Richard E. Eitel

Affiliations: 
Chemical and Materials Engineering University of Kentucky, Lexington, KY 
Area:
Materials Science Engineering
Google:
"Richard Eitel"

Parents

Sign in to add mentor
Tom R. Shrout grad student 2003 Penn State (Physics Tree)
 (Novel piezoelectric ceramics: Development of high temperature, high performance piezoelectrics on the basis of structure.)
BETA: Related publications

Publications

You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect.

Luo J, Eitel R. (2018) Aqueous tape casting of Al2O3 for multilayer co-fired ceramic based microfluidic chips with translucent windows Ceramics International. 44: 3488-3491
Luo J, Eitel R. (2017) Sintering behavior and biocompatibility of a low temperature co-fired ceramic for microfluidic biosensors International Journal of Applied Ceramic Technology. 14: 99-107
Luo J, Eitel R. (2017) An Integrated Low Temperature Co-Fired Ceramic-Based Clark-Type Oxygen Sensor Ieee Sensors Journal. 17: 1590-1595
Luo J, Dziubla T, Eitel R. (2017) A low temperature co-fired ceramic based microfluidic Clark-type oxygen sensor for real-time oxygen sensing Sensors and Actuators B: Chemical. 240: 392-397
Luo J, Eitel RE. (2014) A biocompatible low temperature co-fired ceramic substrate for biosensors International Journal of Applied Ceramic Technology. 11: 436-442
Luo J, Eitel R. (2013) Biocompatible low temperature co-fired ceramic for biosensors Additional Conferences (Device Packaging, Hitec, Hiten, & Cicmt). 2013: 000183-000186
Zhang W, Eitel RE. (2013) An integrated multilayer ceramic piezoelectric micropump for microfluidic systems Journal of Intelligent Material Systems and Structures. 24: 1637-1646
Zhang W, Eitel RE. (2013) Sintering behavior, properties, and applications of co-fired piezoelectric/low temperature co-fired ceramic (PZT-SKN/LTCC) multilayer ceramics International Journal of Applied Ceramic Technology. 10: 354-364
Zhang W, Eitel RE. (2012) Biostability of low-temperature co-fired ceramic materials for microfluidic and biomedical devices International Journal of Applied Ceramic Technology. 9: 60-66
Mercke WL, Dziuhla T, Eitel RE, et al. (2012) Biocompatibility evaluation of human umbilical vein endothelial cells directly onto low-temperature co-fired ceramic materials for microfluidic applications Proceedings - Imaps/Acers 8th International Conference and Exhibition On Ceramic Interconnect and Ceramic Microsystems Technologies, Cicmt 2012. 549-556
See more...