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Rui Cao

Researcher at Shenzhen University

Publications -  43
Citations -  2503

Rui Cao is an academic researcher from Shenzhen University. The author has contributed to research in topics: Photodetector & Responsivity. The author has an hindex of 16, co-authored 35 publications receiving 1604 citations. Previous affiliations of Rui Cao include Southern University of Science and Technology & Macau University of Science and Technology.

Papers
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Broadband Nonlinear Photonics in Few-Layer MXene Ti3C2Tx (T = F, O, or OH)

TL;DR: In this paper, the authors systematically characterized the nonlinear optical response of MXene Ti3C2Tx nanosheets over the spectral range of 800 nm to 1800 nm, and they demonstrated the efficient broadband light signal manipulating capabilities of the large MXene family.
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Broadband Nonlinear Optical Response in Few-Layer Antimonene and Antimonene Quantum Dots: A Promising Optical Kerr Media with Enhanced Stability

TL;DR: In this paper, a few-layer antimonene (FLA) was synthesized based on electrochemical exfoliation and sonochemical approaches, and the corresponding nonlinear optical response was further investigated at the visible wavelength for the first time.
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Graphene oxide/black phosphorus nanoflake aerogels with robust thermo-stability and significantly enhanced photothermal properties in air

TL;DR: GO/BPNF aerogels with promising bio-related applications, such as photothermal therapy for cancer treatment, are reported, based on graphene oxide and black phosphorus nanoflakes for the first time.
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Black Phosphorus Based All-Optical-Signal-Processing: Toward High Performances and Enhanced Stability

TL;DR: In this article, a few-layer black phosphorus (BP) was synthesized with metal-ion-modification against oxidation and degradation, and then the feasibility of BP-coated microfiber as an optical Kerr switcher and a four-wave-mixing-based wavelength converter was demonstrated.
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Two-Dimensional Tellurium: Progress, Challenges, and Prospects

TL;DR: Physical Properties of the two-dimensional tellurium were discussed in detail, including electrical properties, optical properties, thermoelectric properties, and outstanding environmental stability, and Emerging applications based on atomically thin tellurene flakes were presented, such as photodetector, transistors, piezoelectrics device, modulator, and energy harvesting devices.