Gao Ru-Ru, Yao Tian-Ming, Lv Xiao-Yan, Zhu Yan-Yan, Zhang Yi-Wei, Shi Shuo
Shanghai Key Laboratory of Chemical Assessment and Sustainability , School of Chemical Science and Engineering , Tongji University , Shanghai , 200092 , P. R. China . Email:
Chem Sci. 2017 Jun 1;8(6):4211-4222. doi: 10.1039/c7sc00361g. Epub 2017 Apr 6.
To create sophisticated molecular logic circuits from scratch, you may not believe how common the building blocks can be and how diverse and powerful such circuits can be when scaled up. Using the two simple building blocks of G-quadruplex and silver nanoclusters (Ag NCs), we experimentally construct a series of multifunctional, label-free, and multi-output logic circuits to perform nonarithmetic functions: a 1-to-2 decoder, a 4-to-2 encoder, an 8-to-3 encoder, dual transfer gates, a 2 : 1 multiplexer, and a 1 : 2 demultiplexer. Moreover, a parity checker which is capable of identifying odd and even numbers from natural numbers is constructed conceptually. Finally, a multi-valued logic gate (ternary inhibit gate) is readily achieved by taking this DNA/Ag NC system as a universal platform. All of the above logic circuits share the same building blocks, indicating the great prospects of the assembly of nanomaterials and DNA for biochemical logic devices. Considering its biocompatibility, the novel prototypes developed here may have potential applications in the fields of biological computers and medical diagnosis and serve as a promising proof of principle in the not-too-distant future.
要从零开始构建复杂的分子逻辑电路,你可能难以置信其构建模块会如此常见,以及当这些电路规模扩大时会变得如此多样且强大。利用G-四链体和银纳米簇(Ag NCs)这两个简单的构建模块,我们通过实验构建了一系列多功能、无标记且多输出的逻辑电路来执行非算术功能:一个1对2解码器、一个4对2编码器、一个8对3编码器、双传输门、一个2选1多路复用器和一个1对2解复用器。此外,还从概念上构建了一个能够从自然数中识别奇数和偶数的奇偶校验器。最后,以这种DNA/Ag NC系统作为通用平台,很容易实现一个多值逻辑门(三元禁止门)。上述所有逻辑电路都使用相同的构建模块,这表明纳米材料和DNA组装用于生化逻辑器件具有广阔前景。考虑到其生物相容性,这里开发的新型原型可能在生物计算机和医学诊断领域具有潜在应用,并在不久的将来作为一个有前景的原理验证。