Skip to main navigation
Skip to search
Skip to main content
Penn State Home
Help & FAQ
Link opens in a new tab
Search content at Penn State
Home
Researchers
Research output
Research units
Equipment
Grants & Projects
Prizes
Activities
High performance, high temperature perovskite piezoelectrics
Thomas R. Shrout
, Shujun Zhang
, R. Eitel
, C. Stringer
,
Clive A. Randall
Materials Research Institute (MRI)
Materials Science and Engineering
Research output
:
Contribution to conference
›
Paper
›
peer-review
32
Link opens in a new tab
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'High performance, high temperature perovskite piezoelectrics'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
High Performance
100%
PbTiO3
100%
Perovskite
100%
High Temperature
100%
Electrical Conductivity
50%
Commercially Available
50%
Piezoelectric Coefficient
50%
Morphotropic Phase Boundary
50%
High Temperature piezoelectric
50%
Piezoelectric Effect
50%
Actuation
50%
Lithium Niobate
50%
Dielectric Loss
50%
Scientific Community
50%
High-Tc
50%
Curie Temperature
50%
Tolerance Factor
50%
Perovskite Crystal Structure
50%
Broad Temperature Range
50%
Boundary Systems
50%
High Temperature Applications
50%
Maximum Operation Temperature
50%
Industrial Communities
50%
Ti(IV)
50%
Factor Relationship
50%
Engineering
Piezoelectric
100%
Temperature Range
50%
Piezoelectric Coefficient
50%
Piezoelectric Material
50%
Promising Candidate
50%
Fits and Tolerances
50%
Morphotropic Phase Boundary
50%
Actuation
50%
Dielectric Loss
50%
High Temperature Applications
50%
Operation Temperature
50%
Phase Composition
50%
Crystal Structure
50%
Material Science
Piezoelectricity
100%
Titanium Oxide
100%
Electrical Resistivity
33%
Piezoelectric Material
33%
Curie Temperature
33%
Phase Composition
33%
Dielectric Material
33%
Phase Interface
33%
Crystal Structure
33%