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Tungsten bronze Cs0.33WO3 nanorods modified by molybdenum for improved photocatalytic CO2 reduction directly from air 被引量:5
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作者 Lian Yi Wenhui Zhao +3 位作者 Yanhong Huang Xiaoyong Wu Jinlong Wang Gaoke Zhang 《Science China Materials》 SCIE EI CSCD 2020年第11期2206-2214,共9页
Photocatalytic CO2 reduction is thought to be a promising strategy in mitigating the energy crisis and several other environmental problems.Hence,modifying or developing suitable semiconductors with high efficiency of... Photocatalytic CO2 reduction is thought to be a promising strategy in mitigating the energy crisis and several other environmental problems.Hence,modifying or developing suitable semiconductors with high efficiency of photocatalytic CO2 reduction property has become a topic of interest to scientists.In this study,a series of Mo-modified Cs0.33WO3 tungsten bronze were prepared using a"watercontrollable releasing"solvothermal method to produce effective photocatalytic CO2 reduction performance.Interestingly,Mo atoms replaced W partially within the hexagonal crystal structure,leading to a significant increase in photocatalytic CO2 reduction activity of Cs0.33WO3.The 5%Modoped compound displayed the best performance,with the production yield rates of 7.5μmol g^-1h^-1 for CO and3.0μmol g^-1h^-1 for CH3OH under low concentration of CO2 under anaerobic conditions,which is greatly higher than those of pure Cs0.33WO3(3.2μmol g^-1h^-1 for CO and 1.2μmol g^-1h^-1 for CH3OH)and Mo-doped W18O49(1.5μmol g^-1h^-1for CO and 0μmol g^-1h^-1 for CH3OH).More importantly,the as-prepared Mo-doped Cs0.33WO3 series could also induce the photocatalytic reduction of CO2 directly from the air in the presence of oxygen,which is beneficial for practical applications.The superior photocatalytic performance of Mo-doped Cs0.33WO3 series over the popular reduced WO3 may be due to the increase in light absorption induced by the localized surface plasmon resonance(LSPR)effect of Mo5+,large improved charge separation ability,and the co-effect of Mo and Cs in crystal.This study provides a simple strategy for designing highly efficient photocatalysts in low concentration of CO2 reduction. 展开更多
关键词 CO2reduction charge separation cs0.33wo3 low concentration photocatalytic performance
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Cs_(0.33)WO_3粒子分散及其涂层制备 被引量:4
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作者 徐强 刘敬肖 +3 位作者 史非 徐龙权 刘素花 罗嘉宇 《大连工业大学学报》 CAS 北大核心 2015年第1期55-59,共5页
为了提高Cs0.33WO3粒子的分散性及其涂层的近红外遮蔽性能,对球磨和分散剂对粒子分散和近红外遮蔽性能的影响进行了研究,以聚乙烯醇(PVA)、聚乙烯醇缩丁醛(PVB)和聚乙烯吡咯烷酮(PVP)为成膜物质制备了Cs0.33WO3涂层。研究结果表明,球磨... 为了提高Cs0.33WO3粒子的分散性及其涂层的近红外遮蔽性能,对球磨和分散剂对粒子分散和近红外遮蔽性能的影响进行了研究,以聚乙烯醇(PVA)、聚乙烯醇缩丁醛(PVB)和聚乙烯吡咯烷酮(PVP)为成膜物质制备了Cs0.33WO3涂层。研究结果表明,球磨和分散剂聚乙二醇-400能够显著降低Cs0.33WO3粒子的平均粒度,提高Cs0.33WO3粒子分散稳定性。其中,PVA/Cs0.33WO3和PVP/Cs0.33WO3涂层均具有良好的可见光透过率和近红外遮蔽率,并且PVP/Cs0.33WO3涂层同时还具有最佳的附着强度。 展开更多
关键词 铯钨青铜 球磨 近红外遮蔽 纳米粒子
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分散剂5040对Cs_(0.33)WO_3粒子分散及其涂层性能的影响 被引量:1
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作者 陈彬 刘敬肖 +2 位作者 史非 于玲 范传彦 《大连工业大学学报》 CAS 北大核心 2018年第1期54-58,共5页
选用5040((C_3H_3NaO_2)_n)作为分散剂,通过球磨分散法制备了Cs_(0.33)WO_3浆料,研究了分散剂量和球磨时间对Cs_(0.33)WO_3浆料稳定性的影响。并通过加入聚乙烯醇(PVA)、成品丙烯酸乳液(PVC)及自制的丙烯酸乳液制备了Cs_(0.33)WO_3涂层... 选用5040((C_3H_3NaO_2)_n)作为分散剂,通过球磨分散法制备了Cs_(0.33)WO_3浆料,研究了分散剂量和球磨时间对Cs_(0.33)WO_3浆料稳定性的影响。并通过加入聚乙烯醇(PVA)、成品丙烯酸乳液(PVC)及自制的丙烯酸乳液制备了Cs_(0.33)WO_3涂层,研究了Cs_(0.33)WO_3涂层的可见光透过和近红外遮蔽性能。结果表明,对于分散剂5040,在相对Cs_(0.33)WO_3粉体质量分数5%、球磨分散时间6h时,所制备的Cs_(0.33)WO_3浆料稳定性最高,在15d内Cs_(0.33)WO_3浆料的沉降高度与浆料总高度比可维持在16%左右,可见光最大透过率为59%。PVA/Cs_(0.33)WO_3和PVC/Cs_(0.33)WO_3涂层均有70%左右的可见光透过率,但PVC/Cs_(0.33)WO_3涂层具有更为优异的近红外遮蔽性能。 展开更多
关键词 cs0.33wo3 纳米粒子 分散剂5040 球磨 近红外遮蔽
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