, Ni, Co composites. Int J Hydrogen Energy 2011;36:8209-16.
    • (2011) Int J Hydrogen Energy , vol.36 , pp. 8209-8216
    • Ozay, O.1    Inger, E.2    Aktas, N.3    Sahiner, N.4


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