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作 者:赵丽[1,2] 董婷 杨文龙 陈其虎[1] ZHAO Li;DONG Ting;YANG Wenlong;CHEN Qihu(Jiuquan Vocational and Technical College,Jiuquan Gansu 735000,China;Key Laboratory of Solar Power System Engineering,Jiuquan Gansu 735000,China;Jiuquan Secondary Professional School of Industry and Trade,Jiuquan Gansu 735000,China)
机构地区:[1]酒泉职业技术学院,甘肃酒泉735000 [2]甘肃省太阳能发电系统工程重点实验室,甘肃酒泉735000 [3]酒泉工贸中等专业学校,甘肃酒泉735000
出 处:《辽宁化工》2025年第1期6-9,共4页Liaoning Chemical Industry
基 金:2024年酒泉市科技计划项目(项目编号:2024CB2059);甘肃省太阳能发电系统工程重点实验室开放基金资助(项目编号:2023SPKL08)。
摘 要:随着工业不断发展,各类污染物急剧增加,低成本、高效降解污染物成了研究人员的研究重点。光催化技术是处理水污染的最佳手段之一,SnO_(2)因廉价、无毒、稳定、耐酸碱等特点备受瞩目,但由于其带隙较宽应用受限。相关研究表明SnO_(2)的异质结构复合材料表现出很好的协同效应。本论文对SnO_(2)的异质结构的构建、使用现状、应用进展进行了论述,并对其发展前景进行了展望。With the continuous development of industry,various pollutants have increased sharply,and low-cost and efficient degradation of pollutants has become the focus of researchers.Photocatalysis technology is one of the best means to treat water pollution.SnO_(2) has attracted much attention due to its characteristics of cheap,non-toxic,stable and acid and alkali resistance.However,due to its wide band gap,the application of SnO_(2) has been limited,and studies have shown that the heterostructural composite of SnO_(2) shows a good synergistic effect.And the prospect of its development is prospected.
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