Electrospun Nanofibrous Sorbents

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10 Electrospun Nanofibrous Sorbents and Membranes for Carbon Dioxide Capture 263 29. Yoon K, Hsiao BS, Chu B (2008) Functional nanofibers for environmental applications. J Mater Chem 18(44):5326–5334. doi:10.1039/B804128h 30. Wang X, Ding B, Yu J, Wang M, Pan F (2010) A highly sensitive humidity sensor based on a nanofibrous membrane coated quartz crystal microbalance. Nanotechnology 21(5). doi:10.1088/0957-4484/21/5/055502 31. Zacher D, Shekhah O, Woll C, Fischer RA (2009) Thin films of metal-organic frameworks. Chem Soc Rev 38(5):1418–1429. doi:10.1039/B805038b 32. Schoedel A, Scherb C, Bein T (2010) Oriented nanoscale films of metal-organic frame- works by room-temperature gel-layer synthesis. Angew Chem Int Ed 49(40):7225–7228. doi:10.1002/anie.201001684 33. Li YS, Bux H, Feldhoff A, Li GL, Yang WS, Caro J (2010) Controllable synthesis of metal-organic frameworks: from MOF nanorods to oriented MOF membranes. Adv Mater 22(30):3322–3324. doi:10.1002/adma.201000857 34. Venna SR, Jasinski JB, Carreon MA (2010) Structural evolution of zeolitic imidazolate framework-8. J Am Chem Soc 132(51):18030–18033. doi:10.1021/Ja109268m 35.Ostermann R, Cravillon J, Weidmann C, Wiebcke M, Smarsly BM (2011) Metal- organic framework nanofibers via electrospinning. Chem Commun 47(1):442–444. doi:10.1039/C0cc02271c 36. Tenney C, Lastoskie C (2006) Molecular simulation of carbon dioxide adsorption in chemically and structurally heterogeneous porous carbons. Environ Prog 25(4):343–354 37. Moon S-H, Shim J-W (2006) A novel process for CO2/CH4 gas separation on activated carbon fibers-electric swing adsorption. J Colloid Interface Sci 298(2):523–528, doi: http://dx.doi.org/ 10.1016/j.jcis.2005.12.052 38. Bai BC, Kim JG, Im JS, Jung S-C, Lee Y-S (2011) Influence of oxyfluorination on activated carbon nanofibers for CO2 storage. Carbon Lett 12:236–242, doi: http://carbonlett.org/10.5714/ CL.2011.12.4.236 39. Katepalli H, Bikshapathi M, Sharma CS, Verma N, Sharma A (2011) Synthesis of hierarchical fabrics by electrospinning of PAN nanofibers on activated carbon microfibers for environmental remediation applications. Chem Eng J 171(3):1194–1200. doi:10.1016/j.cej.2011.05.025 40. Ilconich J, Myers C, Pennline H, Luebke D (2007) Experimental investigation of the permeabil- ity and selectivity of supported ionic liquid membranes for CO2/He separation at temperatures up to 125 degrees C. J Membr Sci 298(1–2):41–47. doi:10.1016/j.memsci.2007.03.056 41. Yoo S, Won J, Kang SW, Kang YS, Nagase S (2010) CO2 separation membranes using ionic liquids in a nafion matrix. J Membr Sci 363(1–2):72–79. doi:10.1016/j.memsci.2010.07.013 42. Chen H, Elabd YA (2009) Polymerized ionic liquids: solution properties and electrospinning. Macromolecules 42(9):3368–3373. doi:10.1021/Ma802347t 43. Bender ET, Katta P, Lotus A, Park SJ, Chase GG, Ramsier RD (2006) Identification of CO2 sequestered in electrospun metal oxide nanofibers. Chem Phys Lett 423(4–6):302–305. doi:10.1016/j.cplett.2006.03.092 44. Jiang B, Kish V, Fauth DJ, Gray ML, Pennline HW, Li B (2011) Performance of amine- multilayered solid sorbents for CO2 removal: effect of fabrication variables. Int J Greenhouse Gas Control 5(5):1170–1175. doi:10.1016/j.ijggc.2011.05.035 45. Li B, Jiang B, Fauth DJ, Gray MML, Pennline HW, Richards GA (2011) Innovative nano- layered solid sorbents for CO2 capture. Chem Commun 47(6):1719–1721

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