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用于染料敏化太阳能电池的具有不同构筑单元的球形 TiO2 聚集体。

Spherical TiO2 aggregates with different building units for dye-sensitized solar cells.

机构信息

Laboratory for Advanced Materials and Technology, Xi'an Research Institute of High Technology, Xi'an, 710025, PR China.

出版信息

Nanoscale. 2013 Sep 7;5(17):8177-83. doi: 10.1039/c3nr01767b.

Abstract

Tailoring the architectures of spherical TiO2 aggregates is crucial to obtain superior photovoltaic properties and promote their application in dye-sensitized solar cells (DSSCs). Herein, we synthesized spherical TiO2 aggregates using different building units, including nanocrystallites, nanorods, nanosheets, and nanotubes, via a hydrothermal method, and studied the effect of the building units on the performances of DSSCs. The aggregates assembled by uniform nanosheet and nanotube building units were synthesized with the use of spherical TiO2 nanorod aggregates as titanium sources in an alkaline hydrothermal reaction. Compared with TiO2 nanoparticles, the spherical TiO2 aggregates possess higher surface area, more efficient light scattering ability, and better electron transport properties. Among the four types of spherical TiO2 aggregates; the nanorod, nanotube, and nanosheet aggregates demonstrate better electron transport properties than the nanocrystallite aggregates; the nanotube and nanosheet aggregates exhibit more efficient light scattering than the nanocrystallite and nanorod aggregates; and the nanotube aggregates show the highest surface area. Thus the DSSC based on nanotube aggregates exhibited the highest energy conversion efficiency of 7.48%, which is 16.0%, 9.7%, and 19.5% higher than those of the DSSCs based on the nanosheet, nanorod, and nanocrystallite aggregates, respectively.

摘要

调整球形 TiO2 聚集体的结构对于获得优异的光伏性能并促进其在染料敏化太阳能电池(DSSC)中的应用至关重要。在此,我们通过水热法使用不同的构建单元(包括纳米晶、纳米棒、纳米片和纳米管)合成了球形 TiO2 聚集体,并研究了构建单元对 DSSC 性能的影响。使用球形 TiO2 纳米棒聚集体作为钛源,在碱性水热反应中合成了由均匀纳米片和纳米管构建单元组装的聚集体。与 TiO2 纳米颗粒相比,球形 TiO2 聚集体具有更高的比表面积、更高效的光散射能力和更好的电子传输性能。在这四种类型的球形 TiO2 聚集体中,纳米棒、纳米管和纳米片聚集体的电子传输性能优于纳米晶聚集体;纳米管和纳米片聚集体的光散射效率高于纳米晶和纳米棒聚集体;而纳米管聚集体具有最高的比表面积。因此,基于纳米管聚集体的 DSSC 表现出最高的能量转换效率为 7.48%,分别比基于纳米片、纳米棒和纳米晶聚集体的 DSSC 高出 16.0%、9.7%和 19.5%。

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