首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >One-Pot Fabrication of High Coverage PbS Quantum Dot Nanocrystal-Sensitized Titania Nanotubes for Photoelectrochemical Processes
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One-Pot Fabrication of High Coverage PbS Quantum Dot Nanocrystal-Sensitized Titania Nanotubes for Photoelectrochemical Processes

机译:用于光电化学方法的高覆盖PBS量子点纳米晶敏化二氧化钛纳米晶型纳米立管的单罐制造

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Lead sulfide quantum dot nanocrystal (QDNC) sensitized TiO2 nanotubes have been fabricated using a simple, wet chemical method that is both time- and cost-effective. A single precursor source containing both Pb and S has been employed, with oleylamine as a linker molecule to synthesize the PbS under an ambient pressure based approach. This approach serves to assemble the QDNCs on a TiO2 nanotube surface. Surface characterization was performed using electron microscopy, X-ray diffraction, and elemental analysis, indicating the formation of PbS quantum dots along the nanotube walls and intertubular spacing. The optoelectronic, photoelectrochemical, and photocatalytic properties of the composite heterostructure have been characterized using absorbance spectroscopy, electrochemical studies (including efficiency measurements), and methylene blue conversion as a probe. A 24-fold increase in the photocurrent of TiO2 PbS heterostructure over bare TiO2 nanotube has been observed. Electrochemical impedance measurements of the TiO2 nanotube sample indicate donor density of similar to 4.5 x 10(19) cm(-3) while TiO2/PbS heterostructure shows an n-n photoactive heterojunction with a donor density of similar to 2.3 x 10(20) cm(-3). A 12% increase in photocatalytic activity and theoretical estimates suggesting almost 40-fold enhancement toward value-added product synthesis with PbS inclusion are presented.
机译:硫化铅量子点纳米晶体(QDNC)敏化的TiO2纳米管已经使用简单的,湿化学方法,既时间和成本有效的制造。含有Pb和S A单个前体源已使用,与油胺作为接头分子合成的环境压力为基础的方法下的PBS中。这种方法用于组装上的TiO2纳米管表面的QDNCs。使用电子显微镜,X射线衍射和元素分析进行​​表面表征,表明硫化铅量子点沿纳米管的壁和管间的间距形成。复合异质结构的光电子,光电化学和光催化性能已经使用吸收光谱,电化学研究(包括效率的测量),和亚甲基蓝转换为探针表征。在二氧化钛的PbS异质结构上裸露的TiO 2纳米管的光电流的24倍的增加已经观察到。该TiO2纳米管样品的电化学阻抗测量指示相似的4.5×10(19)厘米施主密度(-3),而二氧化钛/ PBS异质节目ン光敏异质结具有相似的2.3×10(20)厘米的施主密度( -3)。在光催化活性和理论估计暗示朝向增值产物合成用PBS包含几乎40倍的增强A 12%的增加被呈现。

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