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通过表面能控制的逐步结晶法精确制备用于双极性有机场效应晶体管的横向堆叠有机微带异质结阵列

Precise Patterning of Laterally Stacked Organic Microbelt Heterojunction Arrays by Surface-Energy-Controlled Stepwise Crystallization for Ambipolar Organic Field-Effect Transistors.

作者信息

Zhang Xiujuan, Mao Jian, Deng Wei, Xu Xiuzhen, Huang Liming, Zhang Xiaohong, Lee Shuit-Tong, Jie Jiansheng

机构信息

Institute of Functional Nano & Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Soochow University, Suzhou Jiangsu, 215123, P. R. China.

出版信息

Adv Mater. 2018 May 28:e1800187. doi: 10.1002/adma.201800187.

DOI:10.1002/adma.201800187
PMID:29808488
Abstract

Ambipolar organic field-effect transistors (OFETs) combining single-crystalline p- and n-type organic micro/nanocrystals have demonstrated superior performance to their amorphous or polycrystalline thin-film counterparts. However, large-area alignment and precise patterning of organic micro/nanocrystals for ambipolar OFETs remain challenges. Here, a surface-energy-controlled stepwise crystallization (SECSC) method is reported for large-scale, aligned, and precise patterning of single-crystalline laterally stacked p-n heterojunction microbelt (MB) arrays. In this method, the p- and n-type organic crystals are precipitated via a stepwise process: first, the lateral sides of prepatterned photoresist stripes provide high-surface-energy sites to guide the aligned growth of p-type organic crystals. Next, the formed p-type crystals serve as new high-surface-energy positions to induce the crystallization of n-type organic molecules at their sides, thus leading to the formation of laterally stacked p-n microbelts. Ambipolar OFETs based on the p-n heterojunction MB arrays exhibit balanced hole and electron mobilities of 0.32 and 0.43 cm V s , respectively, enabling the fabrication of complementary-like inverters with large voltage gains. This work paves the way toward rational design and construction of single-crystalline organic p-n heterojunction arrays for high-performance organic, integrated circuits.

摘要

结合单晶p型和n型有机微/纳米晶体的双极有机场效应晶体管(OFET)已表现出优于非晶或多晶薄膜同类产品的性能。然而,用于双极OFET的有机微/纳米晶体的大面积排列和精确图案化仍然是挑战。在此,报道了一种表面能控制的逐步结晶(SECSC)方法,用于单晶横向堆叠的p-n异质结微带(MB)阵列的大规模、对齐和精确图案化。在该方法中,p型和n型有机晶体通过逐步过程沉淀:首先,预图案化光刻胶条纹的侧面提供高表面能位点,以引导p型有机晶体的对齐生长。接下来,形成的p型晶体作为新的高表面能位置,在其侧面诱导n型有机分子结晶,从而导致横向堆叠的p-n微带的形成。基于p-n异质结MB阵列的双极OFET分别表现出0.32和0.43 cm² V⁻¹ s⁻¹ 的平衡空穴和电子迁移率,能够制造具有大电压增益的互补型逆变器。这项工作为高性能有机集成电路的单晶有机p-n异质结阵列的合理设计和构建铺平了道路。

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