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首页> 外文期刊>ACS nano >Synchronized energy and electron transfer processes in covalently linked CdSe-squaraine dye-TiO _2 light harvesting assembly
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Synchronized energy and electron transfer processes in covalently linked CdSe-squaraine dye-TiO _2 light harvesting assembly

机译:共价连接的CdSe-方酸染料-TiO _2集光组件中的同步能量和电子转移过程

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摘要

Manipulation of energy and electron transfer processes in a light harvesting assembly is an important criterion to mimic natural photosynthesis. We have now succeeded in sequentially assembling CdSe quantum dot (QD) and squaraine dye (SQSH) on TiO _2 film and couple energy and electron transfer processes to generate photocurrent in a hybrid solar cell. When attached separately, both CdSe QDs and SQSH inject electrons into TiO _2 under visible-near-IR irradiation. However, CdSe QD if linked to TiO _2 with SQSH linker participates in an energy transfer process. The hybrid solar cells prepared with squaraine dye as a linker between CdSe QD and TiO _2 exhibited power conversion efficiency of 3.65% and good stability during illumination with global AM 1.5 solar condition. Transient absorption spectroscopy measurements provided further insight into the energy transfer between excited CdSe QD and SQSH (rate constant of 6.7 × 10 10 s ~(-1)) and interfacial electron transfer between excited SQSH and TiO _2 (rate constant of 1.2 × 10 11 _s ~(-1)). The synergy of covalently linked semiconductor quantum dots and near-IR absorbing squaraine dye provides new opportunities to harvest photons from selective regions of the solar spectrum in an efficient manner.
机译:在光收集组件中操纵能量和电子转移过程是模拟自然光合作用的重要标准。现在,我们已经成功地在TiO _2薄膜上顺序组装了CdSe量子点(QD)和方酸染料(SQSH),并耦合了能量和电子转移过程,从而在混合太阳能电池中产生光电流。当分别连接时,CdSe QD和SQSH都在可见光-近红外辐射下将电子注入TiO _2中。但是,如果CdSe QD通过SQSH接头与TiO _2相连,则会参与能量转移过程。用方酸菁染料作为CdSe QD和TiO _2之间的连接基制备的杂化太阳能电池在全球AM 1.5太阳光条件下的照明过程中表现出3.65%的功率转换效率和良好的稳定性。瞬态吸收光谱测量提供了对激发的CdSe QD和SQSH之间的能量转移(速率常数为6.7×10 10 s〜(-1))以及激发的SQSH和TiO _2之间的界面电子转移(速率常数为1.2×10 11)的进一步了解_s〜(-1))。共价键连接的半导体量子点和近红外吸收方酸染料的协同作用提供了新的机会,可以有效地从太阳光谱的选择性区域中收集光子。

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