Bismuth tungsten oxide (BWO) based photoelectrode (PE) composite for photoelectrochemical processes, has plasmonic gold nanoparticle electro deposited BWO coated electrodes enabling localized surface plasmon resonance based band gap reduction
2024-12-04
专利权人INDIAN TECHNOLOGY INST (INTE-Non-standard)
申请日期2024-12-04
专利号IN202431095718-A
成果简介NOVELTY - Bismuth tungsten oxide (BWO) based photoelectrode (PE) composite, has plasmonic gold nanoparticle (Au NPs) electro deposited BWO coated electrodes enabling localized surface plasmon resonance (LSPR) based band gap reduction in the range of 2.89-2.30electron volt (eV) with respect to 2.91 eV for BWO PE. USE - Bismuth tungsten oxide (BWO) based photoelectrode (PE) composite for photoelectrochemical processes. ADVANTAGE - The BWO based Photoelectrode (PE) composite for photoelectrochemical processes and membraneless continuous flow microfluidic electrolyzer (mCFµE) thereof, is provided which photoelectrode is a highly-efficient photoelectrode (PE) for photoelectrochemical electro-oxidation of alkaline ethanol-water mixture inside a membraneless continuous flow microfluidic electrolyzer -mCFµE. The composite increase light absorption, raise the concentration of photogenerated charge carriers, and improve the separation of charges inside the materials. DETAILED DESCRIPTION - INDEPENDENT CLAIMS are included for:(1) A method of fabrication of BWO based Photoelectrode (PE) composite; (2) A membraneless continuous flow microfluidic electrolyzer (mCFµE); (3) a photovoltaic (PV) module; and a co-acting means for simulation of localized surface plasmon resonance (LSPR).
IPC 分类号B82Y-030/00 ; B82Y-040/00 ; C25B-001/04 ; H01M-004/02 ; H01M-004/04 ; H01M-004/08 ; H01M-004/134 ; H01M-004/136
国家印度
专业领域材料科学
语种英语
成果类型专利
文献类型科技成果
条目标识符http://119.78.100.226:8889/handle/3KE4DYBR/14251
专题中国科学院新疆生态与地理研究所
作者单位
INDIAN TECHNOLOGY INST (INTE-Non-standard)
推荐引用方式
GB/T 7714
BANDYOPADHYAY D,MANDAL T K,DUBEY S,et al. Bismuth tungsten oxide (BWO) based photoelectrode (PE) composite for photoelectrochemical processes, has plasmonic gold nanoparticle electro deposited BWO coated electrodes enabling localized surface plasmon resonance based band gap reduction. IN202431095718-A[P]. 2024.
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