메뉴 건너뛰기




Volumn 63, Issue 1, 2017, Pages 60-65

Reaction mechanism and kinetics for hydrolytic dehydrogenation of ammonia borane on a Pt/CNT catalyst

Author keywords

hydrolytic dehydrogenation of ammonia borane; kinetics; Pt CNT catalyst; reaction mechanism

Indexed keywords

AMMONIA; BYPRODUCTS; CATALYSTS; CHEMICAL BONDS; DEHYDROGENATION; ENZYME KINETICS; KINETICS; PLATINUM; THERMOANALYSIS;

EID: 84994135569     PISSN: 00011541     EISSN: 15475905     Source Type: Journal    
DOI: 10.1002/aic.15389     Document Type: Article
Times cited : (104)

References (38)
  • 1
    • 36049049423 scopus 로고    scopus 로고
    • Will we soon be fueling our automobiles with ammonia-borane?
    • Marder TB. Will we soon be fueling our automobiles with ammonia-borane? Angew Chem Int Ed. 2007;46:8116–8118.
    • (2007) Angew Chem Int Ed , vol.46 , pp. 8116-8118
    • Marder, T.B.1
  • 3
    • 78049400901 scopus 로고    scopus 로고
    • Hydrogen generation from noncatalytic hydrothermolysis of ammonia borane for vehicle applications
    • Diwan M, Hwang HT, Al-Kukhun A, Varma A. Hydrogen generation from noncatalytic hydrothermolysis of ammonia borane for vehicle applications. AIChE J. 2011;57:259–264.
    • (2011) AIChE J , vol.57 , pp. 259-264
    • Diwan, M.1    Hwang, H.T.2    Al-Kukhun, A.3    Varma, A.4
  • 4
    • 33646823784 scopus 로고    scopus 로고
    • A high-performance hydrogen generation system: transition metal-catalyzed dissociation and hydrolysis of ammonia-borane
    • Chandra M, Xu Q. A high-performance hydrogen generation system: transition metal-catalyzed dissociation and hydrolysis of ammonia-borane. J Power Sources. 2006;156:190–194.
    • (2006) J Power Sources , vol.156 , pp. 190-194
    • Chandra, M.1    Xu, Q.2
  • 5
    • 76149130721 scopus 로고    scopus 로고
    • Monodisperse nickel nanoparticles and their catalysis in hydrolytic dehydrogenation of ammonia borane
    • Metin O, Mazumder V, Ozkar S, Sun SH. Monodisperse nickel nanoparticles and their catalysis in hydrolytic dehydrogenation of ammonia borane. J Am Chem Soc. 2010;132:1468–1469.
    • (2010) J Am Chem Soc , vol.132 , pp. 1468-1469
    • Metin, O.1    Mazumder, V.2    Ozkar, S.3    Sun, S.H.4
  • 6
    • 84893479388 scopus 로고    scopus 로고
    • Unique reactivity in Pt/CNT catalyzed hydrolytic dehydrogenation of ammonia borane
    • Chen WY, Ji J, Duan XZ, Qian G, Li P, Zhou XG, Chen D, Yuan WK. Unique reactivity in Pt/CNT catalyzed hydrolytic dehydrogenation of ammonia borane. Chem Commun. 2014;50:2142–2144.
    • (2014) Chem Commun , vol.50 , pp. 2142-2144
    • Chen, W.Y.1    Ji, J.2    Duan, X.Z.3    Qian, G.4    Li, P.5    Zhou, X.G.6    Chen, D.7    Yuan, W.K.8
  • 7
    • 84873140839 scopus 로고    scopus 로고
    • Carbon nanomaterials in catalysis: proton affinity, chemical and electronic properties, and their catalytic consequences
    • Zhu J, Holmen A, Chen D. Carbon nanomaterials in catalysis: proton affinity, chemical and electronic properties, and their catalytic consequences. ChemCatChem. 2013;5:378–401.
    • (2013) ChemCatChem , vol.5 , pp. 378-401
    • Zhu, J.1    Holmen, A.2    Chen, D.3
  • 8
    • 84915785272 scopus 로고    scopus 로고
    • Mechanistic insight into size-dependent activity and durability in Pt/CNT catalyzed hydrolytic dehydrogenation of ammonia borane
    • Chen WY, Ji J, Feng X, Duan XZ, Qian G, Li P, Zhou XG, Chen D, Yuan WK. Mechanistic insight into size-dependent activity and durability in Pt/CNT catalyzed hydrolytic dehydrogenation of ammonia borane. J Am Chem Soc. 2014;136:16736–16739.
    • (2014) J Am Chem Soc , vol.136 , pp. 16736-16739
    • Chen, W.Y.1    Ji, J.2    Feng, X.3    Duan, X.Z.4    Qian, G.5    Li, P.6    Zhou, X.G.7    Chen, D.8    Yuan, W.K.9
  • 9
    • 84940961518 scopus 로고    scopus 로고
    • Carbon nanotubes as support in the platinum-catalyzed hydrolytic dehydrogenation of ammonia borane
    • Chen WY, Duan XZ, Qian G, Chen D, Zhou XG. Carbon nanotubes as support in the platinum-catalyzed hydrolytic dehydrogenation of ammonia borane. ChemSusChem. 2015;8:2927–2931.
    • (2015) ChemSusChem , vol.8 , pp. 2927-2931
    • Chen, W.Y.1    Duan, X.Z.2    Qian, G.3    Chen, D.4    Zhou, X.G.5
  • 10
    • 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
  • 11
    • 67749131199 scopus 로고    scopus 로고
    • Hydrogen generation from the hydrolysis of ammonia-borane and sodium borohydride using water-soluble polymer-stabilized cobalt (0) nanoclusters catalyst
    • Metin O, Ozkar S. Hydrogen generation from the hydrolysis of ammonia-borane and sodium borohydride using water-soluble polymer-stabilized cobalt (0) nanoclusters catalyst. Energy Fuel. 2009;23:3517–3526.
    • (2009) Energy Fuel , vol.23 , pp. 3517-3526
    • Metin, O.1    Ozkar, S.2
  • 12
    • 83455164480 scopus 로고    scopus 로고
    • Hydrolysis of ammonia borane as a hydrogen source: fundamental issues and potential solutions towards implementation
    • Sanyal U, Demirci UB, Jagirdar BR, Miele P. Hydrolysis of ammonia borane as a hydrogen source: fundamental issues and potential solutions towards implementation. ChemSusChem. 2011;4:1731–1739.
    • (2011) ChemSusChem. , vol.4 , pp. 1731-1739
    • Sanyal, U.1    Demirci, U.B.2    Jagirdar, B.R.3    Miele, P.4
  • 15
    • 38849171130 scopus 로고    scopus 로고
    • A procedure for the regeneration of ammonia borane from BNH-waste products
    • Hausdorf S, Baitalow F, Wolf G, Mertens FO. A procedure for the regeneration of ammonia borane from BNH-waste products. Int J Hydrogen Energy. 2008;33:608–614.
    • (2008) Int J Hydrogen Energy. , vol.33 , pp. 608-614
    • Hausdorf, S.1    Baitalow, F.2    Wolf, G.3    Mertens, F.O.4
  • 16
    • 79955899873 scopus 로고    scopus 로고
    • 3. A comparative study of their activity in hydrolysis of ammonia-borane
    • 3. A comparative study of their activity in hydrolysis of ammonia-borane. Int J Hydrogen Energy. 2011;36:7051–7065.
    • (2011) Int J Hydrogen Energy , vol.36 , pp. 7051-7065
    • Rachiero, G.P.1    Demirci, U.B.2    Miele, P.3
  • 18
  • 19
    • 34147155958 scopus 로고    scopus 로고
    • Hydrolytic cleavage of ammonia-borane complex for hydrogen production
    • Mohajeri N, Ali T, Adebiyi O. Hydrolytic cleavage of ammonia-borane complex for hydrogen production. J Power Sources. 2007;167:482–485.
    • (2007) J Power Sources , vol.167 , pp. 482-485
    • Mohajeri, N.1    Ali, T.2    Adebiyi, O.3
  • 20
    • 76749099651 scopus 로고    scopus 로고
    • Nanoparticle-assembled Co-B thin film for the hydrolysis of ammonia borane: a highly active catalyst for hydrogen production
    • Patel N, Fernandes R, Guella G, Miotello A. Nanoparticle-assembled Co-B thin film for the hydrolysis of ammonia borane: a highly active catalyst for hydrogen production. Appl Catal B Environ. 2010;95:37–43.
    • (2010) Appl Catal B Environ , vol.95 , pp. 37-43
    • Patel, N.1    Fernandes, R.2    Guella, G.3    Miotello, A.4
  • 21
    • 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;163:364–370.
    • (2006) J Power Sources , vol.163 , pp. 364-370
    • Xu, Q.1    Chandra, M.2
  • 22
    • 78650512721 scopus 로고    scopus 로고
    • Hydrolytic dehydrogenation of ammonia borane catalyzed by carbon supported Co core-Pt shell nanoparticles
    • Yang X, Cheng F, Tao Z, Chen J. Hydrolytic dehydrogenation of ammonia borane catalyzed by carbon supported Co core-Pt shell nanoparticles. J Power Sources. 2011;196:2785–2789.
    • (2011) J Power Sources , vol.196 , pp. 2785-2789
    • Yang, X.1    Cheng, F.2    Tao, Z.3    Chen, J.4
  • 24
    • 84924249918 scopus 로고    scopus 로고
    • Isokinetic temperature and size-controlled activation of ruthenium-catalyzed ammonia borane hydrolysis
    • Ma H, Na C. Isokinetic temperature and size-controlled activation of ruthenium-catalyzed ammonia borane hydrolysis. ACS Catal. 2015;5:1726–1735.
    • (2015) ACS Catal , vol.5 , pp. 1726-1735
    • Ma, H.1    Na, C.2
  • 25
    • 36549086864 scopus 로고    scopus 로고
    • Minimizing water utilization in hydrolysis of sodium borohydride: the role of sodium metaborate hydrates
    • Marrero-Alfonso EY, Gray JR, Davis TA, Matthews MA. Minimizing water utilization in hydrolysis of sodium borohydride: the role of sodium metaborate hydrates. Int J Hydrogen Energy. 2007;32:4723–4730.
    • (2007) Int J Hydrogen Energy , vol.32 , pp. 4723-4730
    • Marrero-Alfonso, E.Y.1    Gray, J.R.2    Davis, T.A.3    Matthews, M.A.4
  • 27
    • 36448993688 scopus 로고
    • FT-IR and Raman spectroscopic study of hydrated borates
    • Li J, Xia SP, Gao SY. FT-IR and Raman spectroscopic study of hydrated borates. Spectrochim Acta. 1995;51:519–532.
    • (1995) Spectrochim Acta , vol.51 , pp. 519-532
    • Li, J.1    Xia, S.P.2    Gao, S.Y.3
  • 28
    • 0043238845 scopus 로고    scopus 로고
    • In situ characterization of interaction of ammonia with carbon surface in oxygen atmosphere
    • Zawadzki J, Wisniewski M. In situ characterization of interaction of ammonia with carbon surface in oxygen atmosphere. Carbon. 2003;41:2257–2267.
    • (2003) Carbon , vol.41 , pp. 2257-2267
    • Zawadzki, J.1    Wisniewski, M.2
  • 31
    • 77955216404 scopus 로고    scopus 로고
    • Ammonia-borane and related compounds as dihydrogen sources
    • Staubitz A, Robertson AP, Manners I. Ammonia-borane and related compounds as dihydrogen sources. Chem Rev. 2010;110:4079–4124.
    • (2010) Chem Rev , vol.110 , pp. 4079-4124
    • Staubitz, A.1    Robertson, A.P.2    Manners, I.3
  • 34
    • 84858776560 scopus 로고    scopus 로고
    • On the interpretation of deuterium kinetic isotope effects in C-H bond functionalizations by transition-metal complexes
    • Simmons EM, Hartwig JF. On the interpretation of deuterium kinetic isotope effects in C-H bond functionalizations by transition-metal complexes. Angew Chem Int Ed. 2012;51:3066–3072.
    • (2012) Angew Chem Int Ed , vol.51 , pp. 3066-3072
    • Simmons, E.M.1    Hartwig, J.F.2
  • 35
    • 34247386350 scopus 로고    scopus 로고
    • Room temperature hydrogen generation from aqueous ammonia-borane using noble metal nano-clusters as highly active catalysts
    • Chandra M, Xu Q. Room temperature hydrogen generation from aqueous ammonia-borane using noble metal nano-clusters as highly active catalysts. J Power Sources. 2007;168:135–142.
    • (2007) J Power Sources , vol.168 , pp. 135-142
    • Chandra, M.1    Xu, Q.2
  • 36
    • 65549092407 scopus 로고    scopus 로고
    • Density functional theory comparison of water dissociation steps on Cu, Au, Ni, Pd, and Pt
    • Phatak AA, Delgass WN, Ribeiro FH, Schneider WF. Density functional theory comparison of water dissociation steps on Cu, Au, Ni, Pd, and Pt. J Phys Chem C. 2009;113:7269–7276.
    • (2009) J Phys Chem C , vol.113 , pp. 7269-7276
    • Phatak, A.A.1    Delgass, W.N.2    Ribeiro, F.H.3    Schneider, W.F.4
  • 37
    • 33847111121 scopus 로고    scopus 로고
    • x (x = 0-0.12) hollow spheres as catalysts for hydrogen generation from ammonia borane
    • x (x = 0-0.12) hollow spheres as catalysts for hydrogen generation from ammonia borane. Inorg Chem. 2007;46:788–794.
    • (2007) Inorg Chem , vol.46 , pp. 788-794
    • Cheng, F.1    Ma, H.2    Li, Y.3    Chen, J.4
  • 38
    • 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 ammonia-borane
    • Metin O, Sahin S, Ozkar 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 ammonia-borane. Int J Hydrogen Energy. 2009;34:6304–6313.
    • (2009) Int J Hydrogen Energy , vol.34 , pp. 6304-6313
    • Metin, O.1    Sahin, S.2    Ozkar, S.3


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.