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通过可折叠聚合物转折点的化学结构来控制纳米片的光学和电学性质。

Control of optical and electrical properties of nanosheets by the chemical structure of the turning point in a foldable polymer.

机构信息

Research Center for Functional Materials, National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba, 305-0044, Japan.

出版信息

Nanoscale. 2016 Aug 14;8(30):14673-81. doi: 10.1039/c6nr01066k. Epub 2016 Jul 20.

Abstract

Oligomers of tetra(ethylene glycol)-disubstituted phenyl-capped bithiophene (Ph2TPh) linked by catechol and resorcinol were prepared. Catechol and resorcinol link the monomers via the ortho- and meta-positions of the benzene ring, respectively, and function as turning points in the folding process of the polymer. It was confirmed that the ortho-linked 8mer (o-8mer) and meta-linked 8mer (m-8mer) could form nanosheets through the self-assembly of folded polymers in o-dichlorobenzene. We confirmed that the arrangement of thiophene units inside the nanosheets was controllable by changing the chemical structure of the turning point. The different arrangements of the Ph2TPh units led to changes in other physical properties such as UV-Vis absorption, nanosheet thickness and charge carrier transport. The absorption spectrum of the o-8mer nanosheets suggested that the Ph2TPh units are arranged vertical to the lateral direction of the nanosheets. On the other hand, the Ph2TPh units in the m-8mer nanosheets were considered to have a tilted orientation. The change in the Ph2TPh tilt angle inside the nanosheets was supported by the different thicknesses of the o-8mer and m-8mer nanosheets. The relationship between the absorption spectrum and Ph2TPh unit arrangement was discussed based on the DFT calculation. Intrinsic charge carrier transport properties were evaluated by a noncontact microwave-based method. The o-8mer nanosheets showed higher conductivity than the m-8mer and triazole-linked-8mer nanosheets. The lifetime of charge carriers in the nanosheet was longer than that in the lamellar structure of the drop-cast film.

摘要

四乙二醇二取代苯基封端联苯并噻吩(Ph2TPh)的低聚物通过邻苯二酚和间苯二酚制备。邻苯二酚和间苯二酚通过苯环的邻位和间位将单体连接在一起,并且作为聚合物折叠过程中的转折点。通过在邻二氯苯中折叠聚合物的自组装,证实了邻位连接的 8 mer(o-8mer)和间位连接的 8mer(m-8mer)可以形成纳米片。我们证实通过改变转折点的化学结构,可以控制纳米片中噻吩单元的排列。Ph2TPh 单元的不同排列导致其他物理性质的变化,如紫外-可见吸收、纳米片厚度和电荷载流子输运。o-8mer 纳米片的吸收光谱表明 Ph2TPh 单元垂直于纳米片的横向排列。另一方面,m-8mer 纳米片中的 Ph2TPh 单元被认为具有倾斜取向。o-8mer 和 m-8mer 纳米片的不同厚度支持了纳米片中 Ph2TPh 单元倾斜角度的变化。基于 DFT 计算,讨论了吸收光谱与 Ph2TPh 单元排列之间的关系。通过非接触微波方法评估了固有电荷载流子输运特性。o-8mer 纳米片表现出比 m-8mer 和三唑连接的 8mer 纳米片更高的电导率。纳米片中电荷载流子的寿命长于滴铸膜的层状结构中的寿命。

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