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Can I read Graphene-Cobalt chromate ceramics composite for humidity sensor Applications on EtoBox?
Graphene-Cobalt chromate ceramics composite for humidity sensor Applications by Jagadeesha Angadi V; B. Chethan; Vinayak Pattar; N.B. Shigihalli; Supriya A. Patil; Mohd Ubaidullah; Satbir S. Sehgal; Chander Prakash; Manjuantha S O; Manjunatha K is a Materials Science article available to read on EtoBox.
What is Graphene-Cobalt chromate ceramics composite for humidity sensor Applications about?
The fabrication of monolayer of carbon atoms(rGO) composites is the cause of their poor performance in humidity sensors, which requires immediate investigation. An attempt is made here to construct a cobalt chromate(CCR)-rGO composite. For large-scale manufacture of CCR-rGo composite, the technique is simple, cost-effective, and uncomplicated. The increased room temperature operable humidity sensing responsiveness of rGo-CCR composite is explored in this study. We have adopted a simple method for producing reduced graphene oxide(rGO) on a wide scale has been discovered. For the first time, this has been accomplished using the combustion process. The sugar solution (ten grams of sugar and thirty millilitres of distilled water) was held at 450 °C in the muffle furnace for ten minutes. The current techniques for synthesizing rGO are straightforward and environmentally safe because no hazardous chemicals, metal catalysts, or solvents are used. Furthermore, this technology provides a low-cost, high-yielding route for preparing rGO. Further CCR were synthesized by solution combustion method. Crystallinity, phase and structural analysis are carried out using X-ray diffraction (XRD). The S
Who reads Graphene-Cobalt chromate ceramics composite for humidity sensor Applications?
It is typically read by researchers, students, and practitioners in Materials Science.
- Author
- Jagadeesha Angadi V; B. Chethan; Vinayak Pattar; N.B. Shigihalli; Supriya A. Patil; Mohd Ubaidullah; Satbir S. Sehgal; Chander Prakash; Manjuantha S O; Manjunatha K
- Publisher
- Elsevier BV
- Published
- 2023
- Language
- EN
- Field
- Materials Science (Physical Sciences)