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作为具有重置功能的模型分子计算器的荧光素。

Fluorescein as a model molecular calculator with reset capability.

作者信息

Margulies David, Melman Galina, Shanzer Abraham

机构信息

Department of Organic Chemistry, The Weizmann Institute of Science, Rehovot, Israel.

出版信息

Nat Mater. 2005 Oct;4(10):768-71. doi: 10.1038/nmat1469. Epub 2005 Sep 11.

Abstract

The evolution of molecules capable of performing boolean operations has gone a long way since the inception of the first molecular AND logic gate, followed by other logic functions, such as XOR and INHIBIT, and has reached the stage where these tiny processors execute arithmetic calculations. Molecular logic gates that process a variety of chemical inputs can now be loaded with arrays of logic functions, enabling even a single molecular species to execute distinct algebraic operations: addition and subtraction. However, unlike electronic or optical signals, the accumulation of chemical inputs prevents chemical arithmetic systems from resetting. Consequently, a set of solutions is required to complete even the simplest arithmetic cycle. It has been suggested that these limitations can be overcome by washing off the input signals from solid supports. An alternative approach, which does not require solvent exchange or incorporation of bulk surfaces, is to reset the arithmetic system chemically. Ultimately, this is how some biological systems regenerate. Here we report a highly efficient and exceptionally simple molecular arithmetic system based on a plain fluorescein dye, capable of performing a full scale of elementary addition and subtraction algebraic operations. This system can be reset following each separate arithmetic step. The ability to selectively eradicate chemical inputs brings us closer to the realization of chemical computation.

摘要

自首个分子与逻辑门问世以来,能够执行布尔运算的分子的发展历程已经走过了很长一段路,随后出现了其他逻辑功能,如异或和抑制,如今已发展到这些微型处理器能够执行算术计算的阶段。现在,能够处理各种化学输入的分子逻辑门可以加载逻辑功能阵列,甚至单个分子种类也能执行不同的代数运算:加法和减法。然而,与电子或光信号不同,化学输入的积累使得化学算术系统无法重置。因此,即使是完成最简单的算术循环也需要一系列解决方案。有人提出,可以通过从固体支持物上洗去输入信号来克服这些限制。另一种方法是通过化学方式重置算术系统,这种方法不需要溶剂交换或引入大量表面。最终,一些生物系统就是这样进行再生的。在此,我们报告一种基于普通荧光素染料的高效且极其简单的分子算术系统,它能够执行完整的基本加法和减法代数运算。该系统在每个单独的算术步骤之后都可以重置。选择性消除化学输入的能力使我们离实现化学计算更近了一步。

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