Novel Materials for Green Hydrogen Production, Energy Conversion, and Fuel Cell Applications
A special issue of Materials (ISSN 1996-1944). This special issue belongs to the section "Energy Materials".
Deadline for manuscript submissions: closed (10 December 2023) | Viewed by 3137
Special Issue Editors
Interests: heterogeneous catalysis; hydrogen production; hydrogen application in small devices; safe hydrogen storage materials (solids and liquids); single-atom catalysts; flexible fuel cell; lightweight fuel cell; hydrogen production process and optimization; renewable hydrogen sources; recycling of spent hydrogen storage materials
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Special Issue Information
Dear Colleagues,
Recent years have witnessed fascinating developments in various fields of catalysis and the step-by-step transformation of scientific progress into novel technologies, which as a rule, exhibit not only a substantially enhanced catalytic performance but are also friendly towards energy production and the environment. The field of heritage conservation, with all its traditionalism and multidisciplinarity, also profited from this development. However, the specific features of this field have led to a considerable scattering of the literary sources and a lack of mutual information between all the relevant subjects.
This Special Issue should help to overcome these problems. It provides an opportunity to create a compendium of the novel methods, which will not only boost further scientific progress in the field of green hydrogen production and fuel cell applications but also provide researchers with a useful literary overview. It is focused on advanced solutions to fundamental problems in hydrogen production, the perceptions of which are often far ahead of their solutions.
I cordially invite you to submit your contribution to this issue, whose topics include, but are not limited to, the following:
- Efficient heterogeneous catalysis for hydrogen production from hydrogen storage materials (e.g., ammonia borane, formic acid, etc.);
- Fuel cells applications;
- Flexible fuel cells and solar fuel cells;
- Fiber-based lightweight fuel cells and applications in garment heating;
- Novel hydrogen storage materials and their mechanisms for hydrogen production;
- Novel applications of hydrogen energy (e.g., flexible devices, textiles and fabrics, and smart devices);
- The use of the Single-Atom strategy for hydrogen production;
- Process simulation and economics for hydrogen production process from hydrogen storage materials;
- The recycling process for spent hydrogen storage materials and its techno-economic assessment;
- Mechanistic study of hydrogen release from hydrogen storage materials using the Density Functional Theory.
Both research and review articles are welcome!
Dr. Tsang Chi-Wing
Dr. Manas Kumar Sarkar
Guest Editors
Manuscript Submission Information
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Keywords
- heterogeneous catalysis
- hydrogen production
- hydrogen application in small devices, e.g., drones
- safe hydrogen storage materials (solids and liquids)
- single-atom catalysts
- flexible fuel cell
- lightweight fuel cell
- hydrogen production process and optimization
- renewable hydrogen sources
- recycling of spent hydrogen storage materials
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