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ZnSn(OH)_(6)基纳米材料在环境光催化中的应用
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作者 陈邦富 欧阳平 +2 位作者 李宇涵 段有雨 董帆 《化工进展》 EI CAS CSCD 北大核心 2023年第2期756-764,共9页
本征ZnSn(OH)_(6)具有较宽的带隙(约4.0eV),价带和导带位置使其具有较高的氧化还原电势,有利于驱动光催化氧化还原反应,在环境净化和能源开发等领域展现出良好的应用前景。本文从ZnSn(OH)_(6)物理和化学性质出发,介绍了ZnSn(OH)_(6)晶... 本征ZnSn(OH)_(6)具有较宽的带隙(约4.0eV),价带和导带位置使其具有较高的氧化还原电势,有利于驱动光催化氧化还原反应,在环境净化和能源开发等领域展现出良好的应用前景。本文从ZnSn(OH)_(6)物理和化学性质出发,介绍了ZnSn(OH)_(6)晶体结构和表面结构,分析了制备方法对光催化性能的影响;基于ZnSn(OH)_(6)在光催化方面的应用研究,总结了ZnSn(OH)_(6)的改性策略,包括引入缺陷、元素掺杂、构建异质结、晶面调控;最后,重点概述了ZnSn(OH)_(6)基光催化材料在能源(产氢、二氧化碳还原)和环境领域(污水治理、空气净化)的应用。同时指出ZnSn(OH)_(6)基光催化剂在实际应用研究方面仍处于初步阶段,需要进一步探究改性策略对ZnSn(OH)_(6)应用需求的精准性,拓展其应用场景,为后续研究工作提供方向和思路,加速其工业化应用的进程。 展开更多
关键词 ZnSn(OH)_(6) 改性策略 光催化材料 光催化应用
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CO催化氧化催化剂活性成分研究进展 被引量:6
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作者 胡玲 张海东 +2 位作者 王小菡 申渝 陈佳 《材料导报》 EI CAS CSCD 北大核心 2016年第21期46-53,82,共9页
CO催化氧化消除在环保、氢燃料电池等许多领域具有重要应用,其催化剂活性成分可以使用单组分及多组分的贵金属、非贵金属、金属氧化物、复合氧化物等。非贵金属活性成分的使用对降低催化剂的成本具有重要意义。从催化剂活性成分的角度... CO催化氧化消除在环保、氢燃料电池等许多领域具有重要应用,其催化剂活性成分可以使用单组分及多组分的贵金属、非贵金属、金属氧化物、复合氧化物等。非贵金属活性成分的使用对降低催化剂的成本具有重要意义。从催化剂活性成分的角度来审视不同催化剂的催化性能和构效关系,综述了CO催化氧化催化剂的研究现状。 展开更多
关键词 CO 催化氧化 催化剂 活性成分
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羟基锡酸锌作为光催化剂的研究进展
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作者 陈邦富 欧阳平 +2 位作者 李宇涵 段有雨 董帆 《功能材料》 CAS CSCD 北大核心 2022年第11期11104-11110,共7页
羟基锡酸锌(ZnSn(OH)_(6))是一种具有多变价态和特殊电子结构的过渡金属锡酸盐。其禁带宽度较大,价带和导带位置使其具有较高的氧化还原电势,因而呈现出良好的光催化活性和较强的稳定性。在这篇综述中,首先概括了ZnSn(OH)_(6)光催化剂... 羟基锡酸锌(ZnSn(OH)_(6))是一种具有多变价态和特殊电子结构的过渡金属锡酸盐。其禁带宽度较大,价带和导带位置使其具有较高的氧化还原电势,因而呈现出良好的光催化活性和较强的稳定性。在这篇综述中,首先概括了ZnSn(OH)_(6)光催化剂的晶体结构。其次,介绍了ZnSn(OH)_(6)基光催化剂的合成方法和改性策略。最后对ZnSn(OH)_(6)基光催化剂的未来发展进行了展望。 展开更多
关键词 羟基锡酸锌 晶体结构 合成方法 改性策略
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锡酸锌光催化剂的制备及表面改性策略研究进展
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作者 李宇涵 谷苗莉 +3 位作者 欧阳平 黎小芳 段有雨 吕康乐 《功能材料》 CAS CSCD 北大核心 2022年第11期11075-11080,共6页
锡酸锌(Zn_(2)SnO_(4))具有良好的传导率、较高的电子迁移率、物理和化学性质稳定且无毒的特性,是满足可持续发展要求的典型光催化剂之一。介绍了Zn_(2)SnO_(4)光催化剂的结构特征和制备方法;系统总结了具代表性的改性策略,包括离子掺... 锡酸锌(Zn_(2)SnO_(4))具有良好的传导率、较高的电子迁移率、物理和化学性质稳定且无毒的特性,是满足可持续发展要求的典型光催化剂之一。介绍了Zn_(2)SnO_(4)光催化剂的结构特征和制备方法;系统总结了具代表性的改性策略,包括离子掺杂、构建异质结、单质负载和形貌调控等;同时,简要介绍了其在光催化降解有机物、产氢、CO_(2)转化等领域的应用。最后,对Zn_(2)SnO_(4)基光催化材料未来的发展进行总结和展望;为高效Zn_(2)SnO_(4)基光催化剂的构建提供一些新的思路与方向。 展开更多
关键词 锡酸锌 光催化剂 合成方法 改性策略 应用
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金属纳米团簇修饰的g-C_(3)N_(4)在光催化中的最新进展
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作者 李宇涵 宋欣源 +2 位作者 欧阳平 段有雨 董帆 《科学通报》 EI CAS CSCD 北大核心 2024年第21期3130-3143,共14页
石墨相氮化碳(graphitic carbon nitride,g-C_(3)N_(4))作为一种不含金属的聚合物半导体材料,以其合适的能带结构和在可见光范围内的响应能力,展现出在光催化氧化还原反应中的广泛应用潜力,对治理环境污染和新能源技术开发具有显著意义... 石墨相氮化碳(graphitic carbon nitride,g-C_(3)N_(4))作为一种不含金属的聚合物半导体材料,以其合适的能带结构和在可见光范围内的响应能力,展现出在光催化氧化还原反应中的广泛应用潜力,对治理环境污染和新能源技术开发具有显著意义.然而,含氮前驱体热聚合制备的体相g-C_(3)N_(4)存在可见光吸收范围窄、光生载流子快速复合和活性位点不足等局限性.为了克服这些限制,金属团簇与g-C_(3)N_(4)的结合被提出,并证明能显著增强其氧化还原性能.本文详细介绍了金属团簇的分类,并综述了通过构建异质结构、元素掺杂和缺陷工程等手段对g-C_(3)N_(4)进行改性的策略.针对各种改性策略,本文进行了详尽的分类和系统总结,涵盖了目前采用的制备方法及其对光催化剂性能提升的影响.此外,文章也指出了金属团簇改性g-C_(3)N_(4)在能源(如光催化产氢、CO_(2)还原)和环境(包括气体污染物去除、废水处理和有机污染物消除)领域应用中存在的挑战,并建议进一步研究改性策略及其制备方法,以期提高其在上述领域的应用效能,从而为未来研究提供方向. 展开更多
关键词 g-C_(3)N_(4) 金属团簇 光催化材料 改性策略
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Heterostructured BiOI@La(OH)_3 nanorods with enhanced visible light photocatalytic NO removal 被引量:6
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作者 孙艳娟 肖香 +2 位作者 董兴安 董帆 张炜 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2017年第2期217-226,共10页
Heterostructured BiOI@La(OH)3 nanorod photocatalysts were prepared by a facile chemical impregnation method.The enhanced visible light absorption and charge carrier separation can be simultaneously realized after th... Heterostructured BiOI@La(OH)3 nanorod photocatalysts were prepared by a facile chemical impregnation method.The enhanced visible light absorption and charge carrier separation can be simultaneously realized after the introduction of BiOI particles into La(OH)3 nanorods.The BiOI@La(OH)3 composites were applied for visible light photocatalytic oxidization of NO in air and exhibited an enhanced activity compared with BiOI and pure La(OH)3 nanorods.The results show that the energy levels between the La(OH)3 and BiOI phases matched well with each other,thus forming a heterojunctioned BiOI@La(OH)3 structure.This band structure matching could promote the separation and transfer of photoinduced electron-hole pairs at the interface,resulting in enhanced photocatalytic performance under visible light irradiation.The photocatalytic performance of BiOI@La(OH)3 is shown to be dependent on the mass ratio of BiOI to La(OH)3.The highest photocatalytic performance can be achieved when the mass ratio of BiOI to La(OH)3 is controlled at 1.5.A further increase of the mass ratio of BiOI weakened the redox abilities of the photogenerated charge carriers.A new photocatalytic mechanism for BiOI@La(OH)3 heterostructures is proposed,which is directly related to the efficient separation of photogenerated charge carriers by the heterojunction.Importantly,the as-prepared BiOI@La(OH)3 heterostructures exhibited a high photochemical stability after multiple reaction runs.Our findings demonstrate that BiOI is an effective component for the formation of a heterostructure with the properties of a wide bandgap semiconductor,which is of great importance for extending the light absorption and photocatalytic activity of wide bandgap semiconductors into visible light region. 展开更多
关键词 Bismuth oxyiodido@lanthanide hydroxide heterostructure Nanorod Photocatalysis Visible light Nitrogen oxide removal
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超临界CO2萃取植物功能性油脂的研究进展 被引量:15
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作者 周玉凤 张海东 +5 位作者 熊昆 申渝 陈佳 唐源桃 李晓捷 胡玥玥 《食品工业科技》 CAS 北大核心 2019年第20期334-339,共6页
相比于其它提取方法,超临界CO2萃取的油脂理化指标更好,且不饱和脂肪酸含量更高。对于复杂的多成分原料的提取,采取超临界CO2萃取和其他提取方法综合使用的策略能够更好地提高萃取率和目标产品的质量。本文对植物功能性油脂的超临界CO2... 相比于其它提取方法,超临界CO2萃取的油脂理化指标更好,且不饱和脂肪酸含量更高。对于复杂的多成分原料的提取,采取超临界CO2萃取和其他提取方法综合使用的策略能够更好地提高萃取率和目标产品的质量。本文对植物功能性油脂的超临界CO2萃取方法进行了归纳对比,介绍了超临界CO2萃取植物功能性油脂的原理和工艺流程,概述了萃取压力、萃取温度、萃取时间、CO2流量、夹带剂、原料物性等影响因素对油脂萃取率的影响,讨论了由不同萃取方法提取得到的油脂的品质,同时分析了超临界CO2萃取技术的适用范围及其应用前景。 展开更多
关键词 植物功能性油脂 不饱和脂肪酸 超临界CO2 萃取 理化指标
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Enhanced plasmonic photocatalysis by SiO_2@Bi microspheres with hot-electron transportation channels via Bi–O–Si linkages 被引量:5
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作者 倪紫琳 张文东 +6 位作者 蒋光明 王小平 鲁贞贞 孙艳娟 李欣蔚 张育新 董帆 《Chinese Journal of Catalysis》 EI CSCD 北大核心 2017年第7期1174-1183,共10页
The semimetal Bi has received increasing interest as an alternative to noble metals for use in plasmonic photocatalysis. To enhance the photocatalytic efficiency of metallic Bi, Bi microspheres modified by SiO2 nanopa... The semimetal Bi has received increasing interest as an alternative to noble metals for use in plasmonic photocatalysis. To enhance the photocatalytic efficiency of metallic Bi, Bi microspheres modified by SiO2 nanoparticles were fabricated by a facile method. Bi-O-Si bonds were formed between Bi and SiO2, and acted as a transportation channel for hot electrons. The SiO2@Bi microspheres exhibited an enhanced plasmon-mediated photocatalytic activity for the removal of NO in air under 280 nm light irradiation, as a result of the enlarged specific surface areas and the promotion of electron transfer via the Bi-O-Si bonds. The reaction mechanism of photocatalytic oxidation of NO by SiO2@Bi was revealed with electron spin resonance and in situ diffuse reflectance infrared Fourier transform spectroscopy experiments, and involved the chain reaction NO -> NO2 -> NO3- with center dot OH and center dot O-2(-) radicals as the main reactive species. The present work could provide new insights into the in-depth mechanistic understanding of Bi plasmonic photocatalysis and the design of high-performance Bi-based photocatalysts. (C) 2017, Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by Elsevier B.V. All rights reserved. 展开更多
关键词 SiO2 @Bi metal Bi-O-Si bond Electron transfer In situ diffuse reflectance infrared Fourier transform spectroscopy Photocatalytic nitric oxide removal
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Improving the denitration performance and K-poisoning resistance of the V_2O_5-WO_3/TiO_2 catalyst by Ce^(4+) and Zr^(4+) co-doping 被引量:15
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作者 Jun Cao Xiaojiang Yao +4 位作者 Fumo Yang Li Chen Min Fu Changjin Tang Lin Dong 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第1期95-104,共10页
A series of V2O5‐WO3/TiO2‐ZrO2,V2O5‐WO3/TiO2‐CeO2,and V2O5‐WO3/TiO2‐CeO2‐ZrO2 catalysts were synthesized to improve the selective catalytic reduction(SCR)performance and the K‐poisoning resistance of a V2O5‐W... A series of V2O5‐WO3/TiO2‐ZrO2,V2O5‐WO3/TiO2‐CeO2,and V2O5‐WO3/TiO2‐CeO2‐ZrO2 catalysts were synthesized to improve the selective catalytic reduction(SCR)performance and the K‐poisoning resistance of a V2O5‐WO3/TiO2 catalyst.The physicochemical properties were investigated by using XRD,BET,NH3‐TPD,H2‐TPR,and XPS,and the catalytic performance and K‐poisoning resistance were evaluated via a NH3‐SCR model reaction.Ce^4+and Zr^4+co‐doping were found to enhance the conversion of NOx,and exhibit the best K‐poisoning resistance owing to the largest BET‐specific surface area,pore volume,and total acid site concentration,as well as the minimal effects on the surface acidity and redox ability from K poisoning.The V2O5‐WO3/TiO2‐CeO2‐ZrO2 catalyst also presents outstanding H2O+SO2 tolerance.Finally,the in situ DRIFTS reveals that the NH3‐SCR reaction over the V2O5‐WO3/TiO2‐CeO2‐ZrO2 catalyst follows an L‐H mechanism,and that K poisoning does not change the reaction mechanism. 展开更多
关键词 V2O5‐WO3/TiO2‐CeO2‐ZrO2 catalyst Co‐doping K‐poisoning NH3‐SCR Reaction mechanism
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Synergistic photo-thermal catalytic NO purification of MnO_x/g-C_3N_4:Enhanced performance and reaction mechanism 被引量:9
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作者 陈鹏 董帆 +1 位作者 冉茂希 李佳芮 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第4期619-629,共11页
Both MnOx and g‐C3N4 have been proved to be active in the catalytic oxidation of NO,and their individual mechanisms for catalytic NO conversion have also been investigated.However,the mechanism of photo‐thermal cata... Both MnOx and g‐C3N4 have been proved to be active in the catalytic oxidation of NO,and their individual mechanisms for catalytic NO conversion have also been investigated.However,the mechanism of photo‐thermal catalysis of the MnOx/g‐C3N4 composite remains unresolved.In this paper,MnOx/g‐C3N4 catalysts with different molar ratios were synthesized by the precipitation approach at room temperature.The as‐prepared catalysts exhibit excellent synergistic photo‐thermal catalytic performance towards the purification of NO in air.The MnOx/g‐C3N4 catalysts contain MnOx with different valence states on the surface of g‐C3N4.The thermal catalytic reaction for NO oxidation on MnOx and the photo‐thermal catalytic reaction on 1:5 MnOx/g‐C3N4 were investigated by in situ diffuse reflectance infrared Fourier transform spectroscopy(in situ DRIFTS).The results show that light exerted a weak effect on NO oxidation over MnOx,and it exerted a positive synergistic effect on NO conversion over 1:5 MnOx/g‐C3N4.A synergistic photo‐thermal catalytic cycle of NO oxidation on MnOx/g‐C3N4 is proposed.Specifically,photo‐generated electrons(e?)are transferred to MnOx and participate in the synergistic photo‐thermal reduction cycle(Mn4+→Mn3+→Mn2+).The reverse cycle(Mn2+→Mn3+→Mn4+)can regenerate the active oxygen vacancy sites and inject electrons into the g‐C3N4 hole(h+).The active oxygen(O?)was generated in the redox cycles among manganese species(Mn4+/Mn3+/Mn2+)and could oxidize the intermediates(NOH and N2O2?)to final products(NO2?and NO3?).This paper can provide insightful guidance for the development of better catalysts for NOx purification. 展开更多
关键词 MNOX g‐C3N4 Synergistic catalysis Photo‐thermal In situ DRIFTS NO oxidation
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完全氧化和部分氧化反应中CuMnOx的不同活性相
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作者 唐源桃 张海东 +5 位作者 陈佳 申渝 熊昆 周玉凤 李晓捷 胡玥玥 《材料导报》 EI CAS CSCD 北大核心 2020年第9期28-33,共6页
完全氧化和部分氧化反应的目标产物完全不同,而铜锰复合氧化物催化剂(CuMnO x)不仅可以催化燃烧挥发性有机物(VOCs)这样的完全氧化反应,也可以催化醇类选择氧化制醛酮这样的部分氧化反应。CuMnO x结构复杂,且对制备方法具有高度敏感性,... 完全氧化和部分氧化反应的目标产物完全不同,而铜锰复合氧化物催化剂(CuMnO x)不仅可以催化燃烧挥发性有机物(VOCs)这样的完全氧化反应,也可以催化醇类选择氧化制醛酮这样的部分氧化反应。CuMnO x结构复杂,且对制备方法具有高度敏感性,制备方法的微小差别就可导致催化剂结构的显著差异。CuMnO x中存在不同价态的CuO x、MnO x物种,还可生成尖晶石型或者无定形的铜锰复合氧化物。CuMnO x中的这些物种在完全氧化反应和部分氧化反应中都可能存在一定的催化活性,研究者对CuMnO x的活性相还没有完全统一的认识。在醇类部分氧化反应中,CuMnO x所含的尖晶石型铜锰复合氧化物能提供移动性强的表面吸附氧物种、具有吸附-活化分子氧功能的表面氧空位以及晶格氧等多种活性氧物种。在VOCs完全氧化反应中,富含具有吸附反应物能力的Mn 4+的尖晶石型铜锰复合氧化物,具有较强的氧化还原能力,表现出高催化活性。含有丰富的Mn 3+的无定形铜锰复合氧化物也具有高催化活性,无定形铜锰复合氧化物表面发生Cu 2++Mn 3+→Cu++Mn 4+氧化还原反应是其具有高催化活性的原因。尖晶石型铜锰复合氧化物和氧化铜/氧化锰形成的复合物也可能是完全氧化反应的活性相,其中MnO x由于具备较强的储氧/释氧能力可以为尖晶石型铜锰复合氧化物提供充足的氧物种,而高度分散的CuO x能提高活化分子氧的能力,从而提高催化剂在完全氧化反应中的催化能力。本文归纳了CuMnOx在部分氧化醇类及完全氧化VOCs反应中的活性相的研究进展,对尖晶石Cux Mn3-x O4物种作为部分氧化醇类活性相进行介绍,并分析其在部分氧化反应中的氧化机理。分别对无定形Cu-Mn-O物种在完全氧化反应中的作用、尖晶石Cux Mn 3-xO4物种在完全氧化反应中的作用、尖晶石Cux Mn3-xO 4物种和氧化铜或氧化锰的复合体在完全氧化反应中的作用进行介绍,为开发高效的完全氧化和部分氧化催化剂提供参考。 展开更多
关键词 CuMnO X 活性相 部分氧化 完全氧化
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Unique electronic structure of Mg/O co-decorated amorphous carbon nitride enhances the photocatalytic tetracycline hydrochloride degradation 被引量:6
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作者 Xiaolu Wu Min Fu +2 位作者 Peng Lu Qiuyan Ren Cheng Wang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第5期776-785,共10页
g-C3N4 is a hot visible light photocatalyst. However, the fast recombination of photogenerated electron- hole pairs leads to unsatisfactory photocatalytic efficiencies. In this study, Mg/O co-decorated amorphous carbo... g-C3N4 is a hot visible light photocatalyst. However, the fast recombination of photogenerated electron- hole pairs leads to unsatisfactory photocatalytic efficiencies. In this study, Mg/O co-decorated amorphous carbon nitride (labeled as MgO-CN) with a unique electronic structure was designed and prepared via a combined experimental and theoretical approach. The results showed that the MgO-CN exhibited an increased light absorption ability and promoted charge separation efficiency. The Mg and O co-decoration created a unique structure that could generate localized electrons around O atoms and enhance the reactant activation capacities via the C→O←Mg route. This could dramatically promote the O2 molecule activation on the catalyst surface to generate reactive species (?O2 –/?OH). The optimized MgO-CN exhibited a high photocatalytic activity for the degradation of tetracycline hydrochloride in water, which was five times higher than that of pristine g-C3N4. The present work could provide a new strategy for modifying the electronic structure of g-C3N4 and enhancing its performance for environmental applications. 展开更多
关键词 g-C3N4 Electronic structure Visible light photocatalysis Tetracycline hydrochloride degradation Environmental remediation
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MXenes as noble-metal-alternative co-catalysts in photocatalysis 被引量:8
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作者 Kaining Li Sushu Zhang +2 位作者 Yuhan Li Jiajie Fan Kangle Lv 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第1期3-14,共12页
Photocatalysis has become a focal point in research as a clean and sustainable technology with the potential to solve environmental problems and energy crises.The loading of noble-metal co-catalysts can substantially ... Photocatalysis has become a focal point in research as a clean and sustainable technology with the potential to solve environmental problems and energy crises.The loading of noble-metal co-catalysts can substantially improve the photocatalytic efficiency of semiconductors.Because the high cost and scarcity of noble metals markedly limit their large-scale applications,finding a noble-metal-alternative co-catalyst is crucial.MXene,a novel 2D transition metal material,has attracted considerable attention as a promising substitute for noble metal co-catalysts owing to its cost-efficiency,unique 2D layered structure,and excellent electrical,optical,and thermodynamic properties.This review focuses on the latest advancements in research on MXenes as co-catalysts in relatively popular photocatalytic applications(hydrogen production,CO2 reduction,nitrogen fixation,and organic pollutant oxidation).The synthesis methods and photocatalytic mechanisms of MXenes as co-catalysts are also summarized according to the type of MXene-based material.Finally,the crucial opportunities and challenges in the prospective development of MXene-based photocatalysts are outlined.We emphasize that modern techniques should be used to demonstrate the effects of MXenes on photocatalysis and that the photocatalytic activity of MXene-based photocatalysts can be further improved using defective engineering and recent phenomena such as the localized surface plasmon resonance effect and single-atom catalysis. 展开更多
关键词 MXenes Photocatalytic degradation Hydrogen production CO2 reduction Nitrogen fixation
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In-situ polymerization for PPy/g-C_3N_4 composites with enhanced visible light photocatalytic performance 被引量:5
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作者 Hongju Han Min Fu +3 位作者 Yalin Li Wei Guan Peng Lu Xueli Hu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第4期831-840,共10页
Polypyrrole‐modified graphitic carbon nitride composites(PPy/g‐C3N4)are fabricated using an in‐situ polymerization method to improve the visible light photocatalytic activity of g‐C3N4.The PPy/g‐C3N4 is applied t... Polypyrrole‐modified graphitic carbon nitride composites(PPy/g‐C3N4)are fabricated using an in‐situ polymerization method to improve the visible light photocatalytic activity of g‐C3N4.The PPy/g‐C3N4 is applied to the photocatalytic degradation of methylene blue(MB)under visible light irradiation.Various characterization techniques are employed to investigate the relationship between the structural properties and photoactivities of the as‐prepared composites.Results show that the specific surface area of the PPy/g‐C3N4 composites increases upon assembly of the amorphous PPy nanoparticles on the g‐C3N4 surface.Owing to the strong conductivity,the PPy can be used as a transition channel for electrons to move onto the g‐C3N4 surface,thus inhibiting the recombination of photogenerated carriers of g‐C3N4 and improving the photocatalytic performance.The elevated light adsorption of PPy/g‐C3N4 composites is attributed to the strong absorption coefficient of PPy.The composite containing 0.75 wt%PPy exhibits a photocatalytic efficiency that is 3 times higher than that of g‐C3N4 in 2 h.Moreover,the degradation kinetics follow a pseudo‐first‐order model.A detailed photocatalytic mechanism is proposed with·OH and·O2-radicals as the main reactive species.The present work provides new insights into the mechanistic understanding of PPy in PPy/g‐C3N4 composites for environmental applications. 展开更多
关键词 PPy/g‐C3N4 composites In‐situ polymerization Visible light photocatalysis Mechanism Environmental remediation
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Effect of high-voltage discharge non-thermal plasma on g-C_3N_4 in a plasma-photocatalyst system 被引量:3
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作者 Xiaoping Wang Yixia Chen +2 位作者 Min Fu Zihan Chen Qiulin Huang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第10期1672-1682,共11页
The synergistic effect of high voltage discharge non‐thermal plasma(NTP)and photocatalysts on contaminant removal has repeatedly confirmed by plenty of researches.Most previous plasma‐photocatalyst synergistic syste... The synergistic effect of high voltage discharge non‐thermal plasma(NTP)and photocatalysts on contaminant removal has repeatedly confirmed by plenty of researches.Most previous plasma‐photocatalyst synergistic systems focused on the utilization of the ultraviolet light but ignored the visible light generated by high voltage discharge.Graphitic carbon nitride(g‐C3N4),a metal‐free semiconductor that exhibits high chemical stability,can utilize both the ultraviolet and visible light from high voltage discharge.However,the synergistic system of NTP and g‐C3N4 has been researched little.In this paper,the effect of NTP generated by dielectric barrier discharge(DBD)on g‐C3N4 is studied by comparing the photocatalytic activities,the surface physical structure and the surface chemical characteristics of pristine and plasma treated g‐C3N4.Experimental results indicate that the DBD plasma can change the physical structure and the chemical characteristics and to further affect the photocatalytic activity of g‐C3N4.The effect of NTP on g‐C3N4 is associated with the discharge intensity and the discharge time.For a long time scale,the effect of NTP on g‐C3N4 photocatalysts presents a periodic change trend. 展开更多
关键词 g‐C3N4 Non‐thermal plasma Photocatalytic activity Physical structure Chemical characteristic
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微纳米气泡水处理技术的研究综述 被引量:5
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作者 王小平 秦佳圆 《应用化工》 CAS CSCD 北大核心 2022年第8期2464-2469,共6页
综述了微纳米气泡(MNBs)的基本特性、产生方法及其应用在环境污染治理的现状,阐述了MNBs技术在地下水修复、污废水处理、气浮浮选、强化生物活性等各领域的应用研究进展。重点介绍了MNBs技术与其他技术的联用在水处理中的应用。最后对M... 综述了微纳米气泡(MNBs)的基本特性、产生方法及其应用在环境污染治理的现状,阐述了MNBs技术在地下水修复、污废水处理、气浮浮选、强化生物活性等各领域的应用研究进展。重点介绍了MNBs技术与其他技术的联用在水处理中的应用。最后对MNBs技术的未来发展趋势和研究重点进行了总结和展望。 展开更多
关键词 微纳米气泡技术 水处理 联用技术
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Effects of fluorine on photocatalysis 被引量:4
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作者 Xiaofang Li Xiaofeng Wu +3 位作者 Shengwei Liu Yuhan Li Jiajie Fan Kangle Lv 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第10期1451-1467,共17页
Tailoring the microstructure of pristine TiO2 is essential to narrow its band gap and prolong the charge lifetime. In particular, strategies involving fluorine have been used successfully to tune the surface chemistry... Tailoring the microstructure of pristine TiO2 is essential to narrow its band gap and prolong the charge lifetime. In particular, strategies involving fluorine have been used successfully to tune the surface chemistry, electronic structure, and morphology of TiO2 photocatalysts to improve their photocatalytic activity based on the strong complexation between fluoride ions and TiO2 and the high electronegativity of fluorine. In this review, we summarize the strategies involving fluorine to establish highly efficient TiO2 photocatalytic systems or fabricate highly efficient TiO2 photocatalysts. The main fluorine effects(i.e. the effects of fluorine on photocatalysis) include the following four aspects:(1) Surface effects of fluoride on TiO2 photocatalysis,(2) effects of fluorine doping on TiO2 photocatalysis,(3) fluoride-mediated tailoring of the morphology of TiO2 photocatalysts, and(4) the effects of fluorine on non-TiO2 photocatalysis. Additionally, the unique applications of these fluorine effects in photocatalysis, including selective degradation of pollutants, selective oxidation of chemicals, water-splitting to produce H2, reduction of CO2 to produce solar fuels, and improvement of the thermostability of TiO2 photocatalysts, are reviewed. 展开更多
关键词 TIO2 FLUORINE PHOTOCATALYSIS DOPING Surface modification
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氧空位TiO2高效光催化氧化甲醛及其反应路径 被引量:12
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作者 李宇涵 张敏 +4 位作者 谷苗莉 孙艳娟 张贤明 吕康乐 罗建民 《科学通报》 EI CAS CSCD 北大核心 2020年第8期718-728,共11页
通过采用一步煅烧法制备得到含大量表面氧空位的二氧化钛(TiO2),将其应用于典型空气污染物甲醛的治理.结果表明,在流动体系的测试环境中,甲醛的最大有效去除率可达95.05%,相比于本底样品(72.52%)提高了1.31倍.研究表明,含氧空位的TiO2... 通过采用一步煅烧法制备得到含大量表面氧空位的二氧化钛(TiO2),将其应用于典型空气污染物甲醛的治理.结果表明,在流动体系的测试环境中,甲醛的最大有效去除率可达95.05%,相比于本底样品(72.52%)提高了1.31倍.研究表明,含氧空位的TiO2不仅可以增强光吸收范围,还可以利用氧空位捕获光生电子,有效地抑制光生电子和空穴的复合,进而提高光催化活性.通过原位红外光谱对催化剂降解甲醛的反应过程进行实时动态监测,结合密度泛函理论(DFT)计算,表明TiO2表面的氧空位可以有效地增强甲醛分子的吸附活化,存在的大量离域电子可以注入到甲醛分子中的C=O键并使其活化断裂,从而有效地减少甲醛氧化过程中甲酸的积累,加快甲醛的高效氧化去除.本研究通过分析含氧空位TiO2对光催化甲醛氧化反应过程的影响,为光催化材料表面缺陷设计和光催化治理气相污染物提供了新的思路. 展开更多
关键词 二氧化钛 氧空位 甲醛 甲酸 光催化
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