UB - University at Buffalo, The State University of New York Chemical and Biological Engineering

Haiqing Lin

Assistant Professor

311 Furnas Hall
(716) 645-1856
Fax: (716) 645-3822
haiqingl@buffalo.edu

Short bio Research Teaching Publications

Refereed Journal Publications  (Google Scholar Profile)

 

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  • N. Shahkaramipour, S. N. Ramanan, D. Fister, E. Park, S. R. Venna, H. T. Sun, C. Cheng, H. Lin, “Facile Grafting of Zwitterions onto the Membrane Surface To Enhance Antifouling Properties for Wastewater Reuse”, Ind. Eng. Chem. Res. 56, 9202-9212 (2017). link
  • N. Shahkaramipour, T. N. Tran, S. Ramanan, H. Lin, “Membranes with Surface-Enhanced Antifouling Properties for Water Purification”, Membranes 7, 13 (2017). link
  • N. Paranjape, P. C. Mandadapu, G. Wu, H. Q. Lin, “Highly-branched cross-linked poly(ethylene oxide) with enhanced ionic conductivity”, Polymer 111, 1-8 (2017). link
  • H. W. Fan, R. Wang, L. L. Shan, H. Yan, J. Li, S. L. Ji, H. Q. Lin, G. Zhang, “One-Step Assembly of Molecular Separation Membranes by Direct Atomizing Oligomers”, ACS Appl. Mater. Interfaces 9, 4074-4083 (2017). link
  • D. Havas, H. Q. Lin, “Optimal membranes for biogas upgrade by removing CO2: High permeance or high selectivity?”, Sep. Sci. Technol. 52, 186-196 (2017). link
  • L. X. Zhu, M. Yavari, W. G. Jia, E. P. Furlani, H. Q. Lin, “Geometric Restriction of Gas Permeance in Ultrathin Film Composite Membranes Evaluated Using an Integrated Experimental and Modeling Approach”, Ind. Eng. Chem. Res. 56, 351-358 (2017). link
  • S. J. Luo, J. Y. Liu, H. Q. Lin, B. A. Kazanowska, M. D. Hunckler, R. K. Roeder, R. L. Guo, “Preparation and gas transport properties of triptycene-containing polybenzoxazole (PBO)-based polymers derived from thermal rearrangement (TR) and thermal cyclodehydration (TC) processes”, Journal of Materials Chemistry A 4, 17050-17062 (2016). link
  • J. Y. Liu, X. D. Hou, H. B. Park, H. Q. Lin, “High-Performance Polymers for Membrane CO2/N2 Separation”, Chem.-Eur. J. 22, 15980-15990 (2016). link
  • S. Shah, J. Y. Liu, S. Ng, S. J. Luo, R. L. Guo, C. Cheng, H. Q. Lin, “Transport properties of small molecules in zwitterionic polymers”, J. Polym. Sci. Pt. B-Polym. Phys. 54, 1924-1934 (2016). link
  • H. J. Yen, H. Tsai, M. Zhou, A. Chen, E. F. Holby, S. Choudhury, H. Zhang, L. Zhu, H. Lin, L. Dai, L. Adamska, S. Tretiak, G. Wu, H. L. Wang, “Structurally Defined Nanographene Assemblies via Bottom-up Chemical Synthesis for Highly Efficient Lithium Storage”, Adv. Mater. 28 , 10250-10256 (2016). link PDF
  • L. X. Zhu, W. G. Jia, M. Kattula, K. Ponnuru, E. P. Furlani, H. Q. Lin, “Effect of porous supports on the permeance of thin film composite membranes: Part I. Track-etched polycarbonate supports”, J. Membr. Sci. 514, 684-695 (2016). link
  • B. Lam, M. Wei, L. X. Zhu, S. J. Luo, R. L. Guo, A. Morisato, P. Alexandridis, H. Q. Lin, “Cellulose triacetate doped with ionic liquids for membrane gas separation”, Polymer 89, 1-11 (2016). link
  • S. Z. Zhao, K. P. Huang, H. Q. Lin, “Impregnated Membranes for Water Purification Using Forward Osmosis”, Ind. Eng. Chem. Res. 54, 12354-12366 (2015). link
  • M. Kattula, K. Ponnuru, L. X. Zhu, W. G. Jia, H. Q. Lin, E. P. Furlani, “Designing ultrathin film composite membranes: the impact of a gutter layer”, Sci Rep 5, 15016 (2015). link
  • H. Q. Lin, Z. J. He, Z. Sun, J. Kniep, A. Ng, R. W. Baker, T. C. Merkel, “CO2-selective membranes for hydrogen production and CO2 capture - Part II: Techno-economic analysis”, J. Membr. Sci. 493, 794-806 (2015). link
  • C. H. Jones, M. F. Chen, A. Gollakota, A. Ravikrishnan, G. J. Zhang, S. Lin, M. Tan, C. Cheng, H. Q. Lin, B. A. Pfeifer, “Structure Function Assessment of Mannosylated Poly(beta-amino esters) upon Targeted Antigen Presenting Cell Gene Delivery”, Biomacromolecules 16, 1534-1541 (2015). link
  • R. R. Tiwari, Z. P. Smith, H. Q. Lin, B. D. Freeman, D. R. Paul, “Gas permeation in thin films of "high free-volume" glassy perfluoropolymers: Part II. CO2 plasticization and sorption”, Polymer 61, 1-14 (2015). link
  • H. Q. Lin, M. Yavari, “Upper bound of polymeric membranes for mixed-gas CO2/CH4 separations”, J. Membr. Sci. 475, 101-109 (2015). link
  • R. R. Tiwari, Z. P. Smith, H. Q. Lin, B. D. Freeman, D. R. Paul, “Gas permeation in thin films of "high free-volume" glassy perfluoropolymers: Part I. Physical aging”, Polymer 55, 5788-5800 (2014). link
  • H. Q. Lin, R. Daniels, S. M. Thompson, K. D. Amo, Z. He, T. C. Merkel, J. G. Wijmans, “Membrane selective exchange process for dilute methane recovery”, J. Membr. Sci. 469, 11-18 (2014). link
  • H. Q. Lin, Z. J. He, Z. Sun, J. M. Vu, A. Ng, M. Mohammed, J. Kniep, T. C. Merkel, T. Wu, R. C. Lambrecht, “CO2-selective membranes for hydrogen production and CO2 capture - Part I: Membrane development”, J. Membr. Sci. 457, 149-161 (2014). link
  • H. Q. Lin, M. J. Zhou, J. Ly, J. Vu, J. G. Wijmans, T. C. Merkel, J. Y. Jin, A. Haldeman, E. H. Wagener, D. Rue, “Membrane-Based Oxygen-Enriched Combustion”, Ind. Eng. Chem. Res. 52, 10820-10834 (2013). link
  • H. Q. Lin, S. M. Thompson, A. Serbanescu-martin, J. G. Wijmans, K. D. Amo, K. A. Lokhandwala, B. T. Low, T. C. Merkel, “Dehydration of natural gas using membranes. Part II: Sweep/countercurrent design and field test”, J. Membr. Sci. 432, 106-114 (2013). link
  • H. Q. Lin, S. M. Thompson, A. Serbanescu-martin, J. G. Wijmans, K. D. Amo, K. A. Lokhandwala, T. C. Merkel, “Dehydration of natural gas using membranes. Part I: Composite membranes”, J. Membr. Sci. 413, 70-81 (2012). link
  • T. C. Merkel, H. Q. Lin, X. T. Wei, R. Baker, “Power plant post-combustion carbon dioxide capture: An opportunity for membranes”, J. Membr. Sci. 359, 126-139 (2010). link
  • S. Kalakkunnath, D. S. Kalika, H. Q. Lin, R. D. Raharjo, B. D. Freeman, “Molecular relaxation in cross-linked poly(ethylene glycol) and poly(propylene glycol) diacrylate networks by dielectric spectroscopy”, Polymer 48, 579-589 (2007). link
  • H. Q. Lin, B. D. Freeman, S. Kalakkunnath, D. S. Kalika, “Effect of copolymer composition, temperature, and carbon dioxide fugacity on pure- and mixed-gas permeability in poly(ethylene glycol)-based materials: Free volume interpretation”, J. Membr. Sci. 291, 131-139 (2007). link
  • S. Kalakkunnath, D. S. Kalika, H. Q. Lin, R. D. Raharjo, B. D. Freeman, “Molecular dynamics of poly(ethylene glycol) and poly(propylene glycol) copolymer networks by broadband dielectric spectroscopy”, Macromolecules 40, 2773-2781 (2007). link
  • S. Kelman, H. Q. Lin, E. S. Sanders, B. D. Freeman, “CO2/C2H6 separation using solubility selective membranes”, J. Membr. Sci. 305, 57-68 (2007). link
  • H. Q. Lin, E. Van wagner, R. Raharjo, B. D. Freeman, I. Roman, “High-performance polymer membranes for natural-gas sweetening”, Adv. Mater. 18, 39-44 (2006). link
  • H. Q. Lin, E. Van wagner, B. D. Freeman, L. G. Toy, R. P. Gupta, “Plasticization-enhanced hydrogen purification using polymeric membranes”, Science 311, 639-642 (2006). link
  • H. Q. Lin, E. Van wagner, J. S. Swinnea, B. D. Freeman, S. J. Pas, A. J. Hill, S. Kalakkunnath, D. S. Kalika, “Transport and structural characteristics of crosslinked poly(ethylene oxide) rubbers”, J. Membr. Sci. 276, 145-161 (2006). link
  • H. Q. Lin, B. D. Freeman, “Gas permeation and diffusion in cross-linked poly(ethylene glycol diacrylate)”, Macromolecules 39, 3568-3580 (2006). link
  • S. Kalakkunnath, D. S. Kalika, H. Q. Lin, B. D. Freeman, “Viscoelastic characteristics of UV polymerized poly(ethylene glycol) diacrylate networks with varying extents of crosslinking”, J. Polym. Sci. Pt. B-Polym. Phys. 44, 2058-2070 (2006). link
  • R. D. Raharjo, H. Q. Lin, D. E. Sanders, B. D. Freeman, S. Kalakkunnath, D. S. Kalika, “Relation between network structure and gas transport in crosslinked poly(propylene glycol diacrylate)”, J. Membr. Sci. 283, 253-265 (2006). link
  • D. P. Dworak, H. Lin, B. D. Freeman, M. D. Soucek, “Gas permeability analysis of photo-cured cyclohexyl-substituted polysiloxane films”, J. Appl. Polym. Sci. 102, 2343-2351 (2006). link
  • R. S. Prabhakar, R. Raharjo, L. G. Toy, H. Q. Lin, B. D. Freeman, “Self-consistent model of concentration and temperature dependence of permeability in rubbery polymers”, Ind. Eng. Chem. Res. 44, 1547-1556 (2005). link
  • H. Q. Lin, B. D. Freeman, “Materials selection guidelines for membranes that remove CO2 from gas mixtures”, J. Mol. Struct. 739, 57-74 (2005). link erratum
  • H. Q. Lin, B. D. Freeman, “Gas and vapor solubility in cross-linked poly(ethylene glycol diacrylate)”, Macromolecules 38, 8394-8407 (2005). link
  • H. Q. Lin, T. Kai, B. D. Freeman, S. Kalakkunnath, D. S. Kalika, “The effect of cross-linking on gas permeability in cross-linked poly(ethylene glycol diacrylate)”, Macromolecules 38, 8381-8393 (2005). link
  • S. Kalakkunnath, D. S. Kalika, H. Q. Lin, B. D. Freeman, “Segmental relaxation characteristics of cross-linked poly(ethylene oxide) copolymer networks”, Macromolecules 38, 9679-9687 (2005). link
  • H. Lin, B. D. Freeman, “Gas solubility, diffusivity and permeability in poly(ethylene oxide)”, J. Membr. Sci. 239, 105-117 (2004). link

Book Chapters

  • H. Lin, L.S. White, K.A. Lokhandwala and R.W. Baker, “Natural Gas Purification,” in Encyclopedia of Membrane Science and Technology, edited by E. M.V. Hoek and V.V. Tarabara, Wiley, New Jersey, pp1644-1667 (2013).
  • V.A. Kusuma, H. Lin, B.D. Freeman, M. Yose-Yacaman, S. Kalakkunnath, and D.S. Kalika, “Structure/Property Characteristics of Polar Rubbery Polymeric Membranes for Carbon Dioxide Removal from Mixtures with Light Gas,” in Membranes: Manufacturing Utilizing Six Sigma and Applications, edited by N.N. Li, A.G. Fane, W.S.W. Ho, and T. Matsuura, Wiley, New York, pp. 929-953 (2008).
  • H. Lin and B.D. Freeman, “Permeation and Diffusion,” in Springer-Handbook of Materials Measurement Methods, edited by H. Czichos, L.E. Smith, and T. Saito, Springer, pp. 371-387 (2006).

Patents

  • N.P. Wynn, H. Lin, A. M. Zhou, and J. Ly, “Low-Energy Process to Produce Oxygen-Enriched Air Using Membrane Technology,” US Patent Application 13/439,716 (April 1, 2012), Publication US20130263734A1.
  • N.P. Wynn, H. Lin, M. Zhou, J. Ly, A. Serbanescu-Martin, “Membrane-Based Gas Separation Process Using Ejector-Driven Gas Recycle,” US Patent Application 13/422,344 (March 16, 2012), Publication US20130239804 A1.
  • N.P. Wynn, S. Thomas-Doz, M. Zhou, J. He, and H. Lin, “Process for the Production of Methanol Including Two Membrane Separation Steps,” US Patent Number 8,623,926 B2 (January 7, 2014).
  • N.P. Wynn, D.E. Gottschlich, and H. Lin, “Gas Separation Process for Production of Hydrogen by Autothermal Reforming of Natural Gas, with Carbon Dioxide Recovery,” US Patent Application 2012/0141367 A1 (June 7, 2012), Publication US20120141367 A1.
  • J.G. Wijmans, T.C. Merkel, H. Lin, S. Thompson, and R. Daniels, “Efficient Gas Separation Process to Upgrade Dilute Methane Stream for Use as Fuel,” US Patent Number 8,128,733 B2 (March 6, 2012).
  • R.W. Baker, J.G. Wijmans, T.C. Merkel, H. Lin, R. Daniels, and S. Thompson, "Gas Separation Processes Using Membranes with Permeate Sweep to Remove CO2 from Combustion Gases," US Patent Number 7,964,020 B2 (June 21, 2011).
  • B.D. Freeman, S. Matteucci and H. Lin, “Metal oxide nanoparticle filled polymers,” U.S. Patent 7,510,595 B2 (March 31, 2009), International Publication Number WO 2007/084169 A2.