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热蒸镀与旋涂法:柱状液晶 OLED 的电性能比较。

Thermal Evaporation versus Spin-Coating: Electrical Performance in Columnar Liquid Crystal OLEDs.

机构信息

†Departamento de Física, Universidade Federal de Santa Catarina-UFSC, 88040-900 Florianópolis, Santa Catarina, Brazil.

‡Department of Electronic Materials, Institute of Materials Science, Technical University of Darmstadt, Petersenstrasse 23, D-64287 Darmstadt, Germany.

出版信息

ACS Appl Mater Interfaces. 2015 Aug 5;7(30):16374-81. doi: 10.1021/acsami.5b03496. Epub 2015 Jul 27.

Abstract

The electrical responses of a columnar liquid crystal (a diimidodiester derivative of benzo[ghi]perylene) deposited either by spin-coating or by thermal evaporation into a typical OLED device are compared. For the spin-coated film, homeotropic alignment was induced by thermal annealing, which enhanced the charge carrier mobility significantly. For the evaporated films, homeotropic alignment could not be obtained by annealing. However, a degree of rectification higher than 3 orders of magnitude was achieved, even without annealing, with an electrical response similar to the response of the aligned spin-coated film. A trap-limited space-charge-limited current model was used to extract the charge carrier mobility directly from the current-voltage curves. Grazing incidence wide-angle X-ray scattering confirmed the homeotropic alignment of the annealed spin-coated film, whereas the columns are mostly oriented parallel to the surface in the evaporated case. In a field-effect transistor with bottom-gate bottom-contact geometry, the evaporated film exhibited a typical behavior of an n-type transistor. The degree of intermolecular order is thereby strongly dependent on the deposition method where vacuum deposition leads to a higher order. This higher order, however, impedes reorientation by annealing of the evaporated film but leads to improved charge transport between the electrodes even without homeotropic alignment of columnar liquid crystal.

摘要

将旋涂或热蒸镀沉积的柱状液晶(苯并[ghi]苝的二咪唑二酯衍生物)的电响应进行了比较。对于旋涂薄膜,通过热退火诱导出了垂直排列,这显著提高了载流子迁移率。对于蒸镀薄膜,退火无法获得垂直排列。然而,即使不进行退火,也实现了高于 3 个数量级的整流效果,其电响应类似于经过对齐的旋涂薄膜的响应。采用陷阱限制的空间电荷限制电流模型,直接从电流-电压曲线中提取载流子迁移率。掠入射广角 X 射线散射证实了退火旋涂薄膜的垂直排列,而在蒸镀情况下,柱状物主要与表面平行排列。在具有底栅底接触几何形状的场效应晶体管中,蒸镀薄膜表现出典型的 n 型晶体管行为。分子间有序程度强烈依赖于沉积方法,真空沉积导致更高的有序度。然而,这种更高的有序度阻碍了蒸镀薄膜的退火重排,但即使没有柱状液晶的垂直排列,也能改善电极之间的电荷输运。

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