Anomalous CuCrP 2 S 6 / WSe 2 interface enabled two‐dimensional programmable homojunction for self‐powered photodetection and complex optoelectronic logics
Rattachement africain : cn, sg. Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
Abstract Ferroelectric materials hold great potential for modulating two‐dimensional (2D) materials to achieve electrically tunable homojunction (ETH). However, ETH based on conventional ferroelectrics encounters significant challenges attributed to the surface with dangling bonds and the associated depolarization field. Here, we introduce a novel 2D ETH device based on the anomalous interfacial effect between 2D layered ferroelectric CuCrP 2 S 6 and ambipolar WSe 2 , creating a versatile platform for nonvolatile memory and high‐performance optoelectronic applications. The device capitalizes on the realization of ETH through a localized doping strategy facilitated by ferroelectric polarization‐assisted charge trapping. When modulated to a p–n junction diode, the device showcases superior rectifying characteristics and high‐performance self‐powered photodetection, with a highest responsivity over 0.14 A·W −1 . Moreover, the nonvolatile ETH device enables a single device to implement complex optoelectronic logics of exclusive OR (XOR), OR, and not implication (NIMP) that can be reconfigured by light illumination. Compared to the traditional CMOS‐based logics, the ETH device significantly reduces the transistor number by 87.5%, 83.3%, and 87.5% for XOR, OR, and NIMP, respectively. The successful demonstration of the ETH device based on 2D ferroelectric materials paves the way for the development of advanced and simplified photo‐electric interconnected circuits. image
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.
- Titre Crossref
- Anomalous <scp> CuCrP <sub>2</sub> S <sub>6</sub> </scp> / <scp> WSe <sub>2</sub> </scp> interface enabled two‐dimensional programmable homojunction for self‐powered photodetection and complex optoelectronic logics
- Date Crossref
- 26/06/2025
- Éditeur
- Wiley
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Où se fait cette recherche
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Shanghai University Shanghai Key Laboratory of High Temperature Superconductors pays non établi dans la noticeUniversité ou école supérieure
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National University of Singapore Department of Chemistry pays non établi dans la noticeUniversité ou école supérieure
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Southern University of Science and Technology Department of Physics pays non établi dans la noticeUniversité ou école supérieure
Shanghai Key Laboratory of High Temperature Superconductors — Shanghai University, Department of Chemistry — National University of Singapore et Department of Physics — Southern University of Science and Technology.
Une affiliation ne permet pas de déduire la nationalité d’un auteur.