Ren Jie, Niu Mengsi, Guo Xuyun, Liu Yujing, Yang Xiaoyu, Chen Min, Hao Xiaotao, Zhu Ye, Chen Hongzheng, Li Hanying
MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering , Zhejiang University , Hangzhou 310027 , China.
School of Physics, State Key Laboratory of Crystal Materials , Shandong University , Jinan , Shandong 250100 , China.
J Am Chem Soc. 2020 Jan 22;142(3):1630-1635. doi: 10.1021/jacs.9b13087. Epub 2020 Jan 10.
Bulk-heterojunction (BHJ) blends are commonly used as active materials for optoelectronics. Ordering of molecular packing in blends is critical to their electronic properties, spurring investigation on how to obtain BHJ with long-range ordering. However, the difficulty in controlling crystallization during blending limits the crystallinity. Developing a new strategy instead of conventional blending is, thus, needed. Inspired by biomineralization, here, C single-crystals are prepared in organogel matrix of poly[2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylenvinylene] (MEH-PPV) to form MEH-PPV:C composites. Essentially, networks of MEH-PPV are incorporated into growing C crystals and penetrate throughout the crystals, resulting in crystal/gel-network interpenetrating composites. Despite the coexistence of MEH-PPV, the C crystalline component maintains single-crystallinity and the composite exhibits as BHJ with long-range ordering. Furthermore, compared with blends, the long-range ordered BHJ shows a higher efficiency of charge dissociation and better performance in photodetection, exemplifying the advantage of ordering on organic electronics. Hence, this work provides a new platform to study BHJ with long-range ordering.
本体异质结(BHJ)共混物通常用作光电子学的活性材料。共混物中分子堆积的有序性对其电子性能至关重要,这激发了人们对如何获得具有长程有序性的BHJ的研究。然而,共混过程中控制结晶的困难限制了结晶度。因此,需要开发一种新的策略来取代传统的共混方法。受生物矿化的启发,在此,在聚[2-甲氧基-5-(2-乙基己氧基)-1,4-亚苯基亚乙烯基](MEH-PPV)的有机凝胶基质中制备C单晶,以形成MEH-PPV:C复合材料。本质上,MEH-PPV网络被纳入生长的C晶体中并贯穿整个晶体,从而形成晶体/凝胶网络互穿复合材料。尽管存在MEH-PPV,但C晶体成分保持单晶性,且该复合材料表现出具有长程有序性的BHJ。此外,与共混物相比,长程有序的BHJ显示出更高的电荷解离效率和更好的光电探测性能,例证了有序性在有机电子学中的优势。因此,这项工作为研究具有长程有序性的BHJ提供了一个新平台。