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X-WR-CALNAME;VALUE=TEXT:Professor Timothy Swager (MIT) 
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SUMMARY:Professor Timothy Swager (MIT) 
DESCRIPTION:<p>Max Tishler Prize Lecture</p><p><span>Title:<strong> Electronic Molecular Materials for High-Performance Chemical Sensors</strong></span></p><p class="text-align-justify"><span>Abstract: In this lecture I will detail our efforts to make use of semiconducting and conducting organic materials for the formation of chemical sensors with high selectivity and sensitivity.&nbsp; Key to our methods are the intrinsic transport properties of these highly delocalized electronic.&nbsp; I will detail optical (emissive) methods that make use of excitonic transport and our recent efforts on the detection of per-/poly-fluoroalkane substances (PFAS) at low ppt levels.&nbsp; Charge transport (electrical conduction) chemiresistive systems that can be readily integrated into electrical circuits. I will focus on the translation of transition metal reactions and catalysis to produce selective sensors.&nbsp; In this case I will make use of classical catalytic organometallic reactions (Heck, Wacker,..) and will also demonstrate the utility of metal nanoparticles. &nbsp;</span></p><p class="text-align-justify">Biography: &nbsp;Timothy M. Swager is the John D. MacArthur Professor of Chemistry at the Massachusetts Institute of Technology. He is known for innovations in organic chemistry, polymers, and analytical science. A number of his contributions have focused on the development of new materials and methods that allow for ultra-trace detection of chemicals and biological species.</p><p class="text-align-justify">&nbsp;</p>
LOCATION:Pfizer Lecture Hall
STATUS:CONFIRMED
DTSTART:20251009T201500Z
DTEND:20251009T214500Z
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