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Chongjun Zhao

Researcher at East China University of Science and Technology

Publications -  124
Citations -  4305

Chongjun Zhao is an academic researcher from East China University of Science and Technology. The author has contributed to research in topics: Graphene & Oxide. The author has an hindex of 33, co-authored 118 publications receiving 3333 citations. Previous affiliations of Chongjun Zhao include University of Wollongong.

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One-pot solventless preparation of PEGylated black phosphorus nanoparticles for photoacoustic imaging and photothermal therapy of cancer.

TL;DR: Water-soluble and biocompatible PEGylated BP nanoparticles with a high yield were prepared by one-pot solventless high energy mechanical milling technique and exhibit excellent photostability, which makes them suitable as a novel nanotheranostic agent for photoacoustic (PA) imaging and photothermal therapy of cancer.
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Two-Dimensional Titanium Carbide/RGO Composite for High-Performance Supercapacitors

TL;DR: The fabrication of Ti3C2Tx/RGO composites with different proportions of Ti2D titanium carbide and RGO is reported, in which RGO acts as a conductive "bridge" to connect different Ti3 C2Tx blocks and a matrix to alleviate the volume change during charge/discharge process.
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One-step hydrothermal synthesis of 3D petal-like Co9S8/RGO/Ni3S2 composite on nickel foam for high-performance supercapacitors.

TL;DR: It is found that the Co9S8/RGO/Ni3S2/NF electrode exhibits superior capacitive performance with high capability, excellent rate capability, and enhanced electrochemical stability, with 91.7% retention after 1000 continuous charge-discharge cycles even at a high current density of 80 mA cm(-2).
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Facile synthesis of Cu2O/CuO/RGO nanocomposite and its superior cyclability in supercapacitor

TL;DR: In this article, a reduced graphene oxide (RGO)-based nanocomposite of redox counterpart of the oxides of Cu(I)-Cu(II) pair for Faradaic reaction, Cu2O/CuO/RGO, was controllably synthesized through a facile, eco-friendly one-step hydrothermal-assisted redox reaction of elemental Cu and graphene oxide without the addition of any other reagents.
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One-pot hydrothermal synthesis of reduced graphene oxide/Ni(OH)2 films on nickel foam for high performance supercapacitors

TL;DR: In this paper, a reduced graphene oxide (RGO) on nickel hydroxide (Ni(OH)2) film was synthesized via a green and facile hydrothermal approach.