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Recent Developments of Advanced Broadband Photodetectors Based on 2D Materials. [PDF]
Tian Y, Liu H, Li J, Liu B, Liu F.
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Editorial: 2D Materials for Advanced Sensors: Fabrication and Applications. [PDF]
Liao W, Wang L.
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Recent advances in CMOS-compatible synthesis and integration of 2D materials. [PDF]
Katiyar AK, Choi J, Ahn JH.
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Physical Chemistry Chemical Physics, 2022
This themed collection includes a collection of articles providing new insights into 2D materials.
Hui Zhao, Sunmin Ryu
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This themed collection includes a collection of articles providing new insights into 2D materials.
Hui Zhao, Sunmin Ryu
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2D material broadband photodetectors
Nanoscale, 20202D materials and their hybrid structures have high application prospects in broadband photodetection, making them promising complements to traditional schemes.
Jiandong Yao, Guowei Yang
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2D materials-wrapped microparticles
Nature Materials, 2018Colloidal microparticles, with polymer composites encapsulated within two separate 2D material sheets, are fabricated by autoperforation, which can carry chemical and electronic information with long-term instability in complex environments.
Qiyuan, He, Hua, Zhang
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Multielement 2D layered material photodetectors
Nanotechnology, 2021Abstract The pronounced quantum confinement effects, outstanding mechanical strength, strong light–matter interactions and reasonably high electric transport properties under atomically thin limit have conjointly established 2D layered materials (2DLMs) as compelling building blocks towards the next generation ...
Jiandong Yao, Guowei Yang
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2D Photonic Materials and Devices IV, 2021
Here we demonstrate a MoTe2-based photodetector featuring a strong photoresponse (responsivity 0.5 A/W) operating at 1,550 nm in silicon photonics enabled by strain engineering the two-dimensional material. Non-planarized waveguide structures show a bandgap modulation of 0.2 eV, resulting in a large photoresponse in an otherwise photoinactive medium ...
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Here we demonstrate a MoTe2-based photodetector featuring a strong photoresponse (responsivity 0.5 A/W) operating at 1,550 nm in silicon photonics enabled by strain engineering the two-dimensional material. Non-planarized waveguide structures show a bandgap modulation of 0.2 eV, resulting in a large photoresponse in an otherwise photoinactive medium ...
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Accelerating 2D materials discovery
ScienceA large-scale theory-driven approach predicts many new 2D ...
Anupma, Thakur, Babak, Anasori
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