参考文献/References:
[1] GUO Xiangyang,ZENG Le,WANG Zhe,et al.Photocatalytic copper-catalyzed azide-alkyne cycloaddition click reaction with Cu(Ⅱ)coordination polymer[J].RSC Advances,2017,7(83):52907-52913.DOI:10.1039/C7RA10207K.
[2] LU Zhenyu,LU Xiaotian,ZHONG Yanhui,et al.Carbon dot-decorated porous organic cage as fluorescent sensor for rapid discrimination of nitrophenol isomers and chiral alcohols[J].Analytica Chimica Acta,2018,1050(7):146-153.DOI:10.1016/j.aca.2018.11.006.
[3] LU Chenjie,ZHANG Mingming,TANG Danting,et al.Fluorescent metallacage-core supramolecular polymer gel formed by orthogonal metal coordination and host-guest interactions[J].Journal of the American Chemical Society,2018,140(24):7674-7680.DOI:10.1021/jacs.8b03781.
[4] KÄSEBORN M,HOLSTEIN J J,CLEVER G H,et al.A new rotaxane-like cage-in-ring structural motif for a metallosupramolecular Pd6L12 aggregate[J].Angewandte Chemie International Edition,2018,57(37):12171-12175.DOI:10.1002/anie.201806814.
[5] KOSTYUCHENKO V A,LIM E X Y,ZHANG Shuijun,et al.Structure of the thermally stable Zika virus[J].Nature,2016,533:425-428.DOI:10.1038/nature17994.
[6] JIAO Jingjing,LI Zijian,QIAO Zhiwei,et al.Design and self-assembly of hexahedral coordination cages for cascade reactions[J].Nature Communications,2018,9(1):4423-4430.DOI:10.1038/s41467-018-06872-0.
[7] VRIEZEMA D M,ARAGONÈS M C,ELEMANS J A A W,et al.Self-assembled nanoreactors[J].Chemical Reviews,2005,105(4):1445-1490.DOI:10.1021/cr0300688.
[8] WANG Z J,CLARY K N,BERGMAN R G,et al.A supramolecular approach to combining enzymatic and transition metal catalysis[J].Nature Chemistry,2013,5(2):100-103.DOI:10.1038/nchem.1531.
[9] INOKUMA Y,KAWANO M,FUJITA M.Crystalline molecular flasks[J].Nature Chemistry,2011,3(5):349-358.DOI:10.1038/nchem.1031.
[10] HE Qiting,LI Xiangping,LIU Yu,et al.Copper(Ⅰ)cuboctahedral coordination cages: Host-guest dependent redox activity[J].Angewandte Chemie(International ed in English),2009,48(33):6156-6159.DOI:10.1002/anie.200902276.
[11] STANG P J.From solvolysis to self-assembly[J].The Journal of Organic Chemistry,2009,74(1):2-20.DOI:10.1021/jo801682d.
[12] NORTHROP B H,CHERCKA D,STANG P J.Carbon-rich supramolecular metallacycles and metallacages[J].Tetrahedron,2008,64(50):11495-11503.DOI:10.1016/j.tet.2008.08.062.
[13] SEIDEL S R,STANG P J.High-symmetry coordination cages via self-assembly[J].Accounts of Chemical Research,2002,35(11):972-983.DOI:10.1002/chin.200305277.
[14] LEININGER S,OLENYUK B,STANG P J.Self-assembly of discrete cyclic nanostructures mediated by transition metals[J].Chemical Reviews,2000,100(3):853-908.DOI:10.1021/cr9601324.
[15] CLEGG J K,LINDOY L F,MOUBARAKI B,et al.Triangles and tetrahedra: Metal directed self-assembly of metallo-supramolecular structures incorporating bis-β-diketonato ligands[J].Dalton Transactions,2004(16):2417-2423.
[16] CLEGG J K,LI Feng,JOLLIFFE K A,et al.An expanded neutral M4L6 cage that encapsulates four tetrahydrofuran molecules[J].Chemical Communications,2011,47(21):6042-6044.DOI:10.1039/c1cc11167a.
[17] MAL P,SCHULTZ D,BEYEH K,et al.An unlockable-relockable iron cage by subcomponent self-assembly[J].Angewandte Chemie International Edition,2008,120(43):8297-8301.DOI:10.1002/anie.200803066.
[18] MENG Wenjing,CLEGG J K,THOBURN J D,et al.Controlling the transmission of stereochemical information through space in terphenyl-edged Fe4L6 cages[J].Journal of the American Chemical Society,2011,133(34):13652-13660.DOI:10.1021/ja205254s.
[19] HRISTOVA Y R,SMULDERS M M J,CLEGG J K,et al.Selective anion binding by a “Chameleon” capsule with a dynamically reconfigurable exterior[J].Chemical Science,2011,2(4):638-641.DOI:10.1039/C0SC00495B.
[20] WANG Kai,CHEN Zilu,ZOU Huahong,et al.A single-stranded {GD18} nanowheel with a symmetric polydentate diacylhydrazone ligand[J].Chemical Communications,2016,52(53):8297-8300.DOI:10.1039/C6CC02208A.
[21] WANG Kai,CHEN Zilu,ZOU Huahong,et al.Diacylhydrazone-assembled {Ln11} nanoclusters featuring a “double-boats conformation” topology: Synthesis, structures and magnetism[J].Dalton Transactions,2018,47(7):2337-2343.DOI:10.1039/C7DT03179C.
[22] GUILHERME F D,SIMONETTI J É,FOLQUITTO L R S,et al.Synthesis, chemical characterization and antimicrobial activity of new acylhydrazones derived from carbohydrates[J].Journal of Molecular Structure,2019,1184:349-356.DOI:10.1016/j.molstruc.2019.02.045.
[23] LIANG Hua,LI Zongchen,WU Daqiang,et al.Ortho-hydroxyl-oriented tandem-responsive diacylhydrazones with super sensitivity for Al3+ and subsequent potential recognition of Cu2+[J].Sensors and Actuators B Chemical,2018,269:62-69.DOI:10.1016/j.snb.2018.04.159.
[24] MONFARED H H,VAHEDPOUR M,YEGANEH M M,et al.Concentration dependent tautomerism in green [Cu(HL1)(L2)] and brown [Cu(HL1)(L2)] with H2L1=(E)-N’-(2-hydroxy-3-methoxy benzylidene)-benzoylhydrazone and HL2=pyridine-4-carboxylic(isonicotinic)acid[J].Dalton Transactions,2011,40(6):1286-1294.DOI:10.1039/c0dt00371a.
[25] FOUNTOULAKI S,PERDIH F,TUREL I,et al.Non-steroidal anti-inflammatory drug diflunisal interacting with Cu(Ⅱ): Structure and biological features[J].Journal of Inorganic Biochemistry,2011,105(12):1645-1655.DOI:10.1016/j.jinorgbio.2011.09.004.
[26] 薛敏,刘世雄.含双水杨醛Schiff碱配体的双核配合物的合成及晶体结构[J].无机化学学报,2013,29(6):1319-1327.