Jeffrey Long - Desta Gallery

Jeffrey Long - Desta Gallery

The Ultimate Guide To Jeffery Long - School of Mathematical and Statistical Sciences


Professor of Chemistry Professor of Chemical & Biomolecular Engineering 211 Lewis Hall (510) 642-0860 (510) 642-8369 209 Lewis (510) 643-3832 Research Competence and Interest Inorganic and products chemistry; synthesis of inorganic particles and greater dimensional solids; accurate tailoring of chemical and physical properties; gas storage, molecular separations, and catalysis in porous products; magnetic and conductive products.


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Jeffrey RLong - Obituaries - kokomoperspective.com

We employ a range of physical techniques to analyze and define our materials comprehensively, consisting of by gas adsorption analysis, X-ray and neutron diffraction, numerous spectroscopic methods, and SQUID magnetometry. To find out more about the Long group and a full list of publications, please visit the group website. Metal, Organic Frameworks A major focus of research in the Long group is the design and research study of metalorganic frameworksporous, inorganic solids constructed of metal nodes linked by natural linkersthat are of interest for applications ranging from gas storage and molecular separations to catalysis and battery applications.


Additionally, now more than ever worldwide warming is requiring a remarkable decrease in our global greenhouse emissions. Among  Check it Out -term emissions mitigation strategiesand therefore an important separations needis the removal of CO2 straight from the flue gas streams of coal- and natural gas-fired power plants. Toward this end, we are studying a brand-new class of diamine-appended structures developed in our group that show high CO2 separation capabilities in the existence of water, with minimal energy requirements arising from an unprecedented cooperative adsorption system.



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Jeffrey RLong - Obituaries - kokomoperspective.com

We are likewise targeting metalorganic structures featuring polarizing open metal sites and shape-discriminating pore structures for the enhanced binding of H2 and CH4 near ambient temperatures and the separation of hydrocarbon isomers, respectively. The high-capacity storage of hydrogen and gas is particularly appropriate for automotive transportation, as these gases represent appealing cleaner options to liquid hydrocarbon fuels, and yet significant advances in adsorbent technologies are necessary to conquer the pricey restrictions currently imposed by low-temperature and high-pressure on-board storage requirements.


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Catalysis and Conductivity In addition to their function as molecular screens, metalorganic frameworks are assuring as robust, efficient catalysts with isolated and well-defined active sites. We are looking for to use coordinatively-unsaturated framework metal centers as catalytic sites and also installing these metal focuses post-synthetically via chelating groups constructed into the framework ligands.