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2D/2D type-Ⅱ Cu2ZnSnS4/Bi2WO6 heterojunctions to promote visible-light-driven photo-Fenton catalytic activity 被引量:3
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作者 Li Guo Kailai Zhang +5 位作者 Xuanxuan Han Qiang Zhao Yuanyuan Zhang Mian Qi Danjun Wang Feng Fu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第3期503-513,共11页
In this work,a set of novel Cu2ZnSnS4/Bi2WO6(CZTS/BWO)two-dimensional(2 D)/two-dimensional(2 D)type-Ⅱheterojunctions with different CZTS weight ratios(1%,2%,and 5%)were successfully synthesized via a brief secondary ... In this work,a set of novel Cu2ZnSnS4/Bi2WO6(CZTS/BWO)two-dimensional(2 D)/two-dimensional(2 D)type-Ⅱheterojunctions with different CZTS weight ratios(1%,2%,and 5%)were successfully synthesized via a brief secondary solvothermal process.The successful formation of the heterojunctions was affirmed by characterization methods such as X-ray photoelectron spectroscopy and high-resolution transmission electron microscopy.The photocatalytic activity results showed that the prepared CZTS/BWO heterojunctions had excellent photocatalytic behaviors for organic degradation,especially when the mass fraction of CZTS with respect to BWO in the composite was 2%.Moreover,the addition of hydrogen peroxide(H2O2)could further improve the dye and antibiotic degradation efficiencies.The reinforced photocatalytic and photo-Fenton degradation performance were primarily attributable to the introduction of BWO,which afforded increased active sites,expanded the solar spectral response range,and accelerated the cycle of Cu(Ⅱ)/Cu(Ⅰ);after four cycling times,its catalytic activity did not decrease significantly.In addition,reasonable hypotheses of the photocatalytic and photo-Fenton catalytic mechanisms were formulated.This study is expected to provide a visual approach for designing a novel photo-Fenton catalyst to jointly utilize the photocatalytic and Fenton activities,which can be better applied to the purification of residual organics in wastewater. 展开更多
关键词 Cu2ZnSnS4 Bi2WO6 2D/2D type-Ⅱheterojunction PHOTO-FENTON Photocatalysis
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Enhancing an internal electric field by a solid solution strategy for steering bulk-charge flow and boosting photocatalytic activity of Bi_(24)O_(31)Cl_(x)Br_(10-x) 被引量:2
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作者 Jun Wan Weijie Yang +3 位作者 Jiaqing Liu Kailong Sun Lin Liu Feng Fu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第2期485-496,共12页
Constructing bismuth oxyhalide solid solutions with a single homogeneous phase have intrigued the research community;however,a deeper understanding of the intrinsic origin for improved bulk-charge separation is still ... Constructing bismuth oxyhalide solid solutions with a single homogeneous phase have intrigued the research community;however,a deeper understanding of the intrinsic origin for improved bulk-charge separation is still unclear.Herein,a series of Bi_(24)O_(31)Cl_(x)Br_(10-x) solid solutions with the same structural characteristics were synthesized by crystal structure regulation.Combining density functional theory calculation,Kelvin probe force microscopy,and zeta potential testing results,an enhanced internal electric field(IEF)intensity between[Bi_(24)O_(31)]and[X]layers was achieved by changing halogen types and ratios.This greatly facilitated bulk-charge separation and transfer efficiency,which is significant for the degradation of phenolic organic pollutants.Owing to the enhanced IEF intensity,the charge carrier density of Bi_(24)O_(31)Cl_(4)Br_(6) was 33.1 and 4.7 times stronger than that of Bi_(24)O_(31)Cl_(10) and Bi_(24)O_(31)Br_(10),respectively.Therefore,Bi24O31Cl4Br6 had an optimal photoactivity for the degradation of bisphenol A,which was 6.21 and 2.71 times higher than those of Bi_(24)O_(31)Cl_(10) and Bi_(24)O_(31)Br_(10),respectively.Thus,this study revealed the intrinsic mechanism of the solid solution strategy for photocatalytic performance enhancement with respect to an IEF. 展开更多
关键词 Photocatalysis Internal electric field Bulk-charge separation Solid solution Phenolic degradation
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无金属条件下可见光催化与溴盐协同促进烯烃的氢硅化反应研究
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作者 赵瑜 张凯 +2 位作者 白育斌 张琰图 史时辉 《有机化学》 SCIE CAS CSCD 北大核心 2023年第8期2837-2847,共11页
开发了一种无金属条件下可见光促进的通过选择性硅-氢键活化实现的烯烃的氢硅化反应.该反应使用催化量的、便宜易得的溴盐作为氢原子转移试剂.该策略展现了非常好的官能团兼容性和广泛的底物范围,并在温和、氧化还原中性的条件下,以中... 开发了一种无金属条件下可见光促进的通过选择性硅-氢键活化实现的烯烃的氢硅化反应.该反应使用催化量的、便宜易得的溴盐作为氢原子转移试剂.该策略展现了非常好的官能团兼容性和广泛的底物范围,并在温和、氧化还原中性的条件下,以中等到优秀的收率合成了有机硅化合物.同时,该策略也能成功地将硅基引入到生物活性分子中. 展开更多
关键词 光催化 氢原子转移催化 硅基自由基 有机硅化合物
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