A Potential Hydrogen-Storage Media: C 2 H 4 and C 5 H 5 Molecules Doped with Rare Earth Atoms
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Link
https://iopscience.iop.org/article/10.1088/0256-307X/29/12/126801/pdf
Reference23 articles.
1. The infrared and ultraviolet absorption spectra of laboratory-produced carbon dust: evidence for the presence of the C60 molecule
2. Calcium as the Superior Coating Metal in Functionalization of Carbon Fullerenes for High-Capacity Hydrogen Storage
3. Adsorption Mechanism of Hydrogen on Boron-Doped Fullerenes
4. Fullerene Nanocage Capacity for Hydrogen Storage
5. First-Principles Study of Hydrogen Storage on Li12C60
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2. Adsorption of molecular hydrogen on inorganometallic complexes B2H4M (M=Li, Be, Sc, Ti, V);Structural Chemistry;2018-06-04
3. First-principles study of hydrogen storage on Li 12 F 12 nano-cage;Chemical Physics Letters;2017-03
4. Two dimetallocenes with vanadium and chromium: Electronic structures and their promising application in hydrogen storage;International Journal of Hydrogen Energy;2015-09
5. Synthesis, structure, optical, and electric properties of Ce-doped CuInTe 2 compound;Chinese Physics B;2014-11-28
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