基于苝酰肼的室温n型荧光柱状液晶

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Mrinmoy Roy, Paresh Kumar Behera, Indrajit Mondal, Abhinandha Asokh, Doddamane Sreenivasamurthy Shankar Rao, Satyaprasad P. Senanayak* and Achalkumar Ammathnadu Sudhakar*, 
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引用次数: 0

摘要

设计合成了对称和不对称苝酰肼衍生物,并对其性能进行了研究。不对称苝衍生物的特征是在苝分子的一端有一个肼单元,在另一端有一个燕尾胺(HI)或二酯部分(HE),表现为室温柱状中间相。这三种分子在高温下都是热稳定的,不对称的苝衍生物HI和HE表现出六方对称的柱状相。光物理研究揭示了HI和HE的高荧光性质,后者在固体状态下也表现出更高的相对量子产率和亮红色发射。用空间电荷限制电流(SCLC)方法在纯电子器件中研究了这三种导数的载流子迁移率测量。在三种分子中,对称导数HH表现出更高的电子迁移率,尽管它没有稳定任何液晶相。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Room-Temperature Fluorescent n-Type Columnar Liquid Crystals Based on Perylene Hydrazides

Room-Temperature Fluorescent n-Type Columnar Liquid Crystals Based on Perylene Hydrazides

Symmetrical and unsymmetrical perylene hydrazide derivatives were designed and synthesized, and their properties were investigated. The unsymmetrical perylene derivative features a hydrazide unit at one end of the perylene molecule and a swallow-tail amine (HI) or a diester moiety (HE) at the other end, exhibiting a room-temperature columnar mesophase. All three molecules were found to be thermally stable at high temperature, and the unsymmetrical perylene derivatives HI and HE have shown columnar phases of hexagonal symmetry. Photophysical studies reveal the highly fluorescent nature of HI and HE, with the latter showing a higher relative quantum yield and bright red emission in the solid state as well. All three derivatives were investigated for their charge carrier mobility measurements by the space-charge-limiting-current (SCLC) method in an electron-only device. Among the three molecules, it was seen that the symmetric derivative HH showed higher electron mobility, though it did not stabilize any liquid crystalline phase.

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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
期刊介绍: ACS Applied Electronic Materials is an interdisciplinary journal publishing original research covering all aspects of electronic materials. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials science, engineering, optics, physics, and chemistry into important applications of electronic materials. Sample research topics that span the journal's scope are inorganic, organic, ionic and polymeric materials with properties that include conducting, semiconducting, superconducting, insulating, dielectric, magnetic, optoelectronic, piezoelectric, ferroelectric and thermoelectric. Indexed/​Abstracted: Web of Science SCIE Scopus CAS INSPEC Portico
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