About
The current research activities are in the structural, morphological, optical and sensing properties of metal oxide nano-materials. The main focus is on the development of gas sensors to detect various volatile organic compounds.
Employment
Employment history is unavailable.
Education
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Baselius College Master of Science in Physics2016 - 2018
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Mar Thoma College Bachelor of Science in Physics2013 - 2018
Projects & Funding
Projects & funding information is unavailable.
Publications (9)
- Gas-Sensing Mechanisms and Performances of MXenes and MXene-Based Heterostructures Save
- Hole concentration modulated gas sensor for selective detection of 2-methoxy ethanol Save
- Tailoring on p-type conductivity of nickel oxide nanostructures by palladium for the detection of 2-methoxy ethanol Save
- Tuning the p-type conductivity of NiO for the room temperature formaldehyde detection Save
- FexZn1-xOy as room temperature dual sensor for formaldehyde and ammonia gas detection Save
- Structural, morphological and optical aspects of novel synthesized pristine and hafnium doped nickel oxide nanoparticles Save
- Manganese doped nickel oxide as room temperature gas sensor for formaldehyde detection Save
- A review on resistive-based gas sensors for the detection of volatile organic compounds using metal-oxide nanostructures Save
- A CRITICAL REVIEW ON RECENT ADVANCEMENTS AND CRUCIAL ASPECTS OF ENZYMATIC AND NON-ENZYMATIC CHOLESTEROL BIOSENSORS Save