加法器
逻辑门
实现(概率)
微流控
计算
电子线路
DNA运算
电子工程
纳米技术
计算机科学
材料科学
计算机硬件
计算机体系结构
光电子学
物理
算法
工程类
数学
CMOS芯片
量子力学
统计
作者
Songlin He,Ruiming Cui,Yao Zhang,Yongkang Yang,Ziheng Xu,Shuoyu Wang,Pingxiu Dang,Kexin Dang,Qing Ye,Yin Liu
标识
DOI:10.1021/acsami.1c24220
摘要
DNA logic gates, nanocomputing circuits, have already implemented basic computations and shown great signal potential for nano logic material application. However, the reaction temperature and computing speed still limit its development. Performing complicated computations requires a more stable component and a better computing platform. We proposed a more stable design of logic gates based on a triple, double-stranded, DNA (T-dsDNA) structure. We demonstrated a half adder and a full adder using these DNA nanocircuits and performed the computations in a microfluidic chip device at room temperature. When the solutions were mixed in the device, we obtained the expected results in real time, which suggested that the T-dsDNA combined microfluidic chip provides a concise strategy for large DNA nanocircuits.
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