Graphitic Carbon Nitride in Oral Health: Emerging Applications, Antimicrobial Potential, and Future Perspectives. [PDF]
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Modification of Physico-Chemical and Biological Characteristics of Polymethylmethacrylate with Amorphous Carbon Nanoparticles for Counteracting Healthcare-Associated Infections. [PDF]
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Synthesis and Hydrogen Storage Properties of Mg-Based Complex Hydrides with Multiple Transition Metal Elements. [PDF]
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Hybrid polythiophene-metal composites as promising sensing materials for chemical warfare agents and chlorofluorocarbons. [PDF]
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An overview of reactive hydride composite (RHC) for solid-state hydrogen storage materials
International Journal of Hydrogen Energy, 2021Abstract Hydrogen storage using the metal hydrides and complex hydrides is the most convenient method because it is safe, enables high hydrogen capacity and requires optimum operating condition. Metal hydrides and complex hydrides offer high gravimetric capacity that allows storage of large amounts of hydrogen. However, the high operating temperature
N. A. Ali, N. Sazelee, M. Ismail
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Activation of the reactive hydride composite 2NaBH4 + MgH2
Scripta Materialia, 2011A novel method to enhance the reaction kinetics of the reactive hydride composite 2NaBH4 + MgH2 is described. It has been discovered that short-term exposure to a moist atmosphere has a very beneficial effect on the desorption reaction of the 2NaBH4 + MgH2 mixture.
C. Pistidda +9 more
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Structural analysis of calcium reactive hydride composite for solid state hydrogen storage
Journal of Applied Crystallography, 2014Owing to a theoretical hydrogen storage capacity of 10.5 wt% H2, Ca(BH4)2+MgH2, the so-called calcium reactive hydride composite (Ca-RHC), has a great potential as a hydrogen storage material. However, its dehydrogenation temperature (∼623 K) is too high for any mobile applications.
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Functions of MgH2 in hydrogen storage reactions of the 6LiBH4-CaH2 reactive hydride composite.
Dalton Transactions, 2012A significant improvement of hydrogen storage properties was achieved by introducing MgH(2) into the 6LiBH(4)-CaH(2) system. It was found that ~8.0 wt% of hydrogen could be reversibly stored in a 6LiBH(4)-CaH(2)-3MgH(2) composite below 400 °C and 100 bar of hydrogen pressure with a stepwise reaction, which is superior to the pristine 6LiBH(4)-CaH(2 ...
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