| Literature DB >> 26287959 |
Zhen-Feng Huang1,2, Jiajia Song1,2, Lun Pan1,2, Xiangwen Zhang1,2, Li Wang1,2, Ji-Jun Zou1,2.
Abstract
The conversion, storage, and utilization of renewable energy have all become more important than ever before as a response to ever-growing energy and environment concerns. The performance of energy-related technologies strongly relies on the structure and property of the material used. The earth-abundant family of tungsten oxides (WOx ≤3 ) receives considerable attention in photocatalysis, electrochemistry, and phototherapy due to their highly tunable structures and unique physicochemical properties. Great breakthroughs have been made in enhancing the optical absorption, charge separation, redox capability, and electrical conductivity of WOx ≤3 through control of the composition, crystal structure, morphology, and construction of composite structures with other materials, which significantly promotes the efficiency of processes and devices based on this material. Herein, the properties and synthesis of WOx ≤3 family are reviewed, and then their energy-related applications are highlighted, including solar-light-driven water splitting, CO2 reduction, and pollutant removal, electrochromism, supercapacitors, lithium batteries, solar and fuel cells, non-volatile memory devices, gas sensors, and cancer therapy, from the aspect of function-oriented structure design and control.Entities:
Keywords: electrochemistry; energy storage and conversion; photocatalysis; phototherapy; tungsten oxide
Year: 2015 PMID: 26287959 DOI: 10.1002/adma.201501217
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849