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冷冻取向无序诱导有机半导体中热激活到与温度无关的输运转变。

Freezing-in orientational disorder induces crossover from thermally-activated to temperature-independent transport in organic semiconductors.

机构信息

Department of Physics, Wake Forest University, Winston-Salem, North Carolina 27109, USA.

School of Chemistry and Biochemistry and Center for Organic Photonics and Electronics, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.

出版信息

Nat Commun. 2014 Dec 3;5:5642. doi: 10.1038/ncomms6642.

Abstract

The crystalline structure of organic materials dictates their physical properties, but while significant research effort is geared towards understanding structure-property relationships in such materials, the details remain unclear. Many organic crystals exhibit transitions in their electrical properties as a function of temperature. One example is the 1:1 charge-transfer complex trans--stilbene-2,3,5,6-tetrafluoro-7,7,8,8-tetracyanoquinodimethane. Here we show that the mobility and resistivity of this material undergo a transition from being thermally activated at temperatures above 235 K to being temperature independent at low temperatures. On the basis of our experimental and theoretical results, we attribute this behaviour to the presence of a glass-like transition and the accompanied freezing-in of orientational disorder of the stilbene molecule.

摘要

有机材料的晶体结构决定了它们的物理性质,但尽管人们投入了大量的研究努力来理解这些材料的结构-性质关系,但其中的细节仍不清楚。许多有机晶体的电性质随着温度的变化而发生转变。一个例子是 1:1 电荷转移配合物反式-二苯乙烯-2,3,5,6-四氟-7,7,8,8-四氰基对醌二甲烷。在这里,我们表明,该材料的迁移率和电阻率从高于 235 K 的温度下的热激活转变为低温下的温度无关。基于我们的实验和理论结果,我们将这种行为归因于玻璃态转变的存在以及伴随而来的二苯乙烯分子取向无序的冻结。

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