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纳米氧化铝、氧化钛纤维制备与应用
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《科技成果纵横》 2004年第3期60-60,共1页
关键词 纳米氧化纤维 纳米氧化钛纤维 制备 复合材料
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纳米氧化钛抗紫外纤维问世
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《化工经济技术信息》 2004年第3期3-4,共2页
过强的太阳紫外线照射对人体健康危害很大.除了涂抹防晒霜等护肤品外,目前开发有效屏蔽紫外线的功能性织物,已成为国际化纤纺织业的热点。记者2月13日从上海交通大学获悉,该校科研人员完成的纳米氧化钛(TiO2)抗紫外纤维研制项目.... 过强的太阳紫外线照射对人体健康危害很大.除了涂抹防晒霜等护肤品外,目前开发有效屏蔽紫外线的功能性织物,已成为国际化纤纺织业的热点。记者2月13日从上海交通大学获悉,该校科研人员完成的纳米氧化钛(TiO2)抗紫外纤维研制项目.为人体护肤防晒提供了新的解决方案。 展开更多
关键词 问世 纳米氧化抗紫外纤维 抗紫外纤维 化纤 护肤品 防晒霜 TIO2 功能性织物 照射 研制
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纳米氧化钛抗紫外纤维问世
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《有机硅氟资讯》 2004年第3期35-35,共1页
过强的太阳光紫外线照射对人体健康危害很大,除了涂抹防晒霜等护肤品外,目前开发有效屏蔽紫外线的功能性织物,已成为国际化纤纺织业的热点。2月13日从上海交通大学获悉,该校科研人员完成的纳米氧化钛(TiO2)抗紫外纤维研制项目。为... 过强的太阳光紫外线照射对人体健康危害很大,除了涂抹防晒霜等护肤品外,目前开发有效屏蔽紫外线的功能性织物,已成为国际化纤纺织业的热点。2月13日从上海交通大学获悉,该校科研人员完成的纳米氧化钛(TiO2)抗紫外纤维研制项目。为人体护肤防晒提供了新的解决方案。 展开更多
关键词 功能性织物 上海交通大学 纳米氧化抗紫外纤维 抗紫外织物 抗紫外纺织品
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纳米技术及材料
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《新材料产业》 2004年第2期67-68,共2页
关键词 纳米技术 纳米材料 纳米传感技术 纳米界面处理技术 金属纳米 纳米氧化抗紫外纤维
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Hydrogen producing water treatment through mesoporous TiO2 nanofibers with oriented nanocrystals 被引量:6
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作者 Guocheng Huang Xueyan Liu +5 位作者 Shuangru Shi Sitan Li Zhengtao Xiao Weiqian Zhen Shengwei Liu Po Keung Wong 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第1期50-61,共12页
The development of well-defined TiO2 nanoarchitectures is a versatile strategy to achieve high-efficiency photocatalytic performance.In this study,mesoporous TiO2 nanofibers consisting of oriented nanocrystals were fa... The development of well-defined TiO2 nanoarchitectures is a versatile strategy to achieve high-efficiency photocatalytic performance.In this study,mesoporous TiO2 nanofibers consisting of oriented nanocrystals were fabricated by a facile vapothermal-assisted topochemical transformation of preformed H-titanate nanobelts.The vapothermal temperature is crucial in tuning the microstructures and photocatalytic redox properties of the resulting mesoporous TiO2 nanofibers.The microstructures were characterized with XRD,TEM,XPS and nitrogen adsorption-desorption isotherms,etc.The photocatalytic activities were evaluated by photocatalytic oxidation of organic pollutant(Rhodamine B as an example)as well as photocatalytic reduction of water to generate hydrogen(H2).The nanofibers vapothermally treated at 150°C showed the highest photocatalytic activity in both oxidation and reduction reactions,2 times higher than that of P25.The oriented alignment and suitable mesoporosity in the resulting nanofiber architecture were crucial for enhancing photocatalytic performances.The oriented alignment of anisotropic anatase nanocrystals shall facilitate faster vectorial charge transportation along the nanofibers architecture.And,the suitable mesoporosity and high surface area would also effectively enhance the mass exchange during photocatalytic reactions.We also demonstrate that efficient energy-recovering photocatalytic water treatments could be accomplished by a cascading oxic-anoxic process where the dye is degraded in the oxic phase and hydrogen is generated in the successive anoxic phase.This study showcases a novel and facile method to fabricate mesoporous TiO2 nanofibers with high photocatalytic activity for both clean energy production and environmental purification. 展开更多
关键词 TiO2 nanofiber PHOTOCATALYSIS Pollutant degradation Hydrogen production
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In situ synthesis of graphitic-C3N4 nanosheet hybridized N-doped TiO2 nanofibers for efficient photocatalytic H2 production and degradation 被引量:31
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作者 Cheng Han Yingde wang +4 位作者 Yongpeng Lei Bing Wang Nan Wu Qi Shi Qiong Li 《Nano Research》 SCIE EI CAS CSCD 2015年第4期1199-1209,共11页
Graphitic carbon nitride nanosheets (g-C3N4 NSs) hybridized nitrogen doped titanium dioxide (N-TiO2) nanofibers (GCN/NT NFs) have been synthesized in situ via a simple electrospinning process combined with a mod... Graphitic carbon nitride nanosheets (g-C3N4 NSs) hybridized nitrogen doped titanium dioxide (N-TiO2) nanofibers (GCN/NT NFs) have been synthesized in situ via a simple electrospinning process combined with a modified heat-etching method. The prepared GCN/NT NFs were characterized by a variety of methods and their photocatalytic activities were evaluated by hydrogen (H2) production from water splitting and degradation of rhodamine B in aqueous solution. It was found that the GCN/NT NFs have a mesoporous structure, composed of g-C3N4 NSs and N-doped TiO2 crystallites. The g-C3N4 NSs synthesized after heat-etching were found to be embedded in, and covered, the hybrid NFs to form stable interfaces. The partial decomposition of g-C3N4 releases its nitrogen content which eventually gets doped into the nearby TiO2 skeleton. The GCN/NT NFs give a high photocatalytic H2 production rate of 8,931.3 μmol·h^-1·g^-1 in aqueous methanol solution under simulated solar light. Such a highly efficient photocatalytic perfor- mance can be ascribed to the combined effects of g-C3N4 NSs and N-doped TiO2 with enhanced light absorption intensity and improved electron transport ability. Also, the large surface area of the mesoporous NFs minimizes light reflection on the surface and provides more surface-active sites. This work highlights the potential of quasi-one dimensional hybrid materials in the field of solar energy conversion. 展开更多
关键词 PHOTOCATALYST graphitic carbon nitride titanium oxide NANOFIBER hydrogen production
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Fe3O4-nanoparticle-decorated TiO2 nanofiber hierarchical heterostructures with improved lithium-ion battery performance over wide temperature range 被引量:2
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作者 Hengguo Wang Guangsheng Wang +3 位作者 Shuang Yuan Delong Ma Yang Li Yu Zhang 《Nano Research》 SCIE EI CAS CSCD 2015年第5期1659-1668,共10页
A facile strategy was designed for the fabrication of Fe3O4-nanoparticle- decorated TiO2 nanofiber hierarchical heterostructures (FTHs) by combining the versatility of the electrospinning technique and the hydrother... A facile strategy was designed for the fabrication of Fe3O4-nanoparticle- decorated TiO2 nanofiber hierarchical heterostructures (FTHs) by combining the versatility of the electrospinning technique and the hydrothermal growth method. The hierarchical architecture of Fe3O4 nanoparticles decorated on TiO2 nanofibers enables the successful integration of the binary composite into batteries to address structural stability and low capacity. In the resulting unique architecture of FTHs, the 1D heterostructures relieve the strain caused by severe volume changes of Fe3O4 during numerous charge-discharge cycles, and thus suppress the degradation of the electrode material. As a result, FTHs show excellent performance including higher reversible capacity, excellent cycle life, and good rate performance over a wide temperature range owing to the synergistic effect of the binary composition of TiO2 and Fe304 and the unique features of the hierarchical nanofibers. 展开更多
关键词 hierarchical heterostructures wide temperature range electrochemical performance lithium-ion batteries
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