Park N G, Kang M G, Kim K M, Ryu K S, Chang S H, Kim D K, van de Lagemaat J, Benkstein K D, Frank A J
Basic Research Laboratory, Electronics and Telecommunications Research Institute (ETRI), Daejeon 305-350, South Korea.
Langmuir. 2004 May 11;20(10):4246-53. doi: 10.1021/la036122x.
Core-shell type nanoparticles with SnO2 and TiO2 cores and zinc oxide shells were prepared and characterized by surface sensitive techniques. The influence of the structure of the ZnO shell and the morphology ofnanoparticle films on the performance was evaluated. X-ray absorption near-edge structure and extended X-ray absorption fine structure studies show the presence of thin ZnO-like shells around the nanoparticles at low Zn levels. In the case of SnO2 cores, ZnO nanocrystals are formed at high Zn/Sn ratios (ca. 0.5). Scanning electron microscopy studies show that Zn modification of SnO2 nanoparticles changes the film morphology from a compact mesoporous structure to a less dense macroporous structure. In contrast, Zn modification of TiO2 nanoparticles has no apparent influence on film morphology. For SnO2 cores, adding ZnO improves the solar cell efficiency by increasing light scattering and dye uptake and decreasing recombination. In contrast, adding a ZnO shell to the TiO2 core decreases the cell efficiency, largely owing to a loss of photocurrent resulting from slow electron transport associated with the buildup of the ZnO surface layer.
制备了具有SnO₂和TiO₂核以及氧化锌壳的核壳型纳米颗粒,并通过表面敏感技术对其进行了表征。评估了ZnO壳的结构和纳米颗粒薄膜的形态对性能的影响。X射线吸收近边结构和扩展X射线吸收精细结构研究表明,在低锌含量下,纳米颗粒周围存在类似ZnO的薄壳。对于SnO₂核,在高Zn/Sn比(约0.5)下形成ZnO纳米晶体。扫描电子显微镜研究表明,SnO₂纳米颗粒的锌改性将薄膜形态从致密的介孔结构转变为密度较小的大孔结构。相比之下,TiO₂纳米颗粒的锌改性对薄膜形态没有明显影响。对于SnO₂核,添加ZnO通过增加光散射和染料吸收以及减少复合来提高太阳能电池效率。相比之下,在TiO₂核上添加ZnO壳会降低电池效率,这主要是由于与ZnO表面层的积累相关的电子传输缓慢导致光电流损失。