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Chemistry

D-Index
44
Citations
10265
World Ranking
16672
National Ranking
4140

Overview

Jason E. Bara is affiliated with the University of Alabama in the United States. Their research centers on engineering and chemical engineering, with significant contributions spanning multiple subfields including catalysis, mechanical engineering, biomedical engineering, electrical and electronic engineering, and polymers and plastics.

The scope of their research topics includes:

  • Ionic liquids properties and applications
  • Membrane separation and gas transport
  • Carbon dioxide utilization in catalysis
  • Advanced battery materials and technologies
  • Synthesis and properties of polymers
  • Covalent organic framework applications
  • Carbon dioxide capture technologies

Their publication record features articles in several frequent venues known for polymer materials and chemical engineering research:

  • ACS Applied Polymer Materials
  • Industrial & Engineering Chemistry Research
  • Chemical Engineering Science
  • Macromolecules
  • ACS Sustainable Chemistry & Engineering

Notable recent papers authored or co-authored by Jason E. Bara include:

  • "Membrane technology for challenging separations: Removal of CO2, SO2 and NOx from flue and waste gases," 2023, Separation and Purification Technology
  • "Sustainable Novel Bamboo-Based Membranes for Water Treatment Fabricated by Regeneration of Bamboo Waste Fibers," 2020, ACS Sustainable Chemistry & Engineering
  • "Emerging iongel materials towards applications in energy and bioelectronics," 2021, Materials Horizons
  • "Tailored CO2-Philic Anionic Poly(ionic liquid) Composite Membranes: Synthesis, Characterization, and Gas Transport Properties," 2020, ACS Sustainable Chemistry & Engineering
  • "Molecular insight into the anion effect and free volume effect of CO2 solubility in multivalent ionic liquids," 2020, Physical Chemistry Chemical Physics

Frequent collaborators in their research include:

  • Kathryn E. O'Harra
  • C. Heath Turner
  • Shuai Qian
  • Xiaoyang Liu
  • Irshad Kammakakam

Best Publications

  • Guide to CO2 Separations in Imidazolium-Based Room-Temperature Ionic Liquids

    Jason E. Bara;Trevor K. Carlisle;Christopher J. Gabriel;Dean Camper

  • Room-Temperature Ionic Liquids and Composite Materials: Platform Technologies for CO2 Capture

    Jason E. Bara;Dean E. Camper;Douglas L. Gin;Richard D. Noble

  • Room-Temperature Ionic Liquid−Amine Solutions: Tunable Solvents for Efficient and Reversible Capture of CO2

    Dean Camper;Jason E. Bara;Douglas L. Gin;Richard D. Noble

  • Synthesis and Performance of Polymerizable Room-Temperature Ionic Liquids as Gas Separation Membranes

    Jason E. Bara;Sonja Lessmann;Christopher J. Gabriel;Evan S. Hatakeyama

  • Room-Temperature Ionic Liquids: Temperature Dependence of Gas Solubility Selectivity

    Alexia Finotello;Jason E. Bara;Dean Camper;Richard D. Noble

  • Improving CO2 selectivity in polymerized room-temperature ionic liquid gas separation membranes through incorporation of polar substituents

    Jason E. Bara;Christopher J. Gabriel;Evan S. Hatakeyama;Trevor K. Carlisle

  • Bulk-fluid solubility and membrane feasibility of rmim-based room-temperature ionic liquids

    Dean Camper;Jason Bara;and Carl Koval;Richard Noble

  • Enhanced CO2 separation selectivity in oligo(ethylene glycol) functionalized room-temperature ionic liquids

    Jason E. Bara;Christopher J. Gabriel;Sonja Lessmann;Trevor K. Carlisle

  • Gas separations in fluoroalkyl-functionalized room-temperature ionic liquids using supported liquid membranes

    Jason E. Bara;Christopher J. Gabriel;Trevor K. Carlisle;Dean E. Camper

  • Free Volume as the Basis of Gas Solubility and Selectivity in Imidazolium-Based Ionic Liquids

    Matthew S. Shannon;Jason M. Tedstone;Jason M. Tedstone;Scott P. O. Danielsen;Scott P. O. Danielsen;Michelle S. Hindman

  • Improving CO2 permeability in polymerized room‐temperature ionic liquid gas separation membranes through the formation of a solid composite with a room‐temperature ionic liquid

    Jason E. Bara;Evan S. Hatakeyama;Douglas L. Gin;Richard D. Noble

  • Interpretation of CO2 Solubility and Selectivity in Nitrile-Functionalized Room-Temperature Ionic Liquids Using a Group Contribution Approach

    Trevor K. Carlisle;Jason E. Bara;Christopher J. Gabriel;Richard D. Noble

  • A three-component mixed-matrix membrane with enhanced CO2 separation properties based on zeolites and ionic liquid materials

    Yeny C. Hudiono;Trevor K. Carlisle;Jason E. Bara;Yanfeng Zhang

  • Ideal gas solubilities and solubility selectivities in a binary mixture of room-temperature ionic liquids.

    Alexia Finotello;Jason E. Bara;Suguna Narayan;Dean Camper

  • Synthesis and light gas separations in cross-linked gemini room temperature ionic liquid polymer membranes

    Jason E. Bara;Evan S. Hatakeyama;Christopher J. Gabriel;Xiaohui Zeng

  • Effect of Anion on Gas Separation Performance of Polymer−Room-Temperature Ionic Liquid Composite Membranes

    Jason E. Bara;Douglas L. Gin;Richard D. Noble

  • Main-chain imidazolium polymer membranes for CO2 separations: An initial study of a new ionic liquid-inspired platform

    Trevor K. Carlisle;Jason E. Bara;Andrew L. Lafrate;Douglas L. Gin

  • Effect of “Free” Cation Substituent on Gas Separation Performance of Polymer−Room-Temperature Ionic Liquid Composite Membranes

    Jason E. Bara;Richard D. Noble;Douglas L. Gin

  • Polymerized Lyotropic Liquid Crystal Assemblies for Membrane Applications

    Douglas L. Gin;Jason E. Bara;Richard D. Noble;Brian J. Elliott

  • Physically Gelled Ionic Liquids: Solid Membrane Materials with Liquidlike CO2 Gas Transport

    Bret A. Voss;Jason E. Bara;Douglas L. Gin;Richard D. Noble

Frequent Co-Authors

Richard D. Noble
Richard D. Noble University of Colorado Boulder
Douglas L. Gin
Douglas L. Gin University of Colorado Boulder
Sergey P. Verevkin
Sergey P. Verevkin University of Rostock
Maria Forsyth
Maria Forsyth Deakin University
David Mecerreyes
David Mecerreyes University of the Basque Country
Oleg Borodin
Oleg Borodin United States Army Research Laboratory
Saad A. Khan
Saad A. Khan North Carolina State University
Haritz Sardon
Haritz Sardon University of the Basque Country
Matthias Wessling
Matthias Wessling RWTH Aachen University

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