State Key Laboratory of Superhard Materials, Jilin University, Qianjin Street 2699, Changchun 130012, People's Republic of China.
Department of Physics and Chemistry, Heihe University, Heihe 164300, People's Republic of China.
J Colloid Interface Sci. 2017 Nov 1;505:59-66. doi: 10.1016/j.jcis.2017.05.080. Epub 2017 May 25.
High-density CdTe nanorod arrays are successfully embedded in a uniform and compact CdS layer, forming a novel three-dimensional (3D) CdTe NRs/CdS heterojunction structure. The CdS layer is prepared by homogeneous precipitation (HP) method using decomposition of urea. The effects of temperature and concentration of reactants on the growth and composition of CdS film are investigated in detail. The results demonstrate that the temperature affects the thermal decomposition of urea significantly, and the concentration of CdCl and CS (NH) plays an essential role in the compositional ratio of CdS film. Further investigations reveal that, in comparison with the traditional precipitation method, a better coverage of CdS on the surface of CdTe NRs can be obtained by HP method due to the slow and even hydrolysis of urea. Moreover, photovoltaic performance of the novel CdTe NRs/CdS 3D photovoltaic device is also investigated. This study demonstrates that the 3D heterostructure has potential application in thin film solar cells, and the successful deposition of CdS layer on the surface of CdTe NRs by HP method suggests a promising technique for large-scale fabrication of these solar cells.
高密度 CdTe 纳米棒阵列成功嵌入到均匀致密的 CdS 层中,形成了一种新型的三维(3D)CdTe NRs/CdS 异质结结构。CdS 层是通过均相沉淀(HP)法使用尿素分解制备的。详细研究了温度和反应物浓度对 CdS 薄膜生长和组成的影响。结果表明,温度对尿素的热分解有显著影响,而 CdCl 和 CS(NH)的浓度对 CdS 薄膜的组成比起着至关重要的作用。进一步的研究表明,与传统的沉淀法相比,由于尿素的水解缓慢且均匀,HP 法可以获得更好的 CdS 在 CdTe NRs 表面的覆盖。此外,还研究了新型 CdTe NRs/CdS 3D 光伏器件的光伏性能。这项研究表明,这种 3D 异质结在薄膜太阳能电池中有潜在的应用,并且 HP 法成功地在 CdTe NRs 表面沉积 CdS 层,为这些太阳能电池的大规模制造提供了一种有前途的技术。