TY - JOUR
T1 - Light metal complex hydride hydrogen storage systems
AU - Liu, Xin
AU - Wu, Chuan
AU - Wu, Feng
AU - Bai, Ying
N1 - Publisher Copyright:
�, 2015, Chinese Academy of Sciences. All right reserved.
PY - 2015/9/24
Y1 - 2015/9/24
N2 - The key technology for hydrogen energy effectively is to develop safe, economical and efficient hydrogen storage system. Among all the hydrogen storage technologies at present, solid-state hydrogen storage material has got a lot of attentions because of its outstanding advantages including high density, excellent cycle property, safe and convenient storage mode. Complex hydride material has the highest hydrogen storage density; and light metal complex hydride hydrogen storage systems (LMCHHSS) which have high hydrogen storage density and excellent hydrogen storage property are the research emphasis with good achievements. The decomposition mechanisms, thermodynamic and kinetic properties, cycling performances, crystal structures, research status of LMCHHSS, including borohydride system, alanate system and amide system, are discussed in the paper. At last, some promising research directions to reduce thermodynamic stability, improve kinetic property and cycling hydrogen storage property, such as binary or multicomponent composite system, efficient catalyst nanoparticle, superior reaction environment, or the comprehensive synergistic effect of the above, are suggested for the developing trends of the domain in the future.
AB - The key technology for hydrogen energy effectively is to develop safe, economical and efficient hydrogen storage system. Among all the hydrogen storage technologies at present, solid-state hydrogen storage material has got a lot of attentions because of its outstanding advantages including high density, excellent cycle property, safe and convenient storage mode. Complex hydride material has the highest hydrogen storage density; and light metal complex hydride hydrogen storage systems (LMCHHSS) which have high hydrogen storage density and excellent hydrogen storage property are the research emphasis with good achievements. The decomposition mechanisms, thermodynamic and kinetic properties, cycling performances, crystal structures, research status of LMCHHSS, including borohydride system, alanate system and amide system, are discussed in the paper. At last, some promising research directions to reduce thermodynamic stability, improve kinetic property and cycling hydrogen storage property, such as binary or multicomponent composite system, efficient catalyst nanoparticle, superior reaction environment, or the comprehensive synergistic effect of the above, are suggested for the developing trends of the domain in the future.
KW - Hydrogen storage system
KW - Kinetic property
KW - Light metal complex hydride
KW - Reaction mechanism
KW - Thermodynamic property
UR - http://www.scopus.com/inward/record.url?scp=84945530123&partnerID=8YFLogxK
U2 - 10.7536/PC150210
DO - 10.7536/PC150210
M3 - Review article
AN - SCOPUS:84945530123
SN - 1005-281X
VL - 27
SP - 1167
EP - 1181
JO - Progress in Chemistry
JF - Progress in Chemistry
IS - 9
ER -