| Literature DB >> 29896769 |
Shun Dekura1, Hirokazu Kobayashi1,2, Ryuichi Ikeda1, Mitsuhiko Maesato1, Haruka Yoshino3, Masaaki Ohba3, Takayoshi Ishimoto4,5, Shogo Kawaguchi6, Yoshiki Kubota7, Satoru Yoshioka8, Syo Matsumura8,9, Takeharu Sugiyama10, Hiroshi Kitagawa1.
Abstract
The palladium-hydrogen system is one of the most famous hydrogen-storage systems. Although there has been much research on β-phase PdH(D)x , we comprehensively investigated the nature of the interaction between Pd and H(D) in α-phase PdH(D)x (x<0.03 at 303 K), and revealed the existence of Pd-H(D) chemical bond for the first time, by various in situ experimental techniques and first-principles theoretical calculations. The lattice expansion, magnetic susceptibility, and electrical resistivity all provide evidence. In situ solid-state 1 H and 2 H NMR spectroscopy and first-principles theoretical calculations revealed that a Pd-H(D) chemical bond exists in the α phase, but the bonding character of the Pd-H(D) bond in the α phase is quite different from that in the β phase; the nature of the Pd-H(D) bond in the α phase is a localized covalent bond whereas that in the β phase is a metallic bond.Entities:
Keywords: chemical bonding; hydrogen; hydrogen storage; palladium; solid-state chemistry
Year: 2018 PMID: 29896769 DOI: 10.1002/anie.201805753
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336