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DTSTART;TZID=America/Los_Angeles:20260408T113000
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UID:9178-1775647800-1775651400@www.quantumx.washington.edu
SUMMARY:Chemistry Seminar: Prof. Colin Heyes
DESCRIPTION:Event interval: Single day eventCampus location: Chemistry Building (CHB)Campus room: CHB 102Accessibility Contact: chem59x@uw.eduEvent Types: Academics\,Lectures/SeminarsLink: https://cheyes.hosted.uark.edu/"TBD"Professor Colin Heyes – Department of Chemistry and Biochemistry\, University of ArkansasHost: Tristan Shi
URL:https://www.quantumx.washington.edu/calendar/chemistry-seminar-prof-colin-heyes/
LOCATION:Chemistry Building (CHB)
CATEGORIES:Chemistry
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DTSTART;TZID=America/Los_Angeles:20260415T113000
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DTSTAMP:20260415T174617Z
CREATED:20260413T220731Z
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UID:10196-1776252600-1776256200@www.quantumx.washington.edu
SUMMARY:Chemistry Seminar: Prof. Andrew M. Rappe
DESCRIPTION:Event interval: Single day eventCampus location: Chemistry Building (CHB)Campus room: CHB 102Accessibility Contact: gingerrc@uw.eduEvent Types: Academics\,Lectures/Seminars"Hybrid Perovskites as a novel platform for optoelectronics"Professor Andrew M. Rappe – Department of Chemistry\, University of PennsylvaniaHost: David GingerThe perovskite crystal structure hosts a wealth of intriguing properties\, and the renaissance of interest in halide (and hybrid organic-inorganic) perovskites (HOIPs) has further broadened the palette of exciting physical phenomena. Breakthroughs in HOIP synthesis\, characterization\, and solar cell design have led to remarkable increases in reported photovoltaic efficiency. However\, the observed long carrier lifetime and PV performance have eluded comprehensive physical justification. The hybrid perovskites serve as an enigmatic crossroads of physics. Concepts from crystalline band theory\, molecular physics\, liquids\, and phase transitions have been applied with some success\, but the observations of HOIPs make it clear that none of these conceptual frameworks completely fits. In this talk\, recent theoretical progress in understanding HOIPs will be reviewed and integrated with experimental findings. The large amplitude motions of HOIPs will be highlighted\, including ionic diffusion\, anharmonic phonons\, and dynamic incipient order on various length and time scales. The intricate relationships between correlated structural fluctuations\, polar order\, and excited charge carrier dynamics will also be discussed\, along with implications for materials design of next-generation optoelectronic materials design.
URL:https://www.quantumx.washington.edu/calendar/chemistry-seminar-prof-andrew-m-rappe/
LOCATION:Chemistry Building (CHB)
CATEGORIES:Chemistry
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