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Dive into the research topics where Vidya Ramaswamy is active.

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Featured researches published by Vidya Ramaswamy.


Archive | 2011

Hierarchical Nanoceramics for Industrial Process Sensors

Ruud, James, A.; Brosnan, Kristen, H.; Todd Striker; Vidya Ramaswamy; Aceto, Steven, C.; Yan Gao; Willson, Patrick, D.; Mohan Manoharan; Armstrong, Eric, N., Wachsman, Eric, D.; Chi-Chang Kao

This project developed a robust, tunable, hierarchical nanoceramics materials platform for industrial process sensors in harsh-environments. Control of material structure at multiple length scales from nano to macro increased the sensing response of the materials to combustion gases. These materials operated at relatively high temperatures, enabling detection close to the source of combustion. It is anticipated that these materials can form the basis for a new class of sensors enabling widespread use of efficient combustion processes with closed loop feedback control in the energy-intensive industries. The first phase of the project focused on materials selection and process development, leading to hierarchical nanoceramics that were evaluated for sensing performance. The second phase focused on optimizing the materials processes and microstructures, followed by validation of performance of a prototype sensor in a laboratory combustion environment. The objectives of this project were achieved by: (1) synthesizing and optimizing hierarchical nanostructures; (2) synthesizing and optimizing sensing nanomaterials; (3) integrating sensing functionality into hierarchical nanostructures; (4) demonstrating material performance in a sensing element; and (5) validating material performance in a simulated service environment. The project developed hierarchical nanoceramic electrodes for mixed potential zirconia gas sensors with increased surface area and demonstrated tailored electrocatalytic activity operable at high temperatures enabling detection of products of combustion such as NOx close to the source of combustion. Methods were developed for synthesis of hierarchical nanostructures with high, stable surface area, integrated catalytic functionality within the structures for gas sensing, and demonstrated materials performance in harsh lab and combustion gas environments.


Archive | 2006

Membrane structure and method of making

Vidya Ramaswamy; Seth Thomas Taylor; James Anthony Ruud; Melissa Suzanne Sander; Anthony Yu-Chung Ku; Mohan Manoharan


Archive | 2006

Nanostructure arrays and methods for forming same

Loucas Tsakalakos; Bastiaan Arie Korevaar; Joleyn Balch; Jody Fronheiser; Reed Roeder Corderman; Fred Sharifi; Vidya Ramaswamy


Archive | 2006

Gas separator apparatus

James Anthony Ruud; Michael John Bowman; Kalya Vijaya Sarathy; Mohan Manoharan; Anthony Yu-Chung Ku; Vidya Ramaswamy; Patrick Roland Lucien Malenfant


Sensors and Actuators B-chemical | 2011

NOx adsorption behavior of LaFeO3 and LaMnO3+δ and its influence on potentiometric sensor response

Eric N. Armstrong; Todd-Michael Striker; Vidya Ramaswamy; James Anthony Ruud; Eric D. Wachsman


Archive | 2005

Functionalized inorganic membranes for gas separation

Anthony Yu-Chung Ku; James Anthony Ruud; Jennifer Lynn Molaison; Louis Andrew Schick; Vidya Ramaswamy


Archive | 2006

Methods and Apparatus for Carbon Dioxide Removal from a Fluid Stream

Wei Wei; James Anthony Ruud; Anthony Yu-Chung Ku; Vidya Ramaswamy; Ke Liu


Sensors and Actuators B-chemical | 2013

Effect of nanocomposite Au–YSZ electrodes on potentiometric sensor response to NOx and CO☆

Todd Striker; Vidya Ramaswamy; Eric N. Armstrong; Patrick Daniel Willson; Eric D. Wachsman; James Anthony Ruud


Archive | 2008

Membranes for separation of carbon dioxide

Anthony Yu-Chung Ku; James Anthony Ruud; Vidya Ramaswamy; Patrick Daniel Willson; Yan Gao


Archive | 2009

Membranes suitable for gas separation, and related articles and processes

Geoffrey Mark Eadon; Anthony Yu-Chung Ku; Vidya Ramaswamy

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