A novel and convenient way of hydride formation of rare earth intermetallic compounds by reaction with organic hydrogen carriers
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference14 articles.
1. Hydrogen uptake and hydrogenation activity of the rare earth intermetallic compound SmMg3 treated with anthracene
2. Hydrogen absorption in modified intermetallic compound systems
3. Exceptionally active magnesium for hydrogen storage: Solvated magnesium clusters formed in low temperature matrices
4. Preparation and hydriding behavior of magnesium metal clusters formed in low-temperature cocondensation: application of magnesium for hydrogen storage
5. Application of organic compounds to metal-hydrogen systems as a technique for improving sorption properties: A new class of hydrogen absorbers
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1. Thermochemical Energy Storage through De/Hydrogenation of Organic Liquids: Reactions of Organic Liquids on Metal Hydrides;ACS Applied Materials & Interfaces;2016-05-23
2. A new route to metal hydrides;Chemistry of Materials;1993-06
3. Simultaneous dehydrogenation of organic compounds and hydrogen removal by hydride forming alloys;Applied Catalysis A: General;1992-01
4. Preparation of amorphous and crystalline lanthanum-nickel (LaNi5.0) thin films using a sputtering method and thermodynamics of hydrogen absorption in these films;The Journal of Physical Chemistry;1990-06
5. Photochemically induced hydrogen storage in rare earth intermetallic compounds RCo5 (R = La and Sm) using alcohol as an energy vector;International Journal of Hydrogen Energy;1990
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