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Progress and prospects in transition-metal dichalcogenide research beyond 2D
T Chowdhury, EC Sadler, TJ Kempa - Chemical reviews, 2020 - ACS Publications
This review discusses recent advances and future research priorities in the transition-metal
dichalcogenide (TMD) field. While the community has witnessed tremendous advances …
dichalcogenide (TMD) field. While the community has witnessed tremendous advances …
Graphene-like emerging 2D materials: recent progress, challenges and future outlook
Owing to the unique physical and chemical properties of 2D materials and the great success
of graphene in various applications, the scientific community has been influenced to explore …
of graphene in various applications, the scientific community has been influenced to explore …
Room‐temperature synthesis of 2D Janus crystals and their heterostructures
Janus crystals represent an exciting class of 2D materials with different atomic species on
their upper and lower facets. Theories have predicted that this symmetry breaking induces …
their upper and lower facets. Theories have predicted that this symmetry breaking induces …
Strong intrinsic room-temperature ferromagnetism in freestanding non-van der Waals ultrathin 2D crystals
H Wu, W Zhang, L Yang, J Wang, J Li, L Li… - Nature …, 2021 - nature.com
Control of ferromagnetism is of critical importance for a variety of proposed spintronic and
topological quantum technologies. Inducing long-range ferromagnetic order in ultrathin 2D …
topological quantum technologies. Inducing long-range ferromagnetic order in ultrathin 2D …
Imaging strain-localized excitons in nanoscale bubbles of monolayer WSe2 at room temperature
In monolayer transition-metal dichalcogenides, localized strain can be used to design
nanoarrays of single photon sources. Despite strong empirical correlation, the nanoscale …
nanoarrays of single photon sources. Despite strong empirical correlation, the nanoscale …
Shining new light on multifunctional lanthanide single‐molecule magnets
Single‐molecule magnets (SMMs) are at the forefront of new technological advances in
quantum information processing and spintronics. Despite the recent impressive …
quantum information processing and spintronics. Despite the recent impressive …
2D materials advances: from large scale synthesis and controlled heterostructures to improved characterization techniques, defects and applications
The rise of two-dimensional (2D) materials research took place following the isolation of
graphene in 2004. These new 2D materials include transition metal dichalcogenides, mono …
graphene in 2004. These new 2D materials include transition metal dichalcogenides, mono …
An Equalized Flow Velocity Strategy for Perovskite Colloidal Particles in Flexible Perovskite Solar Cells
C Gong, C Wang, X Meng, B Fan, Z **ng… - Advanced …, 2024 - Wiley Online Library
The non‐uniform distribution of colloidal particles in perovskite precursor results in an
imbalanced response to the shear force during flexible printing process. Herein, it is …
imbalanced response to the shear force during flexible printing process. Herein, it is …
Recent development in defects engineered photocatalysts: an overview of the experimental and theoretical strategies
Z Zafar, S Yi, J Li, C Li, Y Zhu, A Zada… - Energy & …, 2022 - Wiley Online Library
Recently, defect architectured photocatalysis is proved to be the most versatile choice for
high solar to chemical energy conversion processes. Defect engineering strategies are of …
high solar to chemical energy conversion processes. Defect engineering strategies are of …
Subcycle contact-free nanoscopy of ultrafast interlayer transport in atomically thin heterostructures
Tunnelling is one of the most fundamental manifestations of quantum mechanics. The recent
advent of lightwave-driven scanning tunnelling microscopy has revolutionized ultrafast …
advent of lightwave-driven scanning tunnelling microscopy has revolutionized ultrafast …