Beijing National Laboratory for Molecular Sciences, Peking University, Beijing 100871, China.
Chem Asian J. 2010 Aug 2;5(8):1870-4. doi: 10.1002/asia.201000105.
Based on the chemical-sensitive fluorescence emission behaviors of the molecular switch 4-bromo-5-methoxy-2-(2-pyridyl)thiazole (2-BMPT), the communication of logic information between two functional units has been realized. With the rational control of the protonation and coordination reaction of 2-BMPT, an upstream switching unit (a 1:2 demultiplexer) and two downstream data-processing units are involved and interconnected in the communication. The two output states of the 1:2 demultiplexer serve as the initial input states of the two parallel downstream data-processing units, which execute the information communication between the two circuit layers. Furthermore, in the parallel data-processing layer, the logic gates of INHIBIT and YES accomplish their specific logic functions. Therefore, a molecular cascade circuit composed of an upstream switch and two downstream processing units has been constructed based on the chemical-modulated fluorescence properties of 2-BMPT.
基于分子开关 4-溴-5-甲氧基-2-(2-吡啶基)噻唑(2-BMPT)的化学敏感荧光发射行为,实现了两个功能单元之间的逻辑信息通信。通过合理控制 2-BMPT 的质子化和配位反应,涉及并将上游开关单元(1:2 分路器)和两个下游数据处理单元相互连接在通信中。1:2 分路器的两个输出状态作为两个平行下游数据处理单元的初始输入状态,执行两个电路层之间的信息通信。此外,在并行数据处理层中,INHIBIT 和 YES 逻辑门执行其特定的逻辑功能。因此,基于 2-BMPT 的化学调制荧光特性,构建了由上游开关和两个下游处理单元组成的分子级联电路。