材料科学
钙钛矿(结构)
异质结
光电子学
纳米技术
炸薯条
逻辑门
电子工程
电信
化学工程
计算机科学
工程类
作者
Hongfei Xie,Sisi Chen,Yang XU,Qi Pan,Tangyue Xue,Zeying Zhang,Yuming Hu,Jimei Chi,Lijun Cheng,Bingda Chen,Yanlin Song,Meng Su
标识
DOI:10.1002/adma.202404740
摘要
The use of optoelectronic devices for high-speed and low-power data transmission and computing has been considered in the next-generation logic circuits. Heterostructures, which can generate and transmit photoresponse signals dealing with different input lights, are highly desirable for optoelectronic logic gates. Here, the printed on-chip perovskite heterostructures are demonstrated to achieve optical-controlled "AND" and "OR" optoelectronic logic gates. Perovskite heterostructures are printed with a high degree of control over composition, site, and crystallization. Different regions of the printed perovskite heterostructures exhibit distinguishable photoresponse to varied wavelengths of input lights, which can be utilized to achieve optical-controlled logic functions. Correspondingly, parallel operations of the two logic gates ("AND" and "OR") by way of choosing the output electrodes under the single perovskite heterostructure. Benefiting from the uniform crystallization and strict alignment of the printed perovskite heterostructures, the integrated 3×3 pixels all exhibit 100% logic operation accuracy. Finally, optical-controlled logic gates responding to multi-wavelength light can be printed on the predesigned micro-electrodes as the on-chip integrated circuits. This printing strategy allows for integrating heterostructure-based optical and electronic devices from a unit-scale device to a system-scale device. This article is protected by copyright. All rights reserved.
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