[1] SEOANE B,CASTELLANOS S,DIKHTIARENKO A,et al. Multi-scale crystal engineering of metal organic frameworks[J].Coordination Chemistry Reviews,2016,307:147-187.
[2] 李小娟,何长发,黄斌,等.金属有机骨架材料吸附去除环境污染物的进展[J].化工进展,2016,35(2):586-594. LI X J,HE C F,HUANG B,et al.Progress in the applications of metal-organic frameworks in adsorption[J].Chemical Industry and Engineering Progress,2016,35(2):586-594.
[3] GUI B,MENG X,XU H.Postsynthetic modification of metal-organic frameworks through click chemistry[J].Chinese Journal of Chemistry,2016,34(2):186-190.
[4] 朱晨明,王保登,张中正,等.金属-有机骨架复合材料的制备及其二氧化碳吸附性能[J].化工进展,2016,35(9):2875-2884. ZHU C M,WANG B D,ZHANG Z Z,et al.Preparation and CO2 adsorption performance of metal-organic framework composites[J]. Chemical Industry and Engineering Progress,2016,35(9):2875-2884.
[5] NANDASIRI M I,JAMBOVANE S R,MCGRAIL B P,et al.Adsorption,separation,and catalytic properties of densified metal-organic frameworks[J].Coordination Chemistry Reviews,2016,311:38-52.
[6] QIU S,XUE M,ZHU G.Metal-organic framework membranes:from synthesis to separation application[J].Chemical Society Reviews,2014,43:6116-6140.
[7] CUI Y,LI B,HE H,et al.Metal-organic frameworks as platforms for functional materials[J]. Accounts of Chemical Research,2016,49(3):483-493.
[8] DINCA M,LONG J R.Strong H2 binding and selective gas adsorption within the microporous coordination solid Mg3(O2C-C10H6-CO2)3[J].Journal of the American Chemical Society,2005,127(26):9376-9377.
[9] LEE J,FARHA O K,ROBERTS J,et al.Metal-organic framework materials as catalysts[J].Chemical Society Reviews,2009,38:1450-1459.
[10] DECOSTE J B,DENNY M S,PETERSON G W,et al.Enhanced aging properties of HKUST-1 in hydrophobic mixed-matrix membranes for ammonia adsorption[J].Chemical Science,2016,7(4):2711-2716.
[11] LU Y,DONG Y,QIN J.Porous pcu-type Zn(II) framework material with high adsorption selectivity for CO2 over N2[J].Journal of Molecular Structure,2016,1107:66-69.
[12] TERRANOVA Z L,PAESANI F.The effects of framework dynamics on the behavior of water adsorbed in the[Zn(l-L)(Cl)] and Co-MOF-74 metal-organic frameworks[J].Physical Chemistry Chemical Physics,2016,18(11):8196-8204.
[13] LU G,HUPP J T.Metal-organic frameworks as sensors:a ZIF-8 based Fabry-Pérot device as a selective sensor for chemical vapors and gases[J].Journal of the American Chemical Society,2010,132(31):7832-7833.
[14] BHATTACHARJEE S,FREDRIKSEN A,CHANDRA S.Fluctuations in electron cyclotron resonance plasma in a divergent magnetic field[J].Physics of Plasmas,2016,23(2):1-7.
[15] MEILIKHOV M,YUSENKO K,ESKEN D,et al. Metals@MOFs-loading MOFs with metal nanoparticles for hybrid functions[J].European Journal of Inorganic Chemistry,2010,2010(24):3701-3714.
[16] SHEKHA N O,WANG H,KOWARIK S,et al.Step-by-step route for the synthesis of metal-organic frameworks[J].Journal of the American Chemical Society,2007,129(30):15118-15119.
[17] YAZAYDIN A O,BENIN A I,FAHEEM S A,et al.Enhanced CO2 adsorption in metal-organic frameworks via occupation of open-metal sites by coordinated water molecules[J].Chemistry of Materials,2009,21(8):1425-1430.
[18] HU Y,LIAO J,WANG D,et al.Fabrication of gold nanopar-ticle-embedded metal-organic framework for highly sensitive surface-enhanced Raman scattering detection[J].Analytical Chemistry,2014,86(8):3955-3963.
[19] LU G,FARHA O K,KRENO L E,et al.Fabrication of metal-organic framework-containing silica-colloidal crystals for vapor sensing[J].Advanced Materials,2011,23(38):4449-4452.
[20] LI L,JIAO X,CHEN D,et al.Facile fabrication of ultrathin metal-organic framework-coated monolayer colloidal crystals for highly efficient vapor sensing[J].Chemical Materials,2015,27(22):7601-7609.
[21] LU Z Z,ZHANG R,LI Y Z,et al.Solvatochromic behavior of a nanotubular metal-organic framework for sensing small molecules[J].Journal of the American Chemical Society,2011,133(32):4172-4174.
[22] BEAUVAIS L G,SHORES M P,LONG J R.Cyano-bridged Re6Q8 (Q=S,Se) cluster-cobalt(II) framework materials:versatile solid chemical sensors[J].Journal of the American Chemical Society,2000,122(21):2763-2772.
[23] LEE H,JUNG S H,HAN W S,et al.Chromo-fluorogenic tetrazole-based CoBr2 coordination polymer gel as a highly sensitive and selective chemosensor for volatile gases containing chloride[J].Chemistry-A European Journal,2011,17(10):2823-2827.
[24] HE J,ZHA M,CUI J,et al.Convenient detection of Pd(II) by a metal-organic framework with sulfur and olefin functions[J].Journal of the American Chemical Society,2013,135(21):7807-7810.
[25] YAO R-X,CUI X,JIA X-X,et al.A luminescent Zinc(II) metal-organic framework (MOF) with conjugated π-electron ligand for high iodine capture and nitro-explosive detection[J].Inorganic Chemistry,2016,55(18):9270-9275.
[26] LI H,FENG X,GUO Y,et al.A malonitrile-functionalized metal-organic framework for hydrogen sulfide detection and selective amino acid molecular recognition[J].Scientific Report,2014,4:4366-4370.
[27] TAKASHIMA Y,MARTINEZ V M,FURUKAWA S,et al.Molecular decoding using luminescence from an entangled porous framework[J].Nature Communications,2011,2:168-175.
[28] ACHMANN S,HAGEN G,KITA J,et al.Metal-organic frameworks for sensing applications in the gas phase[J].Sensors,2009,9(3):1574-1589.
[29] CAMPBELL M G,SHEBERLA D,LIU S F,et al.Cu3(hexaiminotriphenylene)2:an electrically conductive 2D metal-organic framework for chemiresistive sensing[J].Angewandte Chemie International Edition,2015,54(14):4349-4352.
[30] GHAFFARI S A,CARON W O,LOUBIER M,et al.Electrochemical impedance sensors for monitoring trace amounts of NO3 in selected growing media[J].Sensors,2015,15(7):17715-17727.
[31] GOEDERS K M,COLTON J S,BOTTOMLEY L A.Microcantilevers:sensing chemical interactions via mechanical motion[J].Chemical Reviews,2008,108(2):522-542.
[32] ROBINSON A L,ALLENDORF M D,STAVILA V,et al. MOF films for microsensor coatings[C]//Materials Research Society Proceedings,San Francisco,CA,April 2011.
[33] SHEKHAH O,WANG H,KOWARIK S,et al.Step-by-step route for the synthesis of metal-organic frameworks[J].Journal of the American Chemical Society,2007,129(28):15118-15119.
[34] SASAKI I,TSUCHIYA H,NISHIOKA M,et al.Gas sensing with zeolite-coated quartz crystal microbalances-principal component analysis approach[J].Sensors and Actuators B,2002,86(1):26-33.
[35] CHOI S Y,LEE Y J,PARK Y S,et al.Monolayer assembly of zeolite crystals on glass with fullerene as the covalent linker[J].Journal of the American Chemical Society,2000,122(21):5201-5209.
[36] FILIPPOVA L,YU S V N,KOZLOVA N P,et al.Adsorption properties of the MOF-5 metal-organic framework in relation to water and benzene[J].Russian Journal of Applied Chemistry,2013,86(9):1388-1391.
[37] BIEMMI E,DARGA A,STOCK N,et al.Direct growth of Cu3(BTC)2(H2O)3·xH2O thin films on modified QCM-gold electrodes water sorption isotherms[J].Microporous and Mesoporous Materials,2008,114(1-3):380-386.
[38] AMELOOT R,STAPPERS L,FRANSAER J,et al.Patterned growth of metal-organic framework coatings by electrochemical synthesis[J].Chemical Materials,2009,21(13):2580-2582.
[39] ZYBAYLO O,SHEKHAH O,WANG H,et al.Thermal chemistry and photochemistry of hexafluoroacetone on rutile TiO2(110)[J]. Physical Chemistry Chemical Physics,2010,12:8085-8092.
[40] WANNAPAIBOON S,TU M,FISCHER R A.Liquid phase het-eroepitaxial growth of moisture-tolerant MOF-5 isotype thin films and assessment of the sorption properties by quartz crystal microbalance[J].Advanced Functional Materials,2014,24(18):2696-2705.
[41] DAVYDOVSKAYA P,RANFT A,LOTSCH B V,et al.Analyte detection with Cu-btc metal-organic framework thin films by means of mass-sensitive and work-function-based readout[J].Analytical Chemistry,2014,86(14):6948-6958.
[42] KITAGAWA S,MATSUDA R.Chemistry of coordination space of porous coordination polymers[J].Coordination Chemistry Reviews,2007,251(21/24):2490-2509.
[43] LEE J H,HOUK R T J,ROBINSON A,et al.Investigation of microcantilever array with ordered nanoporous coatings for selective chemical detection[J].Micro-and Nanotechnology Sensors,Systems,and Applications II,2010,7679:27-37. |