Ex situ characterization of N2H4-, NaBH4- and NH3BH3- reduced cobalt catalysts used in NaBH4 hydrolysis

被引:42
作者
Cavaliere, S. [2 ]
Hannauer, J. [1 ]
Demirci, U. B. [1 ]
Akdim, O. [1 ]
Miele, P. [1 ]
机构
[1] Univ Lyon 1, CNRS, UMR 5615, Lab Multimat & Interfaces, F-69622 Villeurbanne, France
[2] Univ Montpellier 2, CNRS, Inst Charles Gerhardt, Lab Agregats Interfaces & Mat Energie,UMR 5253, F-34095 Montpellier 5, France
关键词
Cobalt catalyst; Cobalt chloride reduction; Hydrogen release; Sodium borohydride hydrolysis; SODIUM-BOROHYDRIDE HYDROLYSIS; HYDROGEN GENERATION; AMMONIA BORANE; REDUCTION; BORIDE; DEHYDROGENATION; BEHAVIOR; NICKEL; METAL; IRON;
D O I
10.1016/j.cattod.2011.02.016
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Sodium borohydride NaBH4-reduced cobalt is a very attractive material in catalyzing NaBH4 hydrolysis, as it is highly reactive and cost-effective. However, the nature of its catalytically active phase is still unknown although it has been mostly suggested as being either cobalt boride such as Co2B or an alloy Co-B. With the objective to contribute to highlight the real nature of the catalytically active phase, we performed a systematic study focusing on synthesizing different Co catalysts, characterizing them by ICP-AES, N-2 adsorption/desorption, EDS, FTIR, DSC, SEM, TEM and XRD, and testing them in NaBH4 hydrolysis. Herein, it is showed that, to be highly reactive, the Co catalyst has to be reduced by a boron-containing reducing agent such as NaBH4 and ammonia borane NH3BH3. Furthermore, it has to be amorphous. None of both features were observed in the case of the hydrazine N2H4-reduced cobalt. Hence, it is suggested that the presence of boron is necessary to achieve better reactivity through electronic and geometric effects. (C) 2011 Elsevier B.V. All rights reserved.
引用
收藏
页码:3 / 12
页数:10
相关论文
共 42 条
[11]   Sodium borohydride versus ammonia borane, in hydrogen storage and direct fuel cell applications [J].
Demirci, Umit B. ;
Miele, Philippe .
ENERGY & ENVIRONMENTAL SCIENCE, 2009, 2 (06) :627-637
[12]   Sodium tetrahydroborate as energy/hydrogen carrier, its history [J].
Demirci, Umit B. ;
Miele, Philippe .
COMPTES RENDUS CHIMIE, 2009, 12 (09) :943-950
[13]  
Dinega DP, 1999, ANGEW CHEM INT EDIT, V38, P1788, DOI 10.1002/(SICI)1521-3773(19990614)38:12<1788::AID-ANIE1788>3.0.CO
[14]  
2-2
[15]   Studies on catalytic behavior of Co-Ni-B in hydrogen production by hydrolysis of NaBH4 [J].
Fernandes, R. ;
Patel, N. ;
Miotello, A. ;
Filippi, M. .
JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL, 2009, 298 (1-2) :1-6
[16]   New insights into the mechanism of H2 generation through NaBH4 hydrolysis on Co-based nanocatalysts studied by differential reaction calorimetry [J].
Garron, Anthony ;
Swierczynski, Dariusz ;
Bennici, Simona ;
Auroux, Aline .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2009, 34 (03) :1185-1199
[17]   BOROHYDRIDE REDUCTION OF COBALT IONS IN WATER - CHEMISTRY LEADING TO NANOSCALE METAL, BORIDE, OR BORATE PARTICLES [J].
GLAVEE, GN ;
KLABUNDE, KJ ;
SORENSEN, CM ;
HADJIPANAYIS, GC .
LANGMUIR, 1993, 9 (01) :162-169
[18]   XPS CHARACTERIZATION OF THE REDUCTION AND SYNTHESIS BEHAVIOR OF CO/MN OXIDE CATALYSTS FOR FISCHER-TROPSCH SYNTHESIS [J].
GUSE, K ;
PAPP, H .
FRESENIUS JOURNAL OF ANALYTICAL CHEMISTRY, 1993, 346 (1-3) :84-91
[19]   Hydrogen release through catalyzed methanolysis of solid sodium borohydride [J].
Hannauer, J. ;
Demirci, U. B. ;
Pastor, G. ;
Geantet, C. ;
Herrmann, J. M. ;
Miele, P. .
ENERGY & ENVIRONMENTAL SCIENCE, 2010, 3 (11) :1796-1803
[20]   A study on hydrogen generation from NaBH4 solution using the high-performance Co-B catalyst [J].
Jeong, SU ;
Kim, RK ;
Cho, EA ;
Kim, HJ ;
Nam, SW ;
Oh, IH ;
Hong, SA ;
Kim, SH .
JOURNAL OF POWER SOURCES, 2005, 144 (01) :129-134