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聚(3-己基噻吩)及其与单壁碳纳米管的复合材料的各向异性光致发光,其中单壁碳纳米管在金属和半导体管中高度分离。

Anisotropic Photoluminescence of Poly(3-hexyl thiophene) and Their Composites with Single-Walled Carbon Nanotubes Highly Separated in Metallic and Semiconducting Tubes.

机构信息

Optical Processes in Nanostructure Materials Laboratory, National Institute of Materials Physics, Atomistilor Str. 405 A, 77125 Magurele, Romania.

Neutron Physics, Joint Institute for Nuclear Research Laboratory, 6 Joliot-Curie Street, 141980 Dubna, Russia.

出版信息

Molecules. 2021 Jan 8;26(2):294. doi: 10.3390/molecules26020294.

Abstract

In this work, the effect of the single-walled carbon nanotubes (SWNTs) as the mixtures of metallic and semiconducting tubes (M + S-SWNTs) as well as highly separated semiconducting (S-SWNTs) and metallic (M-SWNTs) tubes on the photoluminescence (PL) of poly(3-hexyl thiophene) (P3HT) was reported. Two methods were used to prepare such composites, that is, the chemical interaction of the two constituents and the electrochemical polymerization of the 3-hexyl thiophene onto the rough Au supports modified with carbon nanotubes (CNTs). The measurements of the anisotropic PL of these composites have highlighted a significant diminution of the angle of the binding of the P3HT films electrochemical synthetized onto Au electrodes covered with M + S-SWNTs. This change was attributed to metallic tubes, as was demonstrated using the anisotropic PL measurements carried out on the P3HT/M-SWNTs and P3HT/S-SWNTs composites. Small variations in the angle of the binding were reported in the case of the composites prepared by chemical interaction of the two constituents. The proposed mechanism to explain this behavior took into account the functionalization process of CNTs with P3HT. The experimental arguments of the functionalization process of CNTs with P3HT were shown by the UV-VIS-NIR and FTIR spectroscopy as well as surface-enhanced Raman scattering (SERS). A PL quenching process of P3HT induced both in the presence of S-SWNTs and M-SWNTs was reported, too. This process origins in the various de-excitation pathways which can be developed considering the energy levels diagram of the two constituents of each studied composite.

摘要

在这项工作中,研究了单壁碳纳米管(SWNTs)作为金属和半导体管(M + S-SWNTs)混合物以及高度分离的半导体(S-SWNTs)和金属(M-SWNTs)管对聚(3-己基噻吩)(P3HT)光致发光(PL)的影响。使用两种方法制备了这些复合材料,即两种组分的化学相互作用和在粗糙 Au 基底上电化学聚合 3-己基噻吩,该基底用碳纳米管(CNTs)进行了修饰。这些复合材料各向异性 PL 的测量突出表明,电化学合成到 Au 电极上的 P3HT 薄膜的结合角度显着减小,这些电极上覆盖有 M + S-SWNTs。这种变化归因于金属管,正如通过对 P3HT/M-SWNTs 和 P3HT/S-SWNTs 复合材料进行各向异性 PL 测量所证明的那样。在通过两种组分的化学相互作用制备的复合材料的情况下,报道了结合角度的微小变化。解释这种行为的提议机制考虑了 CNTs 与 P3HT 的功能化过程。通过 UV-VIS-NIR 和 FTIR 光谱以及表面增强拉曼散射(SERS)证明了 CNTs 与 P3HT 的功能化过程的实验论据。还报道了在存在 S-SWNTs 和 M-SWNTs 的情况下诱导 P3HT 的 PL 猝灭过程。这个过程起源于可以考虑每个研究复合材料的两种组分的能级图来开发的各种退激发路径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ee3/7827376/7952adda2ad2/molecules-26-00294-g001.jpg

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