Nanochitosan/carboxymethyl cellulose/TiO2 biocomposite for visible-light-induced photocatalytic degradation of crystal violet dye
Author:
Publisher
Elsevier BV
Subject
General Environmental Science,Biochemistry
Reference55 articles.
1. Carbonaceous nanomaterials as effective and efficient platforms for removal of dyes from aqueous systems;Ahlawat;Environ. Res.,2020
2. Effective adsorption and photodegradation of methyl orange by TiO2-chitosan supported glass plate photocatalysis;Amir;Mater. Technol.,2017
3. An eco-friendly highly stable and efficient Ni-C-S codoped wurtzite ZnO nanoplate: a smart photocatalyst for the quick removal of food dye under solar light irradiation;Aruna devi;Separ. Sci. Technol.,2018
4. Investigation of the drastic improvement of photocatalytic degradation of Congo red by monoclinic Cd, Ba-CuO nanoparticles and its antimicrobial activities;Arunadevi;Surfaces and Interfaces,2018
5. Chitosan/TiO2 composite membrane improves proliferation and survival of L929 fibroblast cells: Application in wound dressing and skin regeneration;Behera;Int. J. Biol. Macromol.,2017
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