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【?鞲濉縁rontiers in Chemistry 中科院二區(qū)和JCR二區(qū)(IF 5.221)
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【?鞲濉縡rontiers in chemistry “inorganic materials for energy and environmental catalysis” frontiers in chemistry是中科院二區(qū)和jcr二區(qū)期刊,現(xiàn)開設(shè)?癷norganic materials for energy and environmental catalysis”以關(guān)注無(wú)機(jī)材料在能源轉(zhuǎn)化及環(huán)境凈化方面的應(yīng)用前沿,為相關(guān)領(lǐng)域的發(fā)展提供借鑒和參考。掃碼進(jìn)入 雜志主頁(yè) https://www.frontiersin.org/journals/chemistry# 專刊主頁(yè)https://www.frontiersin.org/rese ... ronmental-catalysis ?黝} as humanity was developing, we have faced unprecedented environmental problems and energy crises. therefore, the development of new techniques and materials for producing clean energy and environmental purification has become the hot spot around the world. many works were reported to develop various inorganic materials that were used in electrocatalysis, photocatalysis, heterogeneous-fenton, pms activation, etc. inorganic materials are a huge family, including metals, metal oxides, nonmetallic oxides, sulphides, nitrides, phosphides, haloids, etc. all these kinds of materials appeared in the research of energy and environmental catalysis. furthermore, inorganic materials have a wide range of nanostructures, which play significant roles in catalysis. also, their composites are always regarded as achieve higher performance. therefore, inorganic materials have played a major role in the fields of energy and environmental catalysis over the past decades and have demonstrated a great potential for the future. environmental problems and energy crises are two great challenges for human beings. developing new techniques and materials for producing clean energy and environmental purification has attracted a lot of attention in the past decades. although numerous related works were reported and a lot of inorganic materials were used in energy and environmental catalysis, there is still a great gap between the lab research and the practical applications. encouragingly, however, more and more works were focused on practical applications and some attempts were made. the difficulties for the lab research to move to practical application include, the cost of the inorganic materials, relatively low efficiency, the effect of complex conditions, the recycling performance, etc. a lot of work is needed to be done before a new technique find a practical application. therefore, any effort that focuses on lifting resolving the practical use barriers of concrete applications of inorganic materials for energy and environment catalysis are encouraged to be submitted to this research topic. we believe that this topic will give some valuable references to the development of inorganic materials used in energy and environmental applications. we welcome the submission of original research, review and mini-review articles that include, but not limited to, the following themes: • inorganic materials used in photocatalysis/photoelectrocatalysis • inorganic materials used in water splitting • inorganic materials used in reduction of carbon dioxide • inorganic materials used in wastewater purification • inorganic materials used in air purification • devices for energy conversion and environmental remediation • devices for environmental remediation 有意向投稿的同仁,可先發(fā)郵件至編輯qingyizeng@usc.edu.cn,獲得約稿郵件。 專刊編輯 prof. qingyi zeng (曾慶意) university of south china, hengyang, china email: qingyizeng@usc.edu.cn prof. lai lyu (呂來(lái)) guangzhou university, guangzhou, china email: lyulai@gzhu.edu.cn prof. chong-chen wang (王崇臣) beijing university of civil engineering and architecture, beijing, china email: wangchongchen@bucea.edu.cn associate prof. zhu xiong (熊竹) guangzhou university, guangzhou, china email: xiongzhu@gzhu.edu.cn associate prof. suqing wu (吳蘇清) wenzhou university, wenzhou, china email: wusuqing@wzu.edu.cn prof. shuaifei zhao (趙帥飛) deakin university, geelong, australia email: s.zhao@deakin.edu.au 期刊開放版面費(fèi)減免申請(qǐng),對(duì)于接收的論文,可申請(qǐng)一定程度的費(fèi)用減免。掃碼進(jìn)入申請(qǐng)頁(yè)面 費(fèi)用減免申請(qǐng)https://frontiers.qualtrics.com/jfe/form/sv_51iljifwfbxuzy1 |
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