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Research interests
Professor Reaney has produced many key texts on microwave dielectrics and piezoelectrics and is currently developing lead-free ceramics for actuators and sensors and researching materials for 5G applications.
His group focuses on the development of sustainable functional ceramics and as part of this initiative he has published several papers on their comparative life cycle assessment. He is also developing ultra-low sintering technologies for ceramics to reduce the carbon footprint of their manufacture.
Research highlights include:
Patented a multilayer GeoHelix® antenna for multiband for satellite downlink
Discovery of a lead zirconate structured antiferroelectric based on Nd-doped BiFeO3
Patented a high-temperature lead-free piezoelectric for multilayer actuators
Developed a new class of high energy density ceramics and multilayers
Established cold sintering technology for microwave ceramics and antennas
Discovered a new tunable dielectric based on Pb-niobate pyrochlore with superior properties to existing compositions
Professor Reaney has produced many key texts on microwave dielectrics and piezoelectrics and is currently developing lead-free ceramics for actuators and sensors and researching materials for 5G applications.
His group focuses on the development of sustainable functional ceramics and as part of this initiative he has published several papers on their comparative life cycle assessment. He is also developing ultra-low sintering technologies for ceramics to reduce the carbon footprint of their manufacture.
Research highlights include:
Patented a multilayer GeoHelix® antenna for multiband for satellite downlink
Discovery of a lead zirconate structured antiferroelectric based on Nd-doped BiFeO3
Patented a high-temperature lead-free piezoelectric for multilayer actuators
Developed a new class of high energy density ceramics and multilayers
Established cold sintering technology for microwave ceramics and antennas
Discovered a new tunable dielectric based on Pb-niobate pyrochlore with superior properties to existing compositions
研究兴趣
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Athanasios Goulas, Tsz Yan Chow, Tom Whitaker,Ian M. Reaney,Bala Vaidhyanathan,Will Whittow, Daniel S. Engstrøm
Additive Manufacturingpp.104390, (2024)
Ademola J. Adetona,Igor Levin,Nicola Morley,Oday Hussein, Beatia In Siame,Brant Walkley,Derek C. Sinclair,Ian M. Reaney
JOURNAL OF THE EUROPEAN CERAMIC SOCIETYno. 16 (2024)
Advanced energy materials (2024)
Journal of the European Ceramic Societyno. 5 (2024): 2989-2997
JOURNAL OF THE AMERICAN CERAMIC SOCIETYno. 6 (2024): 3716-3723
Materials science and engineering B, Solid-state materials for advanced technology/Materials science & engineering B, Solid-state materials for advanced technology (2023): 116632-116632
IMAPS symposia and conferencesno. HiTEN (2023)
ACS APPLIED MATERIALS & INTERFACESno. 15 (2023): 19129-19136
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作者统计
#Papers: 524
#Citation: 26503
H-Index: 90
G-Index: 142
Sociability: 7
Diversity: 1
Activity: 3
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