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Polarity-switchable logic and in-sensor computing with gate-tunable two-dimensional PtTe2/WSe2 heterojunctions

材料科学 光电子学 肖特基势垒 整改 响应度 光伏系统 异质结 肖特基二极管 光电流 光电探测器 逻辑门 和大门 电子工程 二极管 计算机科学 光电二极管 电压 光伏 电气工程 晶体管 图像传感器 光探测 可重构性 神经形态工程学
作者
Jianming Huang,Xuwen Peng,Yue Wang,Kaiyue Zhou,Yonder Berencén,Yong Yan,Tao Zheng,Wenlong Chen,Nengjie Huo,Zhaoqiang Zheng,Bing Wang,An Lei,Duan-Yang Liu,Zuxin Chen,Mengmeng Yang,Wei Gao
出处
期刊:Materials & Design [Elsevier BV]
卷期号:260: 115027-115027 被引量:2
标识
DOI:10.1016/j.matdes.2025.115027
摘要

A Schottky barrier diode based on 1T’-PtTe 2 /2H-WSe 2 exhibited switchable polarity and bidirectional photovoltaic response. The uniform spatial distribution of photocurrent enables in-situ reconfigurability, making it suitable for array construction and responsivity weight calculations. Due to the optoelectronic coupling, the optical logic and in-sensor kernel tunning establish a compelling pathway to enhance intelligent sensing and computing. • A novel PtTe 2 /WSe 2 heterojunction enables in-situ reconfigurability via the bottom-PtTe 2 ′s screening effect and vdWs gap in the top/suspended WSe 2 , suitable for array construction and responsivity weight calculations. • Gate-modulated interfacial electric fields achieve bidirectional rectification (ratio > 10 7 ) and high photovoltaic response (342/-476 mA/W at 635 nm) • The Schottky barrier diode realizes reconfigurable photoelectric logic gates (XNOR, NAND, AND, OR) with reduced transistor count (75–83 % less than CMOS). • Linear responsivity-gate voltage correlation enables in-sensor computing, achieving 97 % accuracy in MNIST classification and wavelength-specific image processing. • Multispectral bidirectional response (405/635/808 nm) unlocks selective processing via spectral component isolation, advancing intelligent vision systems. The pursuit of photodetectors integrating programmable logic operations and on-chip processing has emerged as a transformative frontier, driving innovations in high-performance vision systems. Two-dimensional semimetal/semiconductor heterojunctions offer a unique platform for multifunctional devices due to their van der Waals (vdWs)-coupled sharp interfaces. Here, we fabricate air-stable PtTe 2 /WSe 2 heterojunctions, enabling polarity-switchable conduction, bidirectional rectification (rectification ratio > 10 7 ), and photovoltaic response (342/-476 mA/W at 635 nm) via gate-modulated interfacial electric fields. Due to the bottom-PtTe 2 ′s screening effect and vdWs gap in the top/suspended WSe 2 , the uniform spatial distribution of photocurrent enables in-situ reconfigurability, making it highly suitable for array construction and responsivity weight calculations. Critically, the Schottky barrier diode enables photoelectric logic gate operations (XNOR, NAND, AND, OR) under modulated drain-gate biasing conditions, which indicates the universal programmability by parameterize the high/low-level criteria and increase/decrease the input window. By tuning optoelectronic kernel weight through the linear relationship between responsivity and gate voltage, analog-based in-sensor computing is validated via image classification, achieving 97 % accuracy. The reconfigured weight update further demonstrates capabilities in image sharpening and noise suppression utilizing bidirectional response at 405/635/808 nm wavelengths. Collectively, the codesign establishes a compelling pathway to enhance intelligent sensing and computing.
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