Intrinsically Microporous Polyimides from Norbornyl Bis-benzocyclobutene-Containing Diamines and Rigid Dianhydrides for Membrane-Based Gas Separation
暂无分享,去创建一个
[1] Youhai Yu,et al. Synthesis, characterization and properties of polyimides with spirobisbenzoxazole scaffold structure , 2022, Polymer.
[2] Jun Myun Ahn,et al. Hydrocarbon ladder polymers with ultrahigh permselectivity for membrane gas separations , 2022, Science.
[3] W. Nie,et al. Intrinsically microporous polyimides derived from norbornane-2-spiro-α-cyclopentanone-α′-spiro-2″-norbornane-5,5″,6,6″-tetracarboxylic dianhydride , 2021, Polymer.
[4] M. McConney,et al. Role of Alicyclic Conformation-Isomerization in the Photomechanical Performance of Azobenzene-Functionalized Cross-Linked Polyimides Containing Tetra-Substituted Cyclohexane Moieties. , 2021, ACS macro letters.
[5] Won Hee Lee,et al. Highly permeable polyimides incorporating Tröger's base (TB) units for gas separation membranes , 2020 .
[6] Won Hee Lee,et al. Alicyclic segments upgrade hydrogen separation performance of intrinsically microporous polyimide membranes , 2020 .
[7] Won Hee Lee,et al. Tröger's Base (TB)-containing polyimide membranes derived from bio-based dianhydrides for gas separations , 2020 .
[8] Won Hee Lee,et al. Thermally rearranged polybenzoxazole copolymers incorporating Tröger's base for high flux gas separation membranes , 2020 .
[9] Won Hee Lee,et al. Thermally rearranged polymer membranes containing highly rigid biphenyl ortho-hydroxyl diamine for hydrogen separation , 2020, Journal of Membrane Science.
[10] Won Hee Lee,et al. Recent progress in microporous polymers from thermally rearranged polymers and polymers of intrinsic microporosity for membrane gas separation: Pushing performance limits and revisiting trade‐off lines , 2020 .
[11] I. Pinnau,et al. Facile Synthesis and Study of Microporous Catalytic Arene-Norbornene Annulation-Tröger's Base Ladder Polymers for Membrane Air Separation. , 2020, ACS macro letters.
[12] Xiaohua Ma,et al. Enhanced Gas Separation Properties of Tröger’s Base Polymer Membranes Derived from Pure Triptycene Diamine Regioisomers , 2020, Macromolecules.
[13] Bing Yu,et al. A review of different synthetic approaches of amorphous intrinsic microporous polymers and their potential applications in membrane-based gases separation , 2019, European Polymer Journal.
[14] Y. Lee,et al. Polyimides containing aliphatic/alicyclic segments in the main chains , 2019, Progress in Polymer Science.
[15] I. Pinnau,et al. Microporous Polyimides from Ladder Diamines Synthesized by Facile Catalytic Arene–Norbornene Annulation as High-Performance Membranes for Gas Separation , 2019, Chemistry of Materials.
[16] I. Pinnau,et al. Synthesis and Characterization of Organo-Soluble Polyimides Derived from Alicyclic Dianhydrides and a Dihydroxyl-Functionalized Spirobisindane Diamine , 2018, ACS Applied Polymer Materials.
[17] I. Pinnau,et al. Synthesis of Highly Gas-Permeable Polyimides of Intrinsic Microporosity Derived from 1,3,6,8-Tetramethyl-2,7-diaminotriptycene , 2018, ACS omega.
[18] Y. Lee,et al. Novel semi-alicyclic polyimide membranes: Synthesis, characterization, and gas separation properties , 2018, Polymer.
[19] M. Alessi,et al. From Naproxen Repurposing to Naproxen Analogues and Their Antiviral Activity against Influenza A Virus. , 2018, Journal of medicinal chemistry.
[20] B. Helms,et al. Thermally Rearranged Polymer Membranes Containing Tröger's Base Units Have Exceptional Performance for Air Separations. , 2018, Angewandte Chemie.
[21] M. Guiver,et al. Microporous polymers: Ultrapermeable membranes. , 2017, Nature materials.
[22] I. Pinnau,et al. Design and Synthesis of Polyimides Based on Carbocyclic Pseudo-Tröger’s Base-Derived Dianhydrides for Membrane Gas Separation Applications , 2017 .
[23] N. McKeown. The synthesis of polymers of intrinsic microporosity (PIMs) , 2017, Science China Chemistry.
[24] J. C. Jansen,et al. Enhancing the Gas Permeability of Tröger’s Base Derived Polyimides of Intrinsic Microporosity , 2016 .
[25] I. Pinnau,et al. Fine-Tuned Intrinsically Ultramicroporous Polymers Redefine the Permeability/Selectivity Upper Bounds of Membrane-Based Air and Hydrogen Separations. , 2015, ACS macro letters.
[26] Y. Lee,et al. Rigid and microporous polymers for gas separation membranes , 2015 .
[27] Q. Wei,et al. Effects of Imidization Temperature on the Structure and Properties of Electrospun Polyimide Nanofibers , 2014 .
[28] B. Freeman,et al. Energy-efficient polymeric gas separation membranes for a sustainable future: A review , 2013 .
[29] Yinghan Wang,et al. Synthesis of soluble polyimide derived from novel naphthalene diamines for liquid crystal alignment layers and a preliminary study on the mechanism of imidization , 2013 .
[30] J. C. Jansen,et al. An Efficient Polymer Molecular Sieve for Membrane Gas Separations , 2013, Science.
[31] M. Guiver,et al. Polymer Rigidity Improves Microporous Membranes , 2013, Science.
[32] Toshihiko Matsumoto,et al. Alicyclic polyimides – a colorless and thermally stable polymer for opto-electronic devices , 2009 .
[33] Neil B. McKeown,et al. Synthesis, Characterization, and Gas Permeation Properties of a Novel Group of Polymers with Intrinsic Microporosity: PIM-Polyimides , 2009 .
[34] Enrico Drioli,et al. Membrane Gas Separation: A Review/State of the Art , 2009 .
[35] S. Hosseini,et al. Carbon membranes from blends of PBI and polyimides for N2/CH4 and CO2/CH4 separation and hydrogen purification , 2009 .
[36] P. Budd,et al. High‐Performance Membranes from Polyimides with Intrinsic Microporosity , 2008, Advanced materials.
[37] L. Robeson,et al. The upper bound revisited , 2008 .
[38] Y. Takao,et al. Formation of a 6FDA-based ring polyimide with nanoscale cavity evaluated by DFT calculations , 2005 .
[39] S. Neyertz,et al. The molecular structure and dynamics of short oligomers of PMDA-ODA and BCDA-ODA polyimides in the absence and presence of water , 2002 .
[40] R. Baker. Future directions of membrane gas separation technology , 2002 .
[41] L. Robeson,et al. High performance polymers for membrane separation , 1994 .
[42] Y. Yampolskii. Polymeric Gas Separation Membranes , 1993 .