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T Alan

Showing results (21-30 of 174) with videos related to

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ACS Applied Materials & Interfaces|May 16, 2013
Heteropolyacid-functionalized aluminum 2-aminoterephthalate metal-organic frameworks as reactive aldehyde sorbents and catalystsLev Bromberg, Xiao Su, T Alan Hatton
Journal of the American Chemical Society|January 12, 2022
Electrochemical Carbon Dioxide Capture and Release with a Redox-Active AmineHyowon Seo, Mohammad Rahimi, T Alan Hatton
Nano Letters|August 9, 2023
Scalable Biomass-Derived Hydrogels for Sustainable Carbon Dioxide CaptureYouhong Guo, Vittoria Bolongaro, T Alan Hatton
ACS Central Science|September 5, 2019
An Asymmetric Electrochemical System with Complementary Tunability in Hydrophobicity for Selective Separations of OrganicsYinying Ren, Xianwen Mao, T Alan Hatton
ACS Applied Materials & Interfaces|November 10, 2020
Understanding Material Compatibility in CO<sub>2</sub> Capture Systems Using Molten Alkali Metal BoratesCameron Halliday, Nil Ozbek, T Alan Hatton
Small (Weinheim an Der Bergstrasse, Germany)|June 1, 2011
Separation of chemical reaction intermediates by metal-organic frameworksAndrea Centrone, Erik E Santiso, T Alan Hatton
Langmuir : the ACS Journal of Surfaces and Colloids|November 16, 2005
Rigid, superparamagnetic chains of permanently linked beads coated with magnetic nanoparticles. Synthesis and rotational dynamics under applied magnetic fieldsHarpreet Singh, Paul E Laibinis, T Alan Hatton
Macromolecular Rapid Communications|October 14, 2014
Kinetics of magnetic field-induced orientational ordering in block copolymer/superparamagnetic nanoparticle compositesVinay Raman, T Alan Hatton, Bradley D Olsen
Accounts of Chemical Research|November 10, 2023
Redox-Mediated pH Swing Systems for Electrochemical Carbon CaptureHyowon Seo, Michael P Nitzsche, T Alan Hatton
Nanoscale|September 7, 2022
Capture and electrochemical conversion of CO<sub>2</sub> in molten alkali metal borate-carbonate blendsLev Bromberg, Michael P Nitzsche, T Alan Hatton
Pageof 18

Showing results (21-30 of 174) with videos related to

Sort By:
Pageof 18
ACS Applied Materials & Interfaces|May 16, 2013
Heteropolyacid-functionalized aluminum 2-aminoterephthalate metal-organic frameworks as reactive aldehyde sorbents and catalystsLev Bromberg, Xiao Su, T Alan Hatton
Journal of the American Chemical Society|January 12, 2022
Electrochemical Carbon Dioxide Capture and Release with a Redox-Active AmineHyowon Seo, Mohammad Rahimi, T Alan Hatton
Nano Letters|August 9, 2023
Scalable Biomass-Derived Hydrogels for Sustainable Carbon Dioxide CaptureYouhong Guo, Vittoria Bolongaro, T Alan Hatton
ACS Central Science|September 5, 2019
An Asymmetric Electrochemical System with Complementary Tunability in Hydrophobicity for Selective Separations of OrganicsYinying Ren, Xianwen Mao, T Alan Hatton
ACS Applied Materials & Interfaces|November 10, 2020
Understanding Material Compatibility in CO<sub>2</sub> Capture Systems Using Molten Alkali Metal BoratesCameron Halliday, Nil Ozbek, T Alan Hatton
Small (Weinheim an Der Bergstrasse, Germany)|June 1, 2011
Separation of chemical reaction intermediates by metal-organic frameworksAndrea Centrone, Erik E Santiso, T Alan Hatton
Langmuir : the ACS Journal of Surfaces and Colloids|November 16, 2005
Rigid, superparamagnetic chains of permanently linked beads coated with magnetic nanoparticles. Synthesis and rotational dynamics under applied magnetic fieldsHarpreet Singh, Paul E Laibinis, T Alan Hatton
Macromolecular Rapid Communications|October 14, 2014
Kinetics of magnetic field-induced orientational ordering in block copolymer/superparamagnetic nanoparticle compositesVinay Raman, T Alan Hatton, Bradley D Olsen
Accounts of Chemical Research|November 10, 2023
Redox-Mediated pH Swing Systems for Electrochemical Carbon CaptureHyowon Seo, Michael P Nitzsche, T Alan Hatton
Nanoscale|September 7, 2022
Capture and electrochemical conversion of CO<sub>2</sub> in molten alkali metal borate-carbonate blendsLev Bromberg, Michael P Nitzsche, T Alan Hatton
Pageof 18