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功能化结晶多钛酸盐纳米簇中的界面电子转移。

Interfacial electron transfer into functionalized crystalline polyoxotitanate nanoclusters.

机构信息

Department of Chemistry, Yale University, New Haven, Connecticut 06520-8107, USA.

出版信息

J Am Chem Soc. 2012 May 30;134(21):8911-7. doi: 10.1021/ja301238t. Epub 2012 May 17.

Abstract

Interfacial electron transfer (IET) between a chromophore and a semiconductor nanoparticle is one of the key processes in a dye-sensitized solar cell. Theoretical simulations of the electron transfer in polyoxotitanate nanoclusters Ti(17)O(24)(OPr(i))(20) (Ti(17)) functionalized with four p-nitrophenyl acetylacetone (NPA-H) adsorbates, of which the atomic structure has been fully established by X-ray diffraction measurements, are presented. Complementary experimental information showing IET has been obtained by EPR spectroscopy. Evolution of the time-dependent photoexcited electron during the initial 5 fs after instantaneous excitation to the NPA LUMO + 1 has been evaluated. Evidence for delocalization of the excitation over multiple chromophores after excitation to the NPA LUMO + 2 state on a 15 fs time scale is also obtained. While chromophores are generally considered electronically isolated with respect to neighboring sensitizers, our calculations show that this is not necessarily the case. The present work is the most comprehensive study to date of a sensitized semiconductor nanoparticle in which the structure of the surface and the mode of molecular adsorption are precisely defined.

摘要

界面电子转移(IET)在生色团和半导体纳米粒子之间是染料敏化太阳能电池的关键过程之一。本文对具有四个 p-硝基苯乙酰丙酮(NPA-H)吸附剂的多氧钛纳米团簇 Ti(17)O(24)(OPr(i))(20)(Ti(17))的电子转移进行了理论模拟,其原子结构已通过 X 射线衍射测量完全确定。通过电子顺磁共振(EPR)光谱获得了表明 IET 的补充实验信息。评估了在瞬时激发到 NPA LUMO + 1 后的最初 5 fs 期间,光激发电子的时变。在激发到 NPA LUMO + 2 态后,在 15 fs 的时间尺度上获得了激发在多个生色团上离域的证据。虽然生色团通常被认为相对于相邻的敏化剂是电子隔离的,但我们的计算表明情况并非一定如此。本工作是迄今为止对表面结构和分子吸附模式精确定义的敏化半导体纳米粒子进行的最全面研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6955/4040533/28c944308c9f/nihms591748f1.jpg

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