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Contemporary Challenges in van der Waals 2D Semiconductors
- Kirubasankar, Balakrishnan ;
- Mondal, Ashok ;
- Yun, Seokjoon ;
- Daw, Debottam ;
- Xu, Yongshan ;
- Nguyen, Lan Anh T. ;
- Koo, Yeonjeong ;
- Paul, Kamal Kumar ;
- Hong, Heemyoung ;
- Lee, Hyeongwoo ;
- Luo, Yuting ;
- Liu, Kailang ;
- Higashitarumizu, Naoki ;
- Erkensten, Daniel ;
- Heo, Chang Yun ;
- Jeon, Yu-rim ;
- Lee, Taemin ;
- Nam, Dae-hyun ;
- Liu, Xinghui ;
- Kim, Soomin ;
- Duong, Dinh Loc ;
- Wu, Qinke ;
- Akinwande, Deji ;
- Hersam, Mark Christopher ;
- Javey, Ali ;
- Malić, Ermin ;
- Liu, Bilu ;
- Zhai, Tianyou ;
- Yang, Heejun ;
- Park, Kyoung-duck ;
- Kim, Ki-kang ;
- Lee, Younghee
WEB OF SCIENCE
SCOPUS
- Title
- Contemporary Challenges in van der Waals 2D Semiconductors
- Issued Date
- 2026-02
- Citation
- ACS NANO, v.20, no.4, pp.3228 - 3361
- Type
- Article
- Author Keywords
- electronic ; energy conversion ; optoelectronics ; spintronics ; technology transfer ; transition metal dichalcogenides ; 2D layered van der Waals materials ; chemical vapor deposition
- Keywords
- TRANSITION-METAL DICHALCOGENIDES ; EXFOLIATED BLACK PHOSPHORUS ; MOS2 ULTRATHIN NANOSHEETS ; SINGLE-PHOTON EMITTERS ; HYDROGEN EVOLUTION ; OXYGEN REDUCTION ; 2-DIMENSIONAL MATERIALS ; ROOM-TEMPERATURE ; PHOTOCATALYTIC REDUCTION ; MOLYBDENUM-DISULFIDE
- ISSN
- 1936-0851
- Abstract
-
van der Waals (vdW) layered semiconductors have emerged as a unique class of quantum materials distinguished from their bulk counterparts by reduced dielectric screening, strong Coulomb interactions, large exciton binding energies, strong spin-orbit coupling, and pronounced thickness-dependent band structures. These fundamental attributes have enabled the exploration of exotic many-body physics and a broad spectrum of device applications, ranging from field-effect transistors and ferroelectric switches to optoelectronics, magnetic semiconductors, neuromorphic computing, and energy harvesting systems. Despite remarkable advances, critical challenges remain in the controlled synthesis of high-quality crystals, formation of low-resistance contacts, integration of stable and scalable gate dielectrics, and reliable device performance at the wafer scale. In this mega-review, we provide a comprehensive overview of contemporary challenges and future opportunities in vdW-layered semiconductors, structured across nine themes: growth and heterostructures of transition metal dichalcogenides, Ohmic contacts, emerging gate dielectrics, high-performance low-power field-effect transistors (FETs), diluted magnetic semiconductors, plasmonics and exciton propagation, hot-carrier solar cells, bioinspired neuromorphic computing, and electrocatalytic/photocatalytic energy conversion. By consolidating fundamental insights and device-level perspectives, this review aims to chart a roadmap for advancing vdW semiconductors from laboratory-scale discoveries to transformative technologies in electronics, optoelectronics, spintronics, and sustainable energy systems.
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- Publisher
- AMER CHEMICAL SOC
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