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Assembly of CdSe onto mesoporous TiO_2 films induced by a self-assembled monolayer for quantum dot-sensitized solar cell applications

机译:CdSe在自组装单分子层诱导的介孔TiO_2薄膜上的组装,用于量子点敏化太阳能电池应用

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摘要

A self-assembled monolayer (SAM) of 3-mercaptopropyl-trimethyoxysilane (MPTMS) is pre-assembled onto a mesoporous TiO_2 film and is used as a surface-modified layer to induce the growth of CdSe QDs in the successive ionic layer adsorption and reaction (SILAR) process. Due to the specific interaction of the terminal thiol groups to CdSe, the MPTMS SAM is found to increase the nucleation and growth rates of CdSe in the SILAR process, leading to a well covering and higher uniform CdSe layer which has a superior ability, compared with the electrode without MPTMS, in inhibiting the charge recombination at the electrode/electrolyte interface. Furthermore, the performance of the CdSe-sensitized TiO_2 electrode can further be improved by an additional heat annealing after film deposition, attributable to a better interfacial connection between CdSe and TiO_2, as well as a better connection among CdSe QDs. The CdSe-sensitized solar cell prepared by the present strategy can achieve an energy conversion efficiency of 2.65% under the illumination of one sun (AM 1.5, 100mWcm~(-2)).
机译:将3-巯基丙基三甲氧基硅烷(MPTMS)的自组装单层(SAM)预组装到介孔TiO_2膜上,并用作表面改性层,以在连续的离子层吸附和反应中诱导CdSe QD的生长。 (SILAR)流程。由于末端硫醇基团与CdSe的特定相互作用,发现MPTMS SAM在SILAR过程中增加了CdSe的成核和生长速率,从而导致孔覆盖和更高的均匀CdSe层,与不含MPTMS的电极,可抑制电极/电解质界面的电荷复合。此外,由于在CdSe和TiO_2之间的更好的界面连接以及在CdSe QD之间的更好的连接,通过在膜沉积后进行额外的热退火,可以进一步提高CdSe敏化的TiO_2电极的性能。通过本发明策略制备的CdSe敏化太阳能电池在1个太阳的照射下(AM 1.5,100mWcm〜(-2))可以实现2.65%的能量转换效率。

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