加法器
DNA运算
瓦片
计算机科学
并行计算
逻辑门
计算器
计算
编码(集合论)
减法
理论计算机科学
算术
计算科学
算法
数学
材料科学
程序设计语言
复合材料
操作系统
集合(抽象数据类型)
延迟(音频)
电信
作者
Anshula Tandon,Yongwoo Song,Sekhar Babu Mitta,Sanghyun Yoo,Suyoun Park,Sung-Jin Lee,Muhammad Tayyab Raza,Tai Hwan Ha,Sung Ha Park
出处
期刊:ACS Nano
[American Chemical Society]
日期:2020-03-11
卷期号:14 (5): 5260-5267
被引量:25
标识
DOI:10.1021/acsnano.0c01387
摘要
Owing to its high information density, energy efficiency, and massive parallelism, DNA computing has undergone several advances and made significant contributions to nanotechnology. Notably, arithmetic calculations implemented by multiple logic gates such as adders and subtractors have received much attention because of their well-established logic algorithms and feasibility of experimental implementation. Although small molecules have been used to implement these computations, a DNA tile-based calculator has been rarely addressed owing to complexity of rule design and experimental challenges for direct verification. Here, we construct a DNA-based calculator with three types of building blocks (propagator, connector, and solution tiles) to perform addition and subtraction operations through algorithmic self-assembly. An atomic force microscope is used to verify the solutions. Our method provides a potential platform for the construction of various types of DNA algorithmic crystals (such as flip-flops, encoders, and multiplexers) by embedding multiple logic gate operations in the DNA base sequences.
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