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预测染料功能化纳米颗粒中各向异性共振能量转移的特征

Predicting signatures of anisotropic resonance energy transfer in dye-functionalized nanoparticles.

作者信息

Gil Gabriel, Corni Stefano, Delgado Alain, Bertoni Andrea, Goldoni Guido

机构信息

S3 , CNR-Istituto Nanoscienze , Via Campi 213/A , 41125 Modena , Italy . Email:

Dipartimento di Scienze Fisiche , Informatiche e Matematiche , Università degli Studi di Modena e Reggio Emilia , Via Campi 213/A , 41125 Modena , Italy.

出版信息

RSC Adv. 2016 Nov 13;6(106):104648-104656. doi: 10.1039/c6ra22433d. Epub 2016 Oct 25.

Abstract

Resonance energy transfer (RET) is an inherently anisotropic process. Even the simplest, well-known Förster theory, based on the transition dipole-dipole coupling, implicitly incorporates the anisotropic character of RET. In this theoretical work, we study possible signatures of the fundamental anisotropic character of RET in hybrid nanomaterials composed of a semiconductor nanoparticle (NP) decorated with molecular dyes. In particular, by means of a realistic kinetic model, we show that the analysis of the dye photoluminescence difference for orthogonal input polarizations reveals the anisotropic character of the dye-NP RET which arises from the intrinsic anisotropy of the NP lattice. In a prototypical core/shell wurtzite CdSe/ZnS NP functionalized with cyanine dyes (Cy3B), this difference is predicted to be as large as 75% and it is strongly dependent in amplitude and sign on the dye-NP distance. We account for all the possible RET processes within the system, together with competing decay pathways in the separate segments. In addition, we show that the anisotropic signature of RET is persistent up to a large number of dyes per NP.

摘要

共振能量转移(RET)本质上是一个各向异性过程。即使是基于跃迁偶极 - 偶极耦合的最简单、最著名的福斯特理论,也隐含地包含了RET的各向异性特征。在这项理论工作中,我们研究了由分子染料修饰的半导体纳米颗粒(NP)组成的混合纳米材料中RET基本各向异性特征的可能特征。特别是,通过一个实际的动力学模型,我们表明,对正交输入偏振的染料光致发光差异进行分析,揭示了染料 - NP的RET的各向异性特征,这是由NP晶格的固有各向异性引起的。在用花青染料(Cy3B)功能化的典型核/壳纤锌矿CdSe/ZnS NP中,预计这种差异高达75%,并且其幅度和符号强烈依赖于染料 - NP的距离。我们考虑了系统内所有可能的RET过程,以及各独立部分中的竞争衰减途径。此外,我们表明,RET的各向异性特征在每个NP含有大量染料的情况下仍然存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7207/5171219/cbae0a7fb871/c6ra22433d-f1.jpg

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