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Partha Khanra

Researcher at University Institute of Engineering and Technology, Panjab University

Publications -  44
Citations -  5853

Partha Khanra is an academic researcher from University Institute of Engineering and Technology, Panjab University. The author has contributed to research in topics: Graphene & Graphene oxide paper. The author has an hindex of 27, co-authored 37 publications receiving 5191 citations. Previous affiliations of Partha Khanra include Korea Institute of Science and Technology & Chonbuk National University.

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Chemical functionalization of graphene and its applications

TL;DR: A detailed review on the advances of chemical functionalization of graphene is presented in this article, where the surface modification of graphene oxide followed by reduction has been carried out to obtain functionalized graphene.
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Recent advances in graphene-based biosensors

TL;DR: This review discusses the application of graphene for the detection of glucose, Cyt-c, NADH, Hb, cholesterol, AA, UA, DA, and H(2)O(2).
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Recent advances in the efficient reduction of graphene oxide and its application as energy storage electrode materials

TL;DR: A detailed description of the improvement in physiochemical properties of reduced GO (RGO) compared to pure GO is provided and new environmentally friendly types of reducing agents that can efficiently remove oxygen functionalities from the surface of GO are proposed.
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A green approach for the reduction of graphene oxide by wild carrot root

TL;DR: A green approach for the reduction of graphene oxide (GO) using wild carrot root is reported in this paper, which avoids the use of toxic and environmentally harmful reducing agents commonly used in the chemical reduction of GO to obtain graphene.
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Preparation of functionalized graphene/linear low density polyethylene composites by a solution mixing method

TL;DR: In this article, the surface modification of graphene and characterization of modified graphene-based polymer composite prepared by solution mixing techniques was examined using X-ray photoelectron spectroscopy.