Scandium Decoration of Boron Doped Porous Graphene for High-Capacity Hydrogen Storage

scientific article published on 27 June 2019

Scandium Decoration of Boron Doped Porous Graphene for High-Capacity Hydrogen Storage is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.3390/MOLECULES24132382
P932PMC publication ID6651430
P698PubMed publication ID31252605

P50authorCai-Rong ZhangQ60528586
P2093author name stringJing Wang
Yuhong Chen
Lihua Yuan
Meiling Zhang
P2860cites workMultifunctional Porous Graphene for Nanoelectronics and Hydrogen Storage: New Properties Revealed by First Principle CalculationsQ62683121
Titanium-decorated graphene for high-capacity hydrogen storage studied by density functional simulationsQ83610408
Improved permeability and selectivity in porous graphene for hydrogen purificationQ85897019
Strategies for the modification of adhesion at graphene/Al Interfaces: a first principles studyQ87246214
Boron-substituted graphyne as a versatile material with high storage capacities of Li and H2: a multiscale theoretical studyQ87324195
Sc-Decorated Porous Graphene for High-Capacity Hydrogen Storage: First-Principles CalculationsQ41575007
Synthesis of boron-doped graphene monolayers using the sole solid feedstock by chemical vapor depositionQ44735863
NaBH4 in "Graphene Wrapper:" Significantly Enhanced Hydrogen Storage Capacity and Regenerability through Nanoencapsulation.Q50953951
Monodisperse magnesium hydride nanoparticles uniformly self-assembled on graphene.Q51792475
Porous graphenes: two-dimensional polymer synthesis with atomic precisionQ57307722
P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P433issue13
P921main subjectscandiumQ713
grapheneQ169917
P577publication date2019-06-27
P1433published inMoleculesQ151332
P1476titleScandium Decoration of Boron Doped Porous Graphene for High-Capacity Hydrogen Storage
P478volume24

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