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五元杂环作为构建分子逻辑门的有前景的平台。

Five-membered heterocycles as promising platforms for molecular logic gate construction.

作者信息

Ciupa Alexander

机构信息

Materials Innovation Factory, University of Liverpool 51 Oxford Street Liverpool L7 3NY UK

出版信息

RSC Adv. 2025 Apr 4;15(14):10565-10572. doi: 10.1039/d5ra00749f.

Abstract

The field of molecular logic gates began thirty years ago with the early pioneers de Silva (A. P. de Silva, H. Q. N. Gunaratne and C. P. McCoy, , 1993, , 42) laying the foundation for modern molecular-scale switches and devices. Recent reports of lab-on-a-molecule and molecular calculators (Moleculators) demonstrate the potential of this bottom-up approach. Five-membered heterocycles were central to the first reported logic gates in 1994 and remain valuable scaffolds in the present day. This review provides an overview of logic gate design using Boolean logic, introduces the work of the first pioneers, and highlights recently reported five-membered heterocycle logic gates.

摘要

分子逻辑门领域始于三十年前,早期先驱德席尔瓦(A. P. 德席尔瓦、H. Q. N. 古纳拉特内和C. P. 麦科伊,《自然》,1993年,第42期)为现代分子尺度开关和器件奠定了基础。最近关于分子上的实验室和分子计算器(分子计算器)的报道展示了这种自下而上方法的潜力。五元杂环在1994年首次报道的逻辑门中处于核心地位,至今仍是有价值的支架。本综述概述了使用布尔逻辑的逻辑门设计,介绍了首批先驱者的工作,并重点介绍了最近报道的五元杂环逻辑门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3851/11969662/60147ff5aab2/d5ra00749f-f1.jpg

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