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Emerging Versatile Two‐Dimensional MoSi2N4 Family
The discovery of 2D layered MoSi2N4 and WSi2N4 without knowing their 3D parents by
chemical vapor deposition in 2020 has stimulated extensive studies of 2D MA2Z4 system …
chemical vapor deposition in 2020 has stimulated extensive studies of 2D MA2Z4 system …
A new family of septuple-layer 2D materials of MoSi2N4-like crystals
T Latychevskaia, DA Bandurin… - Nature Reviews Physics, 2024 - nature.com
Recently synthesized MoSi2N4 is the first septuple-layer two-dimensional material, which
does not naturally occur as a layered crystal, and has been obtained with chemical vapour …
does not naturally occur as a layered crystal, and has been obtained with chemical vapour …
Unusually high thermal conductivity in suspended monolayer MoSi2N4
C He, C Xu, C Chen, J Tong, T Zhou, S Sun… - Nature …, 2024 - nature.com
Two-dimensional semiconductors with high thermal conductivity and charge carrier mobility
are of great importance for next-generation electronic and optoelectronic devices. However …
are of great importance for next-generation electronic and optoelectronic devices. However …
Monolayer : An indirect-gap semiconductor with ultra-high carrier mobility
C Lu, C Cui, J Zuo, H Zhong, S He, W Dai, X Zhong - Physical Review B, 2023 - APS
The recently synthesized MoSi 2 N 4 monolayer [Science 369, 670 (2020) 0036-8075
10.1126/science. abb7023] exhibit outstanding environmental stability, moderate band gap …
10.1126/science. abb7023] exhibit outstanding environmental stability, moderate band gap …
Recent advances in thermoelectric performance by incorporating graphene-based materials for energy harvesting
E Muchuweni, ET Mombeshora - Renewable Energy Focus, 2023 - Elsevier
Thermoelectric generators (TEGs) have attracted considerable research attention in
addressing the current global energy crisis and environmental concerns associated with …
addressing the current global energy crisis and environmental concerns associated with …
A theoretical prediction of thermoelectrical properties for novel two-dimensional monolayer ZrSn 2 N 4
Nowadays, there has been significant interest in two-dimensional (2D) materials for
thermoelectrical (TE) application due to their intrinsic high electrical conductivity and weak …
thermoelectrical (TE) application due to their intrinsic high electrical conductivity and weak …
Two-Dimensional MoSi2N4 Family: Progress and Perspectives Form Theory
Recently, a new two-dimensional (2D) layered MoSi2N4 has been successfully synthesized
by chemical vapor deposition without knowing the 3D counterparts [Science 2020, 369 …
by chemical vapor deposition without knowing the 3D counterparts [Science 2020, 369 …
MoSi2N4/WO2 van der Waals heterostructure: Theoretical prediction of an effective strategy to boost MoSi2N4′ s nanoelectronic and optoelectronic applications
G Yang, Y Zhou - Computational Materials Science, 2024 - Elsevier
Abstract Recently, MoSi 2 N 4 layer, a new species of two-dimensional (2D) materials, has
attracted considerable attention. Nanoelectronic and optoelectronic applications are two of …
attracted considerable attention. Nanoelectronic and optoelectronic applications are two of …
Unraveling the emerging photocatalytic, thermoelectric, and topological properties of intercalated architecture MZX (M= Ga and In; Z= Si, Ge and Sn; X= S, Se, and Te) …
R **ong, X Chen, Y Zhang, Z Cui, J Wen, C Wen… - Langmuir, 2023 - ACS Publications
The continuous advancements in studying two-dimensional (2D) materials pave the way for
groundbreaking innovations across various industries. In this study, by employing density …
groundbreaking innovations across various industries. In this study, by employing density …
XMoSiN2 (X= S, Se, Te): A novel 2D Janus semiconductor with ultra-high carrier mobility and excellent thermoelectric performance
Two-dimensional (2D) semiconductor MoSi2N4 is a potential candidate for thermoelectric
materials due to its high Seebeck coefficient. However, its high lattice thermal conductivity …
materials due to its high Seebeck coefficient. However, its high lattice thermal conductivity …