Department of Chemistry, Biology and Biotechnology, Università degli Studi di Perugia, 06123 Perugia, Italy.
Istituto CNR di Scienze e Tecnologie Chimiche "Giulio Natta" (CNR-SCITEC), 06123 Perugia, Italy.
Molecules. 2023 Jan 25;28(3):1183. doi: 10.3390/molecules28031183.
Photochromic compounds are employed in implementing neuron surrogates. They will boost the development of neuromorphic engineering in wetware. In this work, the photochromic behaviours of (E)-3,4,6-trichloro-2-(-diazenil)-phenol () and its conjugated phenoxide base () have been investigated experimentally in three different media: (1) pure acetonitrile, (2) in water and acetonitrile mixed in a 1/1 volume ratio, and (3) in an aqueous micellar solution of 3-(,-Dimethylmyristylammonio)propanesulfonate (SB3-14). The analysis of the spectral and kinetic features of and has been supported by quantum-mechanical DFT calculations, the maximum entropy method, and the determination of their colourability (C). The versatility of and makes them promising molecular probes of micro-environments and potential ingredients of photochemical oscillators required for implementing pacemaker neurons capable of communicating through optical signals in wetware.
光致变色化合物被用于实现神经元替代物。它们将促进湿件中神经形态工程的发展。在这项工作中,实验研究了(E)-3,4,6-三氯-2-(-重氮基)-苯酚()及其共轭酚氧化物()在三种不同介质中的光致变色行为:(1)纯乙腈,(2)乙腈和水以 1/1 体积比混合,以及(3)3-(,-二甲基肉豆蔻基)丙磺酸盐(SB3-14)的水溶液胶束溶液。和的光谱和动力学特征的分析得到了量子力学 DFT 计算、最大熵方法和可显色性(C)的支持。和的多功能性使它们成为微环境的有前途的分子探针,也是实现能够通过湿件中的光学信号进行通信的起搏器神经元的光化学振荡器所需的潜在成分。