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Cation-eutaxy-enabled III-V-derived van der Waals crystals as memristive semiconductors.

Jihong BaeJongbum WonTaeyoung KimSangjin ChoiHyesoo KimSeung-Hyun Victor OhGiyeok LeeEunsil LeeSijin JeonMinjung KimHyung Wan DoDongchul SeoSungsoon KimYoungjun ChoHyeonsoo KangBokyeong KimHong ChoiJihoon HanTaehoon KimNarguess NematiChanho ParkKyuho LeeHongjae MoonJeongmin KimHyunggeun LeeDaniel W DaviesDohyun KimSeunghun KangByung-Kyu YuJaegyeom KimMin Kyung ChoJee-Hwan BaeSoohyung ParkJungkil KimHa-Jun SungMyung-Chul JungIn ChungHeonjin ChoiHyunyong ChoiDohun KimHionsuck BaikJae-Hyun LeeHeejun YangYunseok KimHong-Gyu ParkYong-Sahm ChoeKee Joo ChangMiso KimDong Won ChunMyung Joon HanAron WalshAloysius SoonJinwoo CheonCheolmin ParkJong-Young KimWooyoung Shim
Published in: Nature materials (2024)
Novel two-dimensional semiconductor crystals can exhibit diverse physical properties beyond their inherent semiconducting attributes, making their pursuit paramount. Memristive properties, as exemplars of these attributes, are predominantly manifested in wide-bandgap materials. However, simultaneously harnessing semiconductor properties alongside memristive characteristics to produce memtransistors is challenging. Herein we prepared a class of semiconducting III-V-derived van der Waals crystals, specifically the H x A 1 - x BX form, exhibiting memristive characteristics. To identify candidates for the material synthesis, we conducted a systematic high-throughput screening, leading us to 44 prospective III-V candidates; of these, we successfully synthesized ten, including nitrides, phosphides, arsenides and antimonides. These materials exhibited intriguing characteristics such as electrochemical polarization and memristive phenomena while retaining their semiconductive attributes. We demonstrated the gate-tunable synaptic and logic functions within single-gate memtransistors, capitalizing on the synergistic interplay between the semiconducting and memristive properties of our two-dimensional crystals. Our approach guides the discovery of van der Waals materials with unique properties from unconventional crystal symmetries.
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