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共轭共聚物与还原氧化石墨烯衍生杂化材料的合成与表征

Synthesis and Characterization of Hybrid Materials Derived from Conjugated Copolymers and Reduced Graphene Oxide.

作者信息

Lazanas Alexandros Ch, Katsouras Athanasios, Spanos Michael, Manesi Gkreti-Maria, Moutsios Ioannis, Vashurkin Dmitry V, Moschovas Dimitrios, Gioti Christina, Karakassides Michail A, Gregoriou Vasilis G, Ivanov Dimitri A, Chochos Christos L, Avgeropoulos Apostolos

机构信息

Department of Materials Science Engineering, University of Ioannina, 45110 Ioannina, Greece.

National Hellenic Research Foundation (NHRF), 48 Vassileos Constantinou Avenue, 11635 Athens, Greece.

出版信息

Polymers (Basel). 2022 Dec 3;14(23):5292. doi: 10.3390/polym14235292.

Abstract

In this study the preparation of hybrid materials based on reduced graphene oxide (rGO) and conjugated copolymers is reported. By tuning the number and arrangement of thiophenes in the main chain (indacenothiophene or indacenothienothiophene) and the nature of the polymer acceptor (difluoro benzothiadiazole or diketopyrrolopyrrole) semiconducting copolymers were synthesized through Stille aromatic coupling and characterized to determine their molecular characteristics. The graphene oxide was synthesized using the Staudenmaier method and was further modified to reduced graphene oxide prior to structural characterization. Various mixtures with different rGO quantities and conjugated copolymers were prepared to determine the optoelectronic, thermal and morphological properties. An increase in the maximum absorbance ranging from 3 to 6 nm for all hybrid materials irrespective of the rGO concentration, when compared to the pristine conjugated copolymers, was estimated through the UV-Vis spectroscopy indicating a differentiation on the optical properties. Through voltammetric experiments the oxidation and reduction potentials were determined and the calculated HOMO and LUMO levels revealed a decrease on the electrochemical energy gap for low rGO concentrations. The study indicates the potential of the hybrid materials consisting of graphene oxide and high band gap conjugated copolymers for applications related to organic solar cells.

摘要

本研究报道了基于还原氧化石墨烯(rGO)和共轭共聚物的杂化材料的制备。通过调节主链中噻吩的数量和排列(茚并噻吩或茚并噻吩并噻吩)以及聚合物受体的性质(二氟苯并噻二唑或二酮吡咯并吡咯),通过Stille芳香偶联合成了半导体共聚物,并对其进行了表征以确定其分子特性。氧化石墨烯采用Staudenmaier方法合成,并在进行结构表征之前进一步改性为还原氧化石墨烯。制备了具有不同rGO含量和共轭共聚物的各种混合物,以确定其光电、热和形态学性质。与原始共轭共聚物相比,通过紫外可见光谱估计,所有杂化材料无论rGO浓度如何,其最大吸光度都增加了3至6nm,这表明光学性质存在差异。通过伏安实验确定了氧化和还原电位,计算得到的HOMO和LUMO能级表明,低rGO浓度下电化学能隙减小。该研究表明,由氧化石墨烯和高带隙共轭共聚物组成的杂化材料在有机太阳能电池相关应用中具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/113c/9737337/a982008fc0a7/polymers-14-05292-g001.jpg

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