Raymo Françisco M, Giordani Silvia, White Andrew J P, Williams David J
Center for Supramolecular Science, Department of Chemistry, University of Miami, 1301 Memorial Drive, Coral Gables, Florida 33146-0431, USA.
J Org Chem. 2003 May 30;68(11):4158-69. doi: 10.1021/jo0340455.
Certain molecular switches respond to input stimulations producing detectable outputs. The interplay of these signals can be exploited to reproduce basic logic operations at the molecular level. The transition from simple logic gates to complex digital circuits requires the design of chemical systems able to process multiple inputs and outputs. We have identified a three-state molecular switch that responds to one chemical and two optical inputs producing two optical outputs. We have encoded binary digits in its inputs and outputs applying positive logic conventions and demonstrated that this chemical system converts three-digit input strings into two-digit output strings. The logic function executed by the three-state molecular switch is equivalent to that of a combinational logic circuit integrating two AND, two NOT, and one OR gate. The three states of the molecular switch are a colorless spiropyran, a purple trans-merocyanine, and its yellow-green protonated form. We have elucidated their structures by X-ray crystallography, (1)H NMR spectroscopy, COSY and NOE experiments, as well as density functional calculations. The three input stimulations controlling the interconversion of the three states of the molecular switch are ultraviolet light, visible light, and H(+). The two outputs are the absorption bands in the visible region of the two colored states of the molecular switch. We have monitored the switching processes and quantified the associated thermodynamic and kinetic parameters with the aid of (1)H NMR and visible absorption spectroscopies.
某些分子开关对输入刺激作出响应,产生可检测的输出。这些信号的相互作用可被利用来在分子水平上重现基本逻辑运算。从简单逻辑门到复杂数字电路的转变需要设计能够处理多个输入和输出的化学系统。我们已识别出一种三态分子开关,它对一种化学输入和两种光输入作出响应,产生两种光输出。我们已根据正逻辑约定在其输入和输出中编码二进制数字,并证明该化学系统将三位输入字符串转换为两位输出字符串。由三态分子开关执行的逻辑功能等同于一个集成了两个与门、两个非门和一个或门的组合逻辑电路的功能。分子开关的三种状态分别是无色的螺吡喃、紫色的反式部花青及其黄绿色的质子化形式。我们已通过X射线晶体学、¹H NMR光谱、COSY和NOE实验以及密度泛函计算阐明了它们的结构。控制分子开关三种状态相互转换的三种输入刺激是紫外线、可见光和H⁺。两种输出是分子开关两种有色状态在可见光区域的吸收带。我们借助¹H NMR和可见吸收光谱监测了开关过程,并对相关的热力学和动力学参数进行了量化。