Novel hydrogen storage materials: A review of lightweight complex hydrides

被引:413
作者
Jain, I. P. [1 ]
Jain, Pragya [1 ]
Jain, Ankur [1 ]
机构
[1] Univ Rajasthan, Ctr Nonconvent Energy Resources, Jaipur 302004, Rajasthan, India
关键词
Hydrogen storage; Light weight hydrides; Complex hydrides; SYNCHROTRON X-RAY; SODIUM ALUMINUM-HYDRIDE; VON ERDALKALIBORANATEN ME<BH4>2; AMMONIA-BORANE DEHYDROGENATION; LOW-TEMPERATURE PHASE; STEP DIRECT SYNTHESIS; TI-DOPED NAALH4; N-H SYSTEM; CRYSTAL-STRUCTURE; THERMAL-DECOMPOSITION;
D O I
10.1016/j.jallcom.2010.04.250
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The world is facing energy shortage and has become increasingly depending on new methods to store and convert energy for new, environmentally friendly methods of transportation and electrical energy generation as well as for portable electronics. Mobility the transport of people and goods is a socioeconomic reality that will surely increase in the coming years. Non-renewable fossil fuels are projected to decline sharply after 20-30 years. CO2 emission from burning such fuels is the main cause for global warming. Currently whole world is seeking international commitment to cut emissions of greenhouse gases by 60% by 2050. Hydrogen which can be produced with little or no harmful emissions has been projected as a long term solution for a secure energy future. Increasing application of hydrogen energy is the only way forward to meet the objectives of Department of Energy (DOE), USA, i.e. reducing green house gases, increasing energy security and strengthening the developing countries economy. Any transition from a carbon-based/fossil fuel energy system to a hydrogen based economy involves overcoming significant scientific, technological and socio-economic barriers before ultimate implementation of hydrogen as the clean energy source of the future. Lot of research is going on in the world to find commercially viable solutions for hydrogen production, storage, and utilization, but hydrogen storage is very challenging, as application part of hydrogen energy totally depend on this. During early nineties and now also hydrogen storage as gas, liquid and metal hydride has been undertaken to solve the problem of hydrogen storage and transportation for the utilization as hydrogen energy, but none of these roots could became commercially viable along with the safety aspects for gas and liquid. With the result many new novel materials appeared involving different principles resulting in a fairly complex situation with no correlation between any two materials. In the present review article the fundamental understanding of the physical, chemical and structural properties of light weight hydride materials, e.g. Alanates, Borohydrides, Amide Borohydrides, Amide-Imide system, Amineborane and Alane for hydrogen storage has been presented. Lot of details of these materials has been incorporated such as synthesis, crystal structure, thermodynamics and kinetics of hydrogenation dehydrogenation processes, reversibility and hydrogen storage capacity has been presented. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:303 / 339
页数:37
相关论文
共 374 条
[1]   THE LATTICE CONSTANTS OF THE ALKALI BOROHYDRIDES AND THE LOW-TEMPERATURE PHASE OF SODIUM BOROHYDRIDE [J].
ABRAHAMS, SC ;
KALNAJS, J .
JOURNAL OF CHEMICAL PHYSICS, 1954, 22 (03) :434-436
[2]  
ADAMS JM, 1964, METAL BORON COMPOUND
[3]  
ADAMS RM, 2003, INORG CHEM, V964, P914
[4]   EFFECT OF SURFACE-ACIDITY OF ACTIVATED CARBON ON HYDROGEN STORAGE [J].
AGARWAL, RK ;
NOH, JS ;
SCHWARZ, JA ;
DAVINI, P .
CARBON, 1987, 25 (02) :219-226
[5]   Catalytic effect of ZrCrNi alloy on hydriding properties of MgH2 [J].
Agarwal, Shivani ;
Aurora, Annalisa ;
Jain, Ankur ;
Jain, I. P. ;
Montone, Amelia .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2009, 34 (22) :9157-9162
[6]   First-principles determination of multicomponent hydride phase diagrams: application to the Li-Mg-N-H system [J].
Akbarzadeh, Alireza R. ;
Ozolins, Vidvuds ;
Wolverton, Christopher .
ADVANCED MATERIALS, 2007, 19 (20) :3233-+
[7]   Identification of destabilized metal hydrides for hydrogen storage using first principles calculations [J].
Alapati, SV ;
Johnson, JK ;
Sholl, DS .
JOURNAL OF PHYSICAL CHEMISTRY B, 2006, 110 (17) :8769-8776
[8]   Water splitting goes au naturel [J].
Alper, J .
SCIENCE, 2003, 299 (5613) :1686-1687
[9]   A safe, portable, hydrogen gas generator using aqueous borohydride solution and Ru catalyst [J].
Amendola, SC ;
Sharp-Goldman, SL ;
Janjua, MS ;
Spencer, NC ;
Kelly, MT ;
Petillo, PJ ;
Binder, M .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2000, 25 (10) :969-975
[10]   An ultrasafe hydrogen generator: aqueous, alkaline borohydride solutions and Ru catalyst [J].
Amendola, SC ;
Sharp-Goldman, SL ;
Janjua, MS ;
Kelly, MT ;
Petillo, PJ ;
Binder, M .
JOURNAL OF POWER SOURCES, 2000, 85 (02) :186-189