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稳定的通用单输入和双输入单分子逻辑门

Stable Universal 1- and 2-Input Single-Molecule Logic Gates.

作者信息

Liu Ran, Han Yingmei, Sun Feng, Khatri Gyan, Kwon Jaesuk, Nickle Cameron, Wang Lejia, Wang Chuan-Kui, Thompson Damien, Li Zong-Liang, Nijhuis Christian A, Del Barco Enrique

机构信息

Department of Physics, University of Central Florida, Orlando, FL, 32816, USA.

Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore, 117543, Singapore.

出版信息

Adv Mater. 2022 Jul;34(26):e2202135. doi: 10.1002/adma.202202135. Epub 2022 May 22.

Abstract

Controllable single-molecule logic operations will enable development of reliable ultra-minimalistic circuit elements for high-density computing but require stable currents from multiple orthogonal inputs in molecular junctions. Utilizing the two unique adjacent conductive molecular orbitals (MOs) of gated Au/S-(CH ) -Fc-(CH ) -S/Au (Fc = ferrocene) single-electron transistors (≈2 nm), a stable single-electron logic calculator (SELC) is presented, which allows real-time modulation of output current as a function of orthogonal input bias (V ) and gate (V ) voltages. Reliable and low-voltage (ǀV ǀ ≤ 80 mV, ǀV ǀ ≤ 2 V) operations of the SELC depend upon the unambiguous association of current resonances with energy shifts of the MOs (which show an invariable, small energy separation of ≈100 meV) in response to the changes of voltages, which is confirmed by electron-transport calculations. Stable multi-logic operations based on the SELC modulated current conversions between the two resonances and Coulomb blockade regimes are demonstrated via the implementation of all universal 1-input (YES/NOT/PASS_1/PASS_0) and 2-input (AND/XOR/OR/NAND/NOR/INT/XNOR) logic gates.

摘要

可控单分子逻辑运算将有助于开发用于高密度计算的可靠超简约电路元件,但需要分子结中多个正交输入提供稳定电流。利用门控Au/S-(CH₂)ₙ-Fc-(CH₂)ₙ-S/Au(Fc = 二茂铁)单电子晶体管(≈2纳米)的两个独特相邻导电分子轨道(MOs),展示了一种稳定的单电子逻辑计算器(SELC),它允许根据正交输入偏置(V₁)和栅极(V₂)电压实时调制输出电流。SELC可靠且低电压(|V₁| ≤ 80毫伏,|V₂| ≤ 2伏)的运行取决于电流共振与MOs能量位移的明确关联(MOs能量位移显示出≈100毫电子伏的不变小能量间隔),以响应电压变化,这一点通过电子输运计算得到证实。通过实现所有通用的1输入(是/非/通过1/通过0)和2输入(与/异或/或/与非/或非/蕴含/同或)逻辑门,展示了基于SELC在两个共振和库仑阻塞区域之间调制电流转换的稳定多逻辑运算。

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