Academic literature on the topic 'Molybdenum Microheaters'

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Journal articles on the topic "Molybdenum Microheaters"

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Rajeswara Rao, Langoju Lakshmi, Monoj Kumar Singha, Kiruba Mangalam Subramaniam, Nagaraju Jampana, and Sundarrajan Asokan. "Molybdenum Microheaters for MEMS-Based Gas Sensor Applications: Fabrication, Electro-Thermo-Mechanical and Response Characterization." IEEE Sensors Journal 17, no. 1 (2017): 22–29. http://dx.doi.org/10.1109/jsen.2016.2621179.

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Langoju, Lakshmi Rajeswara Rao, Monoj Kumar Singha, Kiruba Mangalam Subramaniam, and Sundarrajan Asokan. "Optimization of low resistivity molybdenum thin films for high-temperature microheater applications." Superlattices and Microstructures 156 (August 2021): 106971. http://dx.doi.org/10.1016/j.spmi.2021.106971.

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Tavakkoli Gilavan, Mehraneh, Oluwawemimo Igun, Md Ali Akbar, Shayan Jahangirifard, Peter Kruse, and Ponnambalam Ravi Selvaganapathy. "Patterning of Nano and Micromaterials on Polymer Substrates Using Spraying, Selective Laser Treatment, and Adhesive Delamination for Sensing Applications." Advanced Materials Interfaces, June 19, 2025. https://doi.org/10.1002/admi.202500027.

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AbstractIntegrating conductive nanomaterials with polymer substrates in a scalable and low‐cost way is crucial for developing flexible electronics. This work presents a scalable process for integrating high‐quality nanomaterials with polymer films to fabricate flexible electrical devices by combining simple yet effective techniques. Various conductive patterns on polymer substrates are successfully created by utilizing a combination of nanomaterial spraying, laser treatment, and adhesive delamination. The laser treatment embeds the sprayed nanoparticles onto the polymer surface by partially me
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Dissertations / Theses on the topic "Molybdenum Microheaters"

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Rao, L. LRajeswara. "Design, Fabrication and Characterization of Metal Oxide Semiconductor Based MEMS Gas Sensors for Carbon Monoxide Detection." Thesis, 2017. https://etd.iisc.ac.in/handle/2005/4788.

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In recent years, intense efforts have been made towards the development of miniaturized gas-sensing devices for hazardous gas detection. Carbon monoxide, which is a result of incomplete combustion, is a colourless, odourless, poisonous, explosive and highly toxic gas. It binds with haemoglobin to form carboxyhemoglobin, which reduces the oxygen-carrying capacity of blood and, finally, leads to death. Hence, there is a need to develop a portable and cost-effective gas senor to detect low concentrations of CO gas. MEMS-based metal oxide semiconductor gas sensors offer several advantages compared
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Conference papers on the topic "Molybdenum Microheaters"

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Rao, L. L. Rajeswara, M. K. Singha, M. S. Kiruba, and J. Nagaraju. "Design and electro-thermo-mechanical analysis of high temperature molybdenum microheaters for exhaust gas sensing applications." In 2015 International Conference on Smart Technologies and Management  for Computing, Communication, Controls, Energy and Materials (ICSTM). IEEE, 2015. http://dx.doi.org/10.1109/icstm.2015.7225489.

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