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A Potential Carcinogenic Pyrene Derivative under F?rster Resonance Energy Transfer to Various Energy Acceptors in Nanoscopic Environments

机译:纳米共振环境中弗斯特共振能转移给各种能量受体的潜在致癌P衍生物

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Picosecond-resolved F?rster resonance energy transfer (FRET) from various vibronic bands in benzo[a]pyrene (BP) shows a strong dependency on the spectral overlap of an energy acceptor in a confined environment. Our study on the dipolar interactions between BP and different acceptors, including ethidium (Et), acridine orange (AO), and crystal violet (CV), at the surface of a model anionic micelle revealed that the F?rster distance (R_0) and the rate of energy transfer is dependent on the individual spectral overlap of the vibronic bands of BP with the absorption spectra of the different energy acceptors. The differential behavior of the vibronic bands is compared with that of different dyes [quantum dots (QDs)] in a "dye-blend" (mixture) under FRET to an energy acceptor. Comparison of the FRET of the QDs with that of BP confirmed the independent nature of the dipolar interaction of the vibronic bands with other organic molecules, and the use of deconvolution techniques in the interpretation of the donor-acceptor (D-A) distance was also justified. We also showed that the consideration of differential FRET from the vibronic bands of BP and from the QDs in the dye-blend is equally acceptable in theoretical frameworks including the Infelta-Tachiya model and D-A distribution analysis in nanoenvironments.
机译:在受限环境中,苯并[a] various(BP)中各个振动带的皮秒分辨弗斯特共振能量转移(FRET)显示出对能量受体光谱重叠的强烈依赖。我们对模型阴离子胶束表面上的BP与不同受体(包括乙锭(Et),a啶橙(AO)和结晶紫(CV))之间的偶极相互作用的研究表明,Fsterster距离(R_0)和能量转移的速率取决于BP振动带的各个光谱重叠与不同能量受体的吸收光谱。在“能量掺混物”的能量作用下,在“染料混合物”(混合物)中,将电子束带的差异行为与不同染料[量子点(QD)]的行为进行了比较。将QDs的FRET与BP的FRET进行比较,证实了电子束带与其他有机分子的偶极相互作用的独立性质,并且也证明了使用解卷积技术解释供体-受体(D-A)距离是合理的。我们还表明,在理论框架(包括Infelta-Tachiya模型和纳米环境中的D-A分布分析)中,考虑从BP的振动带和染料混合物中的QDs分离FRET是同样可以接受的。

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