Mesoporous polyetherimide thin films via hydrolysis of polylactide-b-polyetherimide-b-polylactide
Author:
Affiliation:
1. Department of Chemistry
2. Virginia Tech
3. Blacksburg
4. USA
5. Department of Chemical Engineering
6. Macromolecules Innovation Institute
Abstract
Hydrolyzing polylactide-b-polyetherimide-b-polylactide triblock copolymers produces mesoporous polyetherimide thin films with an average pore width of 24 nm.
Funder
National Science Foundation
Air Force Office of Scientific Research
Publisher
Royal Society of Chemistry (RSC)
Subject
Organic Chemistry,Polymers and Plastics,Biochemistry,Bioengineering
Link
http://pubs.rsc.org/en/content/articlepdf/2021/PY/D1PY00601K
Reference72 articles.
1. Microporous Polyimides with Uniform Pores for Adsorption and Separation of CO2 Gas and Organic Vapors
2. Gas Separation of Asymmetric 6FDA Polyimide Membrane with Oriented Surface Skin Layer
3. Rational Design of Intrinsically Ultramicroporous Polyimides Containing Bridgehead-Substituted Triptycene for Highly Selective and Permeable Gas Separation Membranes
4. Role of Intrachain Rigidity in the Plasticization of Intrinsically Microporous Triptycene-Based Polyimide Membranes in Mixed-Gas CO2/CH4 Separations
5. Gas Permeation Properties of Asymmetric Polyimide Membranes with Partially Carbonized Skin Layer
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1. Mesoporous Polyimide Thin Films as Dendrite-Suppressing Separators for Lithium–Metal Batteries;ACS Nano;2023-12-21
2. Block Copolymer Derived Porous Carbon Fiber: An Emerging Structural Functional Material;Macromolecules;2023-12-13
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