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A recent progress of room-temperature airborne ozone decomposition catalysts 被引量:1
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作者 jiami ma Ranran Cao +1 位作者 Yanliu Dang Jinlong Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2021年第10期2985-2993,共9页
Ozone(O_(3))plays essential roles in stratosphere and helps reduce the amount of harmful ultraviolet arriving the Earth’s surface.However,O_(3)is also a strong oxidant and causes troubles to human health in troposphe... Ozone(O_(3))plays essential roles in stratosphere and helps reduce the amount of harmful ultraviolet arriving the Earth’s surface.However,O_(3)is also a strong oxidant and causes troubles to human health in troposphere,especially in the confined space,such as indoor environment.Recently,O_(3)abatement materials have become research hotspots due to the urgent environmental demands.Catalysis is a facile strategy that can eliminate indoor airborne O_(3)efficiently and economically.Thus,this review summarizes the recent progresses of O_(3)decomposition catalysts.The catalysts covered here are categorized as follows:zeolite,metal organic frameworks(MOFs),metal oxides,noble metals.Manganese–based catalysts display higher efficiency and are mainly discussed.Generally,the active sites of O_(3)decomposition catalysts are described as Lewis acid sites(e.g.,zeolite),metal sites(e.g.,MOFs),oxygen vacancy sites(e.g.,MnO_(2))in the previous work.In this review,we ascribe all the active sites to unsaturated metal sites and their Lewis acidity.Possible evidence from the experimental and theoretical perspectives are proposed.Furthermore,the strategy to circumvent deactivation caused by peroxides(O_(2)^(2)–)accumulation and water molecular competition are also elaborated.Finally,perspective is presented on the challenges and opportunities of exploring existing and new O_(3)decomposition catalysts. 展开更多
关键词 OZONE Active sites MECHANISM DEACTIVATION Indoor air CATALYSTS
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