نتایج جستجو برای: hydrogen storage

تعداد نتایج: 324308  

Journal: :Journal of Physics: Conference Series 2007

Journal: :Advances in Science and Technology 2010

Journal: :Energies 2022

The liquid chemical hydrogen storage technology has great potentials for high-density and transportation at ambient temperature pressure. However, its commercial applications highly rely on the high-performance heterogeneous dehydrogenation catalysts, owing to difficulty of materials. In recent years, chemists materials scientists found that supported metal nanoparticles (MNPs) can exhibit high...

2008
Shimshon Gottesfeld Eric L. Brosha John R. Davey Fernando H. Garzon

This is the final report of a three-year, Laboratory Directed Research and Development (LDRD) project at Los Alamos National Laboratory (LANL). The project objective was to evaluate hydrogen uptake by fullerene substrates and to probe the potential of the hydrogedfullerene system for hydrogen fuel storage. As part of this project, we have completed and tested a fully automated, computer control...

Journal: :Journal of the American Chemical Society 2009
Ashley D Leonard Jared L Hudson Hua Fan Richard Booker Lin J Simpson Kevin J O'Neill Philip A Parilla Michael J Heben Matteo Pasquali Carter Kittrell James M Tour

Single-walled carbon nanotube (SWCNT) fibers were engineered to become a scaffold for the storage of hydrogen. Carbon nanotube fibers were swollen in oleum (fuming sulfuric acid), and organic spacer groups were covalently linked between the nanotubes using diazonium functionalization chemistry to provide 3-dimensional (3-D) frameworks for the adsorption of hydrogen molecules. These 3-D nanoengi...

Journal: :Journal of the American Chemical Society 2004
Long Pan Michelle B Sander Xiaoying Huang Jing Li Milton Smith Edward Bittner Bradley Bockrath J Karl Johnson

Advancement in hydrogen storage techniques represents one of the most important areas of today's materials research. While extensive efforts have been made to the existing techniques, there is no viable storage technology capable of meeting the DOE cost and performance targets at the present time. New materials with significantly improved hydrogen adsorption capability are needed. Microporous m...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2012
Shah Najiba Jiuhua Chen

One of the major obstacles to the use of hydrogen as an energy carrier is the lack of proper hydrogen storage material. Lithium amidoborane has attracted significant attention as hydrogen storage material. It releases ∼10.9 wt% hydrogen, which is beyond the Department of Energy target, at remarkably low temperature (∼90 °C) without borazine emission. It is essential to study the bonding behavio...

Journal: :Chemistry 2003
H Gijs Schimmel Gordon J Kearley Marije G Nijkamp Cornelis T Visser Krijn P de Jong Fokko M Mulder

Single-walled carbon nanotubes (SWNT) were reported to have record high hydrogen storage capacities at room temperature, indicating an interaction between hydrogen and carbon matrix that is stronger than known before. Here we present a study of the interaction of hydrogen with activated charcoal, carbon nanofibers, and SWNT that disproves these earlier reports. The hydrogen storage capacity of ...

2013
Jie Li Yuan Liu Zhijian Zhu Guozhu Zhang Tao Zou Zhijun Zou Shunping Zhang Dawen Zeng Changsheng Xie

A major drawback of traditional photocatalysts like TiO2 is that they can only work under illumination, and the light has to be UV. As a solution for this limitation, visible-light-driven energy storage photocatalysts have been developed in recent years. However, energy storage photocatalysts that are full-sunlight-driven (UV-visible-NIR) and possess long-lasting energy storage ability are lack...

Journal: :Journal of agricultural and food chemistry 2009
Nissim Silanikove Fira Shapiro Mayan Silanikove Uzi Merin Gabriel Leitner

The enzyme catalase is well-known to catalyze the disintegration of hydrogen peroxide to water and oxygen; however, this study shows that its main function in bovine milk is oxidation of nitrite to nitrate. This process depends on hydrogen peroxide, of which the main source appears to be hydrogen peroxide formation that is coupled to the conversion of purines--xanthine in the present study--to ...

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