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[HTML][HTML] Molybdenum disulfide as hydrogen evolution catalyst: From atomistic to materials structure and electrocatalytic performance
Hydrogen production via water electrolysis defines the novel energy vector for achieving a
sustainable society. However, the true progress of the given technology is hindered by the …
sustainable society. However, the true progress of the given technology is hindered by the …
2D layered material alloys: Synthesis and application in electronic and optoelectronic devices
J Yao, G Yang - Advanced Science, 2022 - Wiley Online Library
Abstract 2D layered materials (2DLMs) have come under the limelight of scientific and
engineering research and broke new ground across a broad range of disciplines in the past …
engineering research and broke new ground across a broad range of disciplines in the past …
Role of Ti3C2 MXene as Prominent Schottky Barriers in Driving Hydrogen Production through Photoinduced Water Splitting: A Comprehensive Review
Photocatalytic hydrogen generation through the utilization of the Ti3C2 MXene photocatalyst
offers the best alternatives to provide clean, sustainable, and renewable energy sources …
offers the best alternatives to provide clean, sustainable, and renewable energy sources …
Unveiling Charge‐Transport Mechanisms in Electronic Devices Based on Defect‐Engineered MoS2 Covalent Networks
Device performance of solution‐processed 2D semiconductors in printed electronics has
been limited so far by structural defects and high interflake junction resistance. Covalently …
been limited so far by structural defects and high interflake junction resistance. Covalently …
Defect engineering of MoS2-based materials as supercapacitors electrode: A mini review
L Wang, J Wu, X Wang, S Fu - Journal of Alloys and Compounds, 2023 - Elsevier
Layered molybdenum disulfide (MoS 2) has attracted increasing attention for
supercapacitors in recent years because of large specific surface area, appropriate …
supercapacitors in recent years because of large specific surface area, appropriate …
Point Defect Limited Carrier Mobility in 2D Transition Metal Dichalcogenides
2D transition metal dichalcogenide (MX2) semiconductors are promising candidates for
electronic and optoelectronic applications. However, they have relatively low charge carrier …
electronic and optoelectronic applications. However, they have relatively low charge carrier …
Electrical role of sulfur vacancies in MoS2: Transient current approach
J Lee, MJ Kim, BG Jeong, C Kwon, Y Cha… - Applied Surface …, 2023 - Elsevier
The electrical role of sulfur vacancies in MoS 2 has attracted considerable attention, and
numerous studies have attempted to reveal their characteristics in a donor state, an acceptor …
numerous studies have attempted to reveal their characteristics in a donor state, an acceptor …
Valleytronics in two-dimensional materials with line defect
H Tian, C Ren, S Wang - Nanotechnology, 2022 - iopscience.iop.org
The concept of valley originates from two degenerate but nonequivalent energy bands at the
local minimum in the conduction band or local maximum in the valence band. Manipulating …
local minimum in the conduction band or local maximum in the valence band. Manipulating …
Reducing Atomic Defects in 2D Transition Metal Dichalcogenides
Y Zhang, J Wang, H Nong, L He, S Li… - Advanced Functional …, 2024 - Wiley Online Library
Preparing high‐quality 2D semiconductors represented by transition metal dichalcogenides
(TMDCs) is of great importance for the next‐generation devices. However, currently …
(TMDCs) is of great importance for the next‐generation devices. However, currently …
Anomalous electrical conductivity change in MoS2 during the transition from the amorphous to crystalline phase
Transition metal dichalcogenides exhibit unique properties, which make them interesting for
fundamental studies and for applications in many devices. Here, we report on the …
fundamental studies and for applications in many devices. Here, we report on the …