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Superlong Salicylideneaniline Semiconductor Nanobelts Prepared by a Magnetic Nanoparticle-Assisted Self-Assembly Process for Luminescence Thermochromism

机译:磁性纳米粒子辅助自组装法制备发光热致变色超长水杨基苯胺苯胺半导体纳米带

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摘要

Controlling the molecular assembling and nanomorphology of organic semiconductors is crucial to obtain high-performance electronic devices. In this work, we have first reported novel superlong salicylideneaniline nanobelts (mHBA) using the magnetic nanoparticle-assisted self-assembly process. Our results show that magnetic nanoparticles will obviously influence the self-assembly behavior, nanomorphology, and crystal structure of molecular HBA. Moreover, the intensity of fluorescence mHBA exhibits decreasing and increasing patterns, with the increase in temperature over a wide temperature range of 8 to 295 K. To elucidate the origin of tautomer forms, the ground and excited states of mHBA were experimentally and theoretically studied. Our results suggest that superlong HBA nanobelts provide a promising intelligent fluorescent thermometer and an organic field-effect transistor.
机译:控制有机半导体的分子组装和纳米形态对于获得高性能电子设备至关重要。在这项工作中,我们首先报道了使用磁性纳米粒子辅助自组装过程的新型超长水杨基苯胺苯胺纳米带(mHBA)。我们的结果表明,磁性纳米粒子将明显影响分子HBA的自组装行为,纳米形态和晶体结构。此外,随着温度在8至295 K的宽温度范围内升高,荧光mHBA的强度呈现出降低和升高的模式。为阐明互变异构体形式的起源,对mHBA的基态和激发态进行了实验和理论研究。我们的结果表明,超长HBA纳米带提供了有前途的智能荧光温度计和有机场效应晶体管。

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