[1] KITAGAWA S,KITAURA R,NORO S I. Functional porous coordination polymers[J]. Angewandte Chemie,2004,43(18):2334-75.
[2] PARNHAM E R,MORRIS R E.Ionothermal synthesis of zeolites,metal-organic frameworks,and inorganic-organic hybrids[J]. Accounts of Chemical Research,2007,40(10):1005-1013.
[3] 李立博,王勇,王小青,等. 柔性金属有机骨架材料(MOFs)用于气体吸附分离[J]. 化工进展,2016,35(6):1794-1803. LI L F,WANG Y,WANG X Q,et al. Selective gas adsorption and separation in flexible metal-organic frameworks[J]. Chemical Industry and Engineering Progress,2016,35(6):1794-1803.
[4] JONES J T A,HOLDEN D,MITRA T,et al. On-off porosity switching in a molecular organic solid[J]. Angewandte Chemie,2011,123(3):775-779.
[5] MITRA T,JELFS K E,SCHMIDTMANN M,et al. Molecular shape sorting using molecular organic cages[J]. Nature Chemistry,2013,5(4):276-281.
[6] HAPKE M. Catalysis,concepts and green applications[J]. ChemSusChem,2008,1(12):5500-5501.
[7] 郝广平,李文翠,陆安慧. 纳米结构多孔固体在二氧化碳吸附分离中的应用[J]. 化工进展,2012,31(11):2493-2510. HAO G P,LI W C,LU A H. Nanostructured porous solids for CO2 sorption and separation[J]. Chemical Industry and Engineering Progress,2012,31(11):2493-2510.
[8] JAMES S L. The dam bursts for porous liquids[J]. Advanced Materials,2016,28(27).DOI:10.1002/adma201505607.
[9] O'REILLY N,GIRI N,JAMES S. Porous liquids[J]. Chemistry:A European Journal,2007,13(11):3020-3025.
[10] ZHANG J,CHAI S H,QIAO Z A,et al. Porous liquids:a promising class of media for gas separation[J]. Angewandte Chemie International Edition,2015,54(3):932-936.
[11] GIRI N,DAVIDSON C E,MELAUGH G,et al. Alkylated organic cages:from porous crystals to neat liquids[J]. Chemical Science,2012,3(6):2153-2157.
[12] MELAUGH G,GIRI N,DAVIDSON C E,et al. Designing and understanding permanent microporosity in liquids[J]. Physical Chemistry Chemical Physics,2014,16(20):9422-9431.
[13] GIRI N,DEL PÓPOLO M G,MELAUGH G,et al. Liquids with permanent porosity[J]. Nature,2015,527(7577):216-220.
[14] 侯林慧,曾祥平,张建勇. 液体的多孔性[J]. 化学通报,2008,71(7):518-521. HOU L H,ZENG X P,ZHANG J Y,et al. Porosity in liquids[J]. Chemical Communications,2008,71(7):518-521.
[15] 黄载福. 冠醚化学与环境科学[J]. 化学研究与应用,1990(3):15-20. HUANG Z F. Chemistry of crown ether and environmental science[J].Chemical Research and Application,1990(3):15-20.
[16] 李成龙,徐珍,吕早生,等. 杯芳冠醚的合成及其催化合成对氟硝基苯[J]. 化工进展,2016,35(7):2109-2113. LI C L,XU Z,LV Z S,et al. Nanostructured porous solids for CO2 sorptionand separation[J]. Chemical Industry and Engineering Progress,2016,35(7):2109-2113.
[17] 张进琪,黄德培. 穴醚化合物研究进展[J]. 化学传感器,1991,11(3):11-17. ZHANG J Q,HUANG D P. Research progress of crown ethers[J]. Chemical Sensors,1991,11(3)11-17.
[18] HALLETT J P,WELTON T. Room-temperature ionic liquids:solvents for synthesis and catalysis. 2[J]. Chemical Reviews,2011,111(5):3508-3576.
[19] 段晓磊,迟骋,朱丽君,等. 固载化离子液体催化酯化反应研究进展[J]. 化工进展,2015,34(12):4238-4247. DUAN X L,CHI C,ZHU L J,et al. Progress in the application of immobilized ionic liquids in esterification reactions[J]. Chemical Industry and Engineering Progress,2015,34(12):4238-4247.
[20] BOURLINOS A B,HERRERA R,CHALKIAS N,et al. Surface-functionalized nanoparticles with liquid-like behavior[J]. Advanced Materials,2005,17(2):234-237.
[21] BOURLINOS A B,STASSINOPOULOS A,ANGLOS D,et al. Functionalized ZnO nanoparticles with liquidlike behavior and their photoluminescence properties[J]. Small,2006,2(4):513-516.
[22] BARBOUR L J. Crystal porosity and the burden of proof.[J]. Chemical Communications,2006,11(11):1163-1168.
[23] TOZAWA T,JONES J T A,SWAMY S I,et al. Porous organic cages[J]. Nature Materials,2009,8(12):973-978.
[24] JIANG S,JONES J T,HASELL T,et al. Porous organic molecular solids by dynamic covalent scrambling.[J]. Nature Communications,2011,2(1):509-527.
[25] COOPER A I. Nanoporous organics enter the cage age[J]. Angewandte Chemie International Edition,2011,50(5):996-998.
[26] MAYA E M,SHIRK J S,SNOW A W,et al. Peripherally-substituted polydimethylsiloxane phthalocyanines:a novel class of liquid materials[J]. Chemical Communications,2001,7(7):615-616.
[27] SNOW A W,SHIRK J S,MAYA E M,et al. Phthalocyanines with peripheral siloxane substitution:US6933402[P]. 2005-08-23.
[28] HARMS S,RÄTZKE K,FAUPEL F,et al. Free volume of interphases in model nanocomposites studied by positron annihilation lifetime spectroscopy[J]. Macromolecules,2010,43(24):10505-10511.
[29] CONTAKES S M,KUHLMAN M L,RAMESH M,et al. Systematic assembly of the double molecular boxes:{Cs⊂[CpCo (CN) 3] 4[Cp* Ru] 3} as a tridentate ligand[J]. Proceedings of the National Academy of Sciences,2002,99(8):4889-4893.
[30] HSU S C N,RAMESH M,ESPENSON J H,et al. Membership rules for a molecular box:the admission process and protection provided to guest molecules[J]. Angewandte Chemie International Edition,2003,42(23):2663-2666.
[31] ROBBINS T A,KNOBLER C B,BELLEW D R,et al. Host-guest complexation. 67. A highly adaptive and strongly binding hemicarcerand[J]. Journal of the American Chemical Society,1994,116(1):111-122.
[32] KOBAYASHI K,YAMANAKA M. Self-assembled capsules based on tetrafunctionalized calix
[4] resorcinarenecavitands[J]. Chemical Society Reviews,2015,44(2):449-466.
[33] 郑燕升,卓志昊,莫倩,等. 离子液体的分子模拟与量化计算[J]. 化学进展,2011(9):1862-1870. ZHENG Y S,ZHUO Z H,MO Q,et al. Molecular simulation and quantum chemistry calculation of ionic liquids[J]. Progress in Chemistry,2011(9):1862-1870.
[34] 林燕,王芳,张志庆,等. 离子液体绿色脱硫机理及应用进展[J]. 化工进展,2013,32(3):549-557. LIN Y,WANG F,ZHANG Z Q,et al. Mechanism and application of ionic liquids in environmental friendly oil desulphurization[J]. Chemical Industry and Engineering Progress,2013,32(3):549-557.
[35] 李姝静. 环糊精构筑超分子体系基础及应用[M]. 北京:化学工业出版社,2014:2-43. LI S J. Foundationand application in the construction of cyclodextrin supramolecular system[M]. Bejing:Chemical Industry Press,2014.
[36] 沈海民,方红果,武宏科,等. 环糊精衍生物的分子形态及其构筑策略研究进展[J]. 化工进展,2015,34(2):430-446. SHEN H M,FANG H G,WU H K,et al. Progress in the molecular morphology of cyclodextrin derivatives and their construction strategy[J]. Chemical Industry and Engineering Progress,2015,34(2):430-446.
[37] SZEJTLI J. Cyclodextrins in foods,cosmetics and toiletry[M]. Netherlands:Springer,1988:307-334.
[38] CAIRA M R,BOURNE S A,MHLONGO W T,et al. New crystalline forms of permethylated β-cyclodextrin[J]. Chemical Communications, 2004(19):2216-2217.
[39] MEIER-AUGENSTEIN W,BURGER B V,SPIES H S C,et al. Conformational analyses of alkylated β-cyclodextrins by NMR spectroscopy[J]. Zeitschriftfür Naturforschung B,1992,47(6):877-886.
[40] 丁海军. 杯芳烃衍生物的合成及其对金属离子萃取性能的应用研究[D]. 上海:华东理工大学,2011. DING H J. Synthesis of calixarene derivatives and their applied research on extraction properties of metal ions[D]. Shanghai:East China University of Science and Technology,2011.
[41] 周永香,高党鸽,马建中,等. 水溶性杯芳烃研究进展及在鞣制中的应用[J]. 中国皮革,2016(2):37-42. ZHOU Y X,GAO D G,MA J Z,et al. Research progress of water-soluble calixarenes andits application in tanning[J]. China Leather,2016(2):37-42.
[42] ATWOOD J L,BARBOUR L J,JERGA A,et al. Guest transport in a nonporous organic solid via dynamic van der Waals cooperativity[J]. Science,2002,298(5595):1000-1002.
[43] SHIMOJO K,OSHIMA T,NAGANAWA H,et al. Calixarene-assisted protein refolding via liquid-liquid extraction[J]. Biomacromolecules,2007,8(10):3061-3066.
[44] 张桂玲,徐周庆,薛赛凤,等. 一类新型环型笼状化合物——瓜环:(Ⅱ)酸度、IA、IIA金属离子对瓜环溶解性的影响[J]. 无机化学学报,2003,19(6):655-659. ZHANG G L,XU Z Q,XUE S F,et al. A new family of cage compounds-cucurbit[n]urils:(Ⅱ)influence of acidity,alkaline and alkaline-earth metal ions on solubility of cucurbit[n=5-8] urils[J].Chinese Journal of Inorganic Chemistry,2003,19(6):655-659.
[45] 韩宝航,刘育. 葫芦脲:分子识别与组装[J]. 有机化学,2003,23(2):139-149. HAN B H,LIU Y. Molecular recognition and assembly of cucurbituril[J]. Chinese Journal of Organic Chemistry,2003,23(2):139-149.
[46] 李刚,冯亚青. 葫芦脲[J]. 化学通报,2005,68(1):54-58. LI G,FENG Y Q. Cucurbituril[J]. Chemical Communications,2005,68(1):54-58.
[47] KIM J,JUNG I S,KIM S Y,et al. New cucurbituril homologues:syntheses,isolation,characterization,and X-ray crystal structures of cucurbit[n] uril (n=5,7,and 8)[J]. Journal of the American Chemical Society,2000,122(3):540-541.
[48] LEE J W,SAMAL S,SELVAPALAM N,et al. Cucurbituril homologues and derivatives:new opportunities in supramolecular chemistry[J]. Accounts of Chemical Research,2003,36(8):621-630.
[49] 卜婷婷,崔娜,朱丽君,等. 柱芳烃合成及应用研究进展[J]. 化工进展,2015,34(9):3267-3278. BU T T,CUI N,ZHU L J,et al. Progress in the synthesis and application of pillar[n]arene[J]. Chemical Industry and Engineering Progress,2015,34(9):3267-3278.
[50] HIMPSL F L,KOERMER G S. Catalytic cracking of hydrocarbons with a mixture of zeolite L and zeolite Y:US 5106485 A[P]. 1992-04-21.
[51] 仇峰,卫冬燕,张忠东,等. 水玻璃在高岭土微球上原位晶化L沸石[J]. 化工进展,2010,29(10):1947-1950. CHOU F,WEI D Y,ZHANG Z D,et al. Synthesis of zeolite L via in situ crystallization with water glass on kaolin microsphere[J]. Chemical Industry and Engineering Progress,2010,29(10):1947-1950.
[52] DEVAUX A,POPOVI? Z,BOSSART O,et al. Solubilisation of dye-loaded zeolite L nanocrystals[J]. Microporous and Mesoporous Materials,2006,90(1):69-72.
[53] YAMADA M,ARAI M,KURIHARA M,et al. Synthesis and isolation of cobalt hexacyanoferrate/chromate metal coordination nanopolymers stabilized by alkylamino ligand with metal elemental control[J]. Journal of the American Chemical Society,2004,126(31):9482-9483.
[54] MASOOMI M Y,MORSALI A. Morphological study and potential applications of nano metal-organic coordination polymers[J]. RSC Advances,2013,3(42):19191-19218.
[55] LARIONOVA J,GUARI Y,SANGREGORIO C,et al. Cyano-bridged coordination polymer nanoparticles[J]. New Journal of Chemistry,2009,33(6):1177-1190.
[56] 常娟娟,李波,刘文,等. Fe3O4磁性纳米复合材料的制备及载药性能[J]. 化工进展,2016,35(s1):265-269. CHANG J J,LI B,LIU W,et al. Preparation and drug loading properties of Fe3O4 magnetic nanocomposite[J]. Chemical Industry and Engineering Progress,2016,35(s1):265-269.
[57] ZHOU M,LU Y H,CAI Y Q,et al. Adsorption of gas molecules on transition metal embedded graphene:a search for high-performance graphene-based catalysts and gas sensors[J]. Nanotechnology,2011,22(38):385502.
[58] FÉREY G. Hybrid porous solids:past,present,future[J]. Chemical Society Reviews,2008,37(1):191-214.
[59] 康凯,白书培,宋华,等. 吸附材料的低温等离子体再生法研究进展[J]. 化工进展,2016,35(s1):235-241. KANG K,BAI S P,SONG H,et al. Research on non-thermal plasma regeneration method of adsorbents[J]. Chemical Industry and Engineering Progress,2016,35(s1):235-241.
[60] 徐冬,张军,翟玉春,等. 变压吸附分离工业废气中二氧化碳的研究进展[J]. 化工进展,2010,29(1):150-156. XU D,ZHANG J,DI Y C,et al. Progress in carbon dioxide capture from flue gas by pressure swing adsorption[J]. Chemical Industry and Engineering Progress,2010,29(1):150-156.
[61] 阮红征. CO2/N2混气体吸附分离研究[D]. 天津:天津大学,2010. RUAN H Z. Studies on adsorptionseparationof CO2/N2mixedgases[D]. Tianjin:Tianjin University,2010.
[62] 周玉梅,周宝晶,聂雪玫,等. MD/QM/CSM方法计算β-环糊精及其衍生物对二甲四氯的包合机理[J]. 化工进展,2015,34(12):4185-4190. ZHOU Y M,ZHOU B J,NIE X M,et al. A theoretical study on the microencapsulation of herbicide MCPA with native β-cyclodextrin and its derivatives by a molecular dynamics/quantum mechanics/continuum solvent model approach[J]. Chemical Industry and Engineering Progress,2015,34(12):4185-4190.
[63] PIEROTTI R A. A scaled particle theory of aqueous and nonaqueous solutions[J]. Chemical Reviews,1976,76(6):717-726. |