Georgiev Nikolai I, Bakov Ventsislav V, Bojinov Vladimir B
Department of Organic Synthesis, University of Chemical Technology and Metallurgy, 8 Kliment Ohridsky Str., 1756 Sofia, Bulgaria.
Bulgarian Academy of Sciences, 1040 Sofia, Bulgaria.
Molecules. 2023 Aug 29;28(17):6327. doi: 10.3390/molecules28176327.
The rapid progress in the field of fluorescent probes and fluorescent sensing material extended this research area toward more complex molecular logic gates capable of carrying out a variety of sensing functions simultaneously. These molecules are able to calculate a composite result in which the analysis is not performed by a man but by the molecular device itself. Since the first report by de Silva of AND molecular logic gate, all possible logic gates have been achieved at the molecular level, and currently, utilization of more complicated molecular logic circuits is a major task in this field. Comparison between two digits is the simplest logic operation, which could be realized with the simplest logic circuit. That is why the right understanding of the applied principles during the implementation of molecular digital comparators could play a critical role in obtaining logic circuits that are more complicated. Herein, all possible ways for the construction of comparators on the molecular level were discussed, and recent achievements connected with these devices were presented.
荧光探针和荧光传感材料领域的迅速发展,将这一研究领域拓展到了更复杂的分子逻辑门,使其能够同时执行多种传感功能。这些分子能够计算出一个综合结果,其中分析不是由人进行,而是由分子装置本身完成。自从德席尔瓦首次报道与门分子逻辑门以来,所有可能的逻辑门在分子水平上都已实现,目前,利用更复杂的分子逻辑电路是该领域的一项主要任务。两位数字之间的比较是最简单的逻辑运算,它可以用最简单的逻辑电路实现。这就是为什么在分子数字比较器的实现过程中正确理解应用原理,对于获得更复杂的逻辑电路可能起着关键作用。在此,讨论了在分子水平上构建比较器的所有可能方法,并介绍了与这些装置相关的最新成果。