Citation: SHI Chang-Dong, CHEN Sheng, CHENG Mei-Ling, RONG Hong-Ren, LAI Li-Fang, LIU Wen-Long, LIU Qi. Syntheses, Structures, and Luminescent Properties of Cadium and Copper Complexes Containing Pyrazole Carboxylic Acid of Uncoordinated Carboxyl Group[J]. Chinese Journal of Inorganic Chemistry, ;2017, 33(1): 89-96. doi: 10.11862/CJIC.2016.278 shu

Syntheses, Structures, and Luminescent Properties of Cadium and Copper Complexes Containing Pyrazole Carboxylic Acid of Uncoordinated Carboxyl Group

Figures(6)

  • Two new complexes[Cd(Hcmdpca)2(phen)(H2O)] (1) and [Cu2(Hcmdpca)2(phen)4(NO3)2]·4H2O (2) (H2cmdpca=1-carboxymethyl-3,5-dimethyl-1H-pyrazole-4-carboxylic acid, phen=phenanthroline) have been synth-esized and characterized by IR spectra, elemental analysis, single crystal X-ray diffraction, thermogravimetric analysis. Complexes 1 and 2 all crystallize in the monoclinic system and their space group are C2/c and P21/c, respectively. In 1, Cd(Ⅱ) ion takes seven-coordination mode, and Hcmdpca- anion bridges adjacent Cd(Ⅱ) ions to generate a dinuclear structure; these dinuclear structure units are assembled into a 3D network via hydrogen bonds and π-π interactions. 2 is an independent unit consisted of two discrete mononuclear Cu(Ⅱ) complex cations, each Cu(Ⅱ) ion is located in a distorted octahedral geometry. These mononuclear Cu(Ⅱ) complex cations and NO3- ions are connected by electrostatic interactions and hydrogen bonds, producing a 3D supramolecular network, and the hollow space of the network are occupied by water molecules. The thermal stability and luminescent property of the complexes are also investigated. CCDC:1495594, 1; 1495595, 2.
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    1. [1]

      Ohara K, Kawano M, Inokuma Y, et al. J. Am. Chem. Soc., 2010,132(1):30-31  doi: 10.1021/ja908794n

    2. [2]

      Yoon M, Srirambalaji R, Kim K, et al. Chem. Rev., 2012, 112(2):1196-1231  doi: 10.1021/cr2003147

    3. [3]

      Furukawa H, Cordova K E, O'Keeffe M, et al. Science, 2013, 341(6149):1230444(12 pages)  doi: 10.1126/science.1230444

    4. [4]

      O'Keeffe M, Yaghi O M. Chem. Rev., 2012,112(2):675-702  doi: 10.1021/cr200205j

    5. [5]

      Rosi N L, Eckert J, Eddaoudi M, et al. Science, 2003,300(5622):1127-1129  doi: 10.1126/science.1083440

    6. [6]

      Choi H J, Dinc M, Long J R, et al. J. Am. Chem. Soc., 2008, 130(25):7848-7850  doi: 10.1021/ja8024092

    7. [7]

      Kreno L E, Leong K, Farha O K, et al. Chem. Rev., 2012,112(2):1105-1125  doi: 10.1021/cr200324t

    8. [8]

      Yang P, Wang M S, Shen J J, et al. Dalton Trans., 2014,43(3):1460-1470  doi: 10.1039/C3DT52500G

    9. [9]

      Wang H Y, Wu Y, Leong C F, et al. Inorg. Chem., 2015,54(22):10766-10775  doi: 10.1021/acs.inorgchem.5b01803

    10. [10]

      Férey G, Millange F, Morcrette M, et al. Angew. Chem. Int. Ed., 2007,46(18):3259-3263  doi: 10.1002/(ISSN)1521-3773

    11. [11]

      Liu Q, Yu L L, Wang Y, et al. Inorg. Chem., 2013,52(6): 2817-2822  doi: 10.1021/ic301579g

    12. [12]

      Nagarathinam M, Saravanan K, Phua E J H, et al. Angew. Chem. Int. Ed., 2012,124(24):5968-5972  doi: 10.1002/ange.201200210

    13. [13]

      Shi C, Xia Q, Xue X, et al. RSC Adv., 2016,6(6):4442-4447  doi: 10.1039/C5RA22038F

    14. [14]

      Liu X, Shi C, Zhai C, et al. ACS Appl. Mater. Interfaces, 2016,8(7):4585-4591  doi: 10.1021/acsami.5b10781

    15. [15]

      Liu Q, Liu X, Shi C, et al. Dalton Trans., 2015,44(44):19175-19184  doi: 10.1039/C5DT02918J

    16. [16]

      Su Z, Chen M, Okamura T, et al. Inorg. Chem., 2011,50(3): 985-991  doi: 10.1021/ic101618n

    17. [17]

      Zhang Z, Yoshikawa H, Awaga K. J. Am. Chem. Soc., 2014, 136(46):16112-16115  doi: 10.1021/ja508197w

    18. [18]

      WANG Cui-Juan , MAO Kai-Li, DAI Hai-Yu. Chinese J. Inorg. Chem., 2015, 31(11):2221-2228
       

    19. [19]

      Procopio E Q, Linares F, Montoro C, et al. Angew. Chem. Int. Ed., 2010,49(40):7308-7311  doi: 10.1002/anie.v49:40

    20. [20]

      Montoro C, Linares F, Procopio E Q, et al. J. Am. Chem. Soc., 2011,133(31):11888-11891  doi: 10.1021/ja2042113

    21. [21]

      Tu B, Pang Q, Ning E, et al. J. Am. Chem. Soc., 2015,137(42):13456-13459  doi: 10.1021/jacs.5b07687

    22. [22]

      ZHAI Chang-Wei, CHENG Mei-Ling, HAN Wei, et al. Chinese J. Inorg. Chem., 2015,31(7):1409-1416
       

    23. [23]

      Cheng M L, Han W, Liu Q, et al. J. Coord. Chem., 2014,67(2):215-226  doi: 10.1080/00958972.2013.879983

    24. [24]

      REN Yan-Qiu, HAN Wei, CHENG Mei-Ling , et al. Chinese J. Inorg. Chem., 2014,30(11):2635-2644
       

    25. [25]

      Wang L D, Tao F, Cheng M L, et al. J. Coord. Chem., 2012, 65(6):923-933  doi: 10.1080/00958972.2012.663494

    26. [26]

      Chen L T, Tao F, Wang L D, et al. Z. Anorg. Allg. Chem., 2013,639(3/4):552-557

    27. [27]

      Su S, Cheng M L, Ren Y, et al. Transition Met. Chem., 2014,39(5):559-566  doi: 10.1007/s11243-014-9833-x

    28. [28]

      Cheng M L, Tao F, Chen L, et al. Inorg. Chim. Acta, 2015, 429(1):22-29

    29. [29]

      Liu J, Cheng M L, Yu L L, et al. RSC Adv., 2016,6(57): 52040-52047  doi: 10.1039/C6RA10989F

    30. [30]

      Xia Q, Ren Y, Cheng M L, et al. J. Coord. Chem., 2015,68(10):1688-1704  doi: 10.1080/00958972.2015.1020305

    31. [31]

      Chen S, Cheng M L, Ren Y, et al. Z. Anorg. Allg. Chem., 2015,641(3/4):610-616

    32. [32]

      LIU Xiu-Xiu, CHENG Mei-Ling, REN Yan-Qiu, et al. Chinese J. Inorg. Chem., 2015,31(3):611-618
       

    33. [33]

      Sheldrick G M. SHELXS-97, Program for X-ray Crystal Structure Determination, University of Göttingen, Germany, 1997.

    34. [34]

      Sheldrick G M. SHELXL-97, Program for X-ray Crystal Structure Determination, University of Göttingen, Germany, 1997.

    35. [35]

      Gadzikwa T, Farha O K, Mulfort K L, et al. Chem. Commun., 2009:3720-3722

    36. [36]

      Shi Z Q, Li Y Z, Guo Z J, et al. CrystEngComm, 2014,16(5): 900-909  doi: 10.1039/C3CE41966E

    37. [37]

      Li M, Peng Y F, Zhao S, et al. RSC Adv., 2014,4(27):14241-14247  doi: 10.1039/c4ra00531g

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