Transition Metal Chemistry

, Volume 40, Issue 2, pp 227–233 | Cite as

Syntheses, crystal structures and luminescence properties of two copper(II) complexes with terpyridine and dicarboxylate ligands

  • Wei-Wei Fu
  • Shi-Qi Ye
  • Yang Liu
  • Man-Sheng Chen
  • Dai-Zhi Kuang
Article

Abstract

Two coordination complexes [Cu(phtpy)(obda)]·2H2O (1) and [Cu4(meophtpy)4(mbda)4]·4H2O (2) [phtpy = 4′-phenyl-2,2′:6′,2″-terpyridine, meophtpy = 4′-(4-methoxyphenyl)-2,2′:6′,2″-terpyridine, H2obda = 1,2-benzenedicarboxylic acid and H2mbda = 1,3-benzenedicarboxylic acid] have been synthesized under hydrothermal conditions and characterized by IR, elemental analysis and X-ray single-crystal diffraction. In complex 1, the Cu(II) atoms are bridged by obda2− ligands to give 1D chains with phtpy as a terminal ligand, while a 3D network is constructed by hydrogen bonds and π–π interactions. In complex 2, the Cu(II) atoms are coordinated by two meophtpy ligands and also linked by mbda2− ligands forming a discrete tetranuclear complex. In this complex also, a 3D network is constructed by hydrogen bonds and π–π interactions. The most striking feature of complex 2 is that one meophtpy ligand is almost overlapped upon the next which is seldom found in 2,2′:6′,2″-terpyridine complexes. The luminescence properties of both complexes 1 and 2 have been investigated.

Keywords

Luminescence Property Apical Site Terpyridine Symmetry Code Terpy 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

Notes

Acknowledgments

Financial support by the Key Discipline Project of Hunan Province, the Open Fund of Key Laboratory of Functional Organometallic Materials of Hunan Province College (GN14K02), the Scientific Research Fund of Hunan Provincial Education Department (14A021) and Aid program for Science and Technology Innovative Research Team in Higher Educational Institutions of Hunan Province are gratefully acknowledged.

References

  1. 1.
    McMurtrie J, Dance I (2009) CrystEngComm 11:1141CrossRefGoogle Scholar
  2. 2.
    McMurtrie J, Dance I (2010) CrystEngComm 12:3207CrossRefGoogle Scholar
  3. 3.
    Misra P, Liao C-Y, Wei H-H, Mohanta S (2008) Polyhedron 27:1185CrossRefGoogle Scholar
  4. 4.
    Alcock NW, Barker PR, Haider JM, Hannon MJ, Painting CL, Pikramenou Z, Plummer EA, Rissanen K, Saarenketo P (2000) J Chem Soc, Dalton Trans 9:1447CrossRefGoogle Scholar
  5. 5.
    Chen XG, Zhou QG, Cheng YX, Geng YH, Ma DG, Xie ZY, Wang LX (2007) J Lumin 126:81CrossRefGoogle Scholar
  6. 6.
    Zhou W, Wang XY, Hu M, Guo ZJ (2013) J Inorg Biochem 121:114CrossRefGoogle Scholar
  7. 7.
    Chen GJ, Wang ZG, Kou YY, Tian JL, Yan SP (2013) J Inorg Biochem 122:49CrossRefGoogle Scholar
  8. 8.
    Senechal K, Toupet L, Ledoux I, Zyss J, Le Bozec H, Maury O (2004) Chem Commun 40:2180Google Scholar
  9. 9.
    Sénéchal-David K, Hemeryck A, Tancrez N, Toupet L, Williams JAG, Ledoux I, Zyss J, Boucekkine A, Guégan J-P, Le Bozec H, Maury O (2006) J Am Chem Soc 128:12243CrossRefGoogle Scholar
  10. 10.
    Ma Z, Lu WB, Liang BH, Pombeiro AJL (2013) New J Chem 37:1529CrossRefGoogle Scholar
  11. 11.
    Pu AT, Yang J, Kan WQ, Yang Y, Ma JF (2013) Polyhedron 50:556CrossRefGoogle Scholar
  12. 12.
    Li N, Gou L, Hu HM, Chen SH, Chen XL, Wang BC, Wu QR, Yang ML, Xue GL (2009) Inorg Chim Acta 362:3475CrossRefGoogle Scholar
  13. 13.
    Xu JX, Wang RY, Li YM, Gao ZY, Yao R, Wang S, Wu BL (2012) Eur J Inorg Chem 2012:3349CrossRefGoogle Scholar
  14. 14.
    Wang Y, Cui SX, Wang L, Zhang XY, Li B, Zhang JP (2010) CrystEngComm 12:2734CrossRefGoogle Scholar
  15. 15.
    Liu P, Yang GP, Wang YY, Wen GL, Guo CY, Shi QZ (2009) Inorg Chem Commun 12:263CrossRefGoogle Scholar
  16. 16.
    Guo J, Ma JF, Li JJ, Yang J, Xing SX (2012) Cryst Growth Des 12:6074CrossRefGoogle Scholar
  17. 17.
    Fu F, Li DS, Zhao J, Dong WW (2009) Chin J Struct Chem 28:925Google Scholar
  18. 18.
    Banerjee K, Biradha K (2012) Cryst Growth Des 12:4264CrossRefGoogle Scholar
  19. 19.
    Liu P, Wang YY, Li DS, Ma HR, Shi QZ, Lee GH, Peng SM (2005) Inorg Chim Acta 358:3807CrossRefGoogle Scholar
  20. 20.
    Xie HZ, Wei DY (2011) Russ J Coord Chem 37:600CrossRefGoogle Scholar
  21. 21.
    Mei CZ, Lei QD, Zhang P (2010) Acta Cryst. E 66:m346CrossRefGoogle Scholar
  22. 22.
    Cano J, De Munno G, Luis Sanz J, Ruiz R, Faus J, Lloret F, Julve M, Caneschi A (1997) J Chem Soc Dalton Trans 33:1915Google Scholar
  23. 23.
    Wang PS, Moorefield CN, Panzer M, Newkome GR (2005) Chem Commun 35:4405CrossRefGoogle Scholar
  24. 24.
    Wang PS, Moorefield CN, Panzner M, Newkome GR (2006) Cryst Growth Des 6:1563CrossRefGoogle Scholar
  25. 25.
    Zhang LL, Zang SQ, Li ZJ (2012) Synth React Inorg, Met-Org, Nano-Met Chem 42:1356CrossRefGoogle Scholar
  26. 26.
    Toscano RA, Martinez-Vargas S, Valdes-Martinez J (2006) Acta Cryst E 62:m846CrossRefGoogle Scholar
  27. 27.
    Roy S, Saha S, Majumdar R, Dighe RR, Chakravarty AR (2010) Polyhedron 29:3251CrossRefGoogle Scholar
  28. 28.
    Rajalakshmi S, Weyhermüller T, Dinesh M, Nair BU (2012) J Inorg Biochem 117:48CrossRefGoogle Scholar
  29. 29.
    Wang J, Hanan GS (2005) Synlett 2005:1251Google Scholar
  30. 30.
    Sheldrick GM (2008) Acta Crystallogr A 64:112Google Scholar
  31. 31.
    Wang XM, Ren CY, Zhang WT, Zhou X, Liu Y, Liu P, Wang YY (2014) J Inorg Organomet Polym 24:560CrossRefGoogle Scholar
  32. 32.
    Shi WJ, Hou L, Li D, Yin YG (2007) Inorg Chim Acta 360:588CrossRefGoogle Scholar
  33. 33.
    Blake AJ, Hubberstey P, Suksangpanya U, Wilson CL (2000) Chem. J Soc Dalton Trans 36:3873Google Scholar
  34. 34.
    Su CY, Pan M (2010) Foundation and progress of coordination supramolecular structural chemistry. Science Press, Beijing (in Chinese)Google Scholar
  35. 35.
    Li DM, Zhang Q, Wang P, Wu JY, Kan YH, Tian YP, Zhou HP, Yang JX, Tao XT, Jiang MH (2011) Dalton Trans 40:8170CrossRefGoogle Scholar

Copyright information

© Springer International Publishing Switzerland 2015

Authors and Affiliations

  • Wei-Wei Fu
    • 1
  • Shi-Qi Ye
    • 1
  • Yang Liu
    • 1
  • Man-Sheng Chen
    • 1
  • Dai-Zhi Kuang
    • 1
  1. 1.Key Laboratory of Functional Organometallic Materials of Hunan Province College, Department of Chemistry and Materials ScienceHengyang Normal UniversityHengyangChina

Personalised recommendations