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Computing with molecular memristors
Nature Electronics ( IF 33.7 ) Pub Date : 2024-10-21 , DOI: 10.1038/s41928-024-01285-y
Matthew Parker

The memristors consist of two gold electrodes and a 60-nm-thick molecular film of an azo-aromatic complex centred on a ruthenium atom. Precise kinetic control between thermodynamically stable molecular electronic states with different resistances allowed the memristor to access thousands of analogue conductance levels. A 64 × 64 crossbar array of the memristors was used to perform inverse Fourier transforms of astronomical image data, performing this matrix–matrix multiplication task with 104 fewer operations than a typical digital computer.

Original reference: Nature 633, 560–566 (2024)



中文翻译:


使用分子忆阻器进行计算



忆阻器由两个金电极和一个以钌原子为中心的偶氮-芳香族络合物的 60 nm 厚分子膜组成。具有不同电阻的热力学稳定分子电子态之间的精确动力学控制使忆阻器能够获得数千个模拟电导水平。忆阻器的 64 × 64 交叉条阵列用于对天文图像数据进行逆傅里叶变换,执行此矩阵-矩阵乘法任务时,比典型的数字计算机少 104 次操作。


原始参考资料:Nature633, 560–566 (2024)

更新日期:2024-10-21
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