Citation: Hong-Dao LI, Li-Jun ZHAI, Yong-Bo SONG, Yu-Lan NIU. Two Nitronyl Nitroxide Biradical-Bridged Lanthanide One-Dimensional Chains: Crystal Structure, Magnetic Properties and Luminescent Behavior[J]. Chinese Journal of Inorganic Chemistry, ;2021, 37(5): 914-920. doi: 10.11862/CJIC.2021.113 shu

Two Nitronyl Nitroxide Biradical-Bridged Lanthanide One-Dimensional Chains: Crystal Structure, Magnetic Properties and Luminescent Behavior

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  • The rational design of 2p-4f chains, which are made of 4f ions and nitronyl nitroxide biradical, has been presented. The reaction of Ln(hfac)3·2H2O (hfac=hexafluoroacetylacetonate) and nitronyl nitroxide biradical BNPhOEt (BNPhOEt=1, 2-(bis-2, 2'-(4, 4, 5, 5-tetramethylimidazolyl-1-oxyl-3-oxide) phenoxy)ethane) afforded two isostructural chains of the formula[Ln(hfac)3(BNPhOEt)]·C6H14 (Ln=Tb (1), Ho (2)). Direct-current magnetic susceptibility studies show ferromagnetic 4f-radical interaction in Tb complex while antiferromagnetic interaction in Ho derivative. In addition, the luminescence emission spectra of two complexes vary depending on lanthanide ion.
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    1. [1]

      (a) Dossantos C, Harte A, Quinn S, Gunnlaugsson T. Coord. Chem. Rev., 2008, 252: 2512-2527
      (b) Wang X D, Wolfbeis O S, Meier R J. Chem. Soc. Rev., 2013, 42: 7834-7869
      (c) Silvi S, Credi A. Chem. Soc. Rev., 2015, 44: 4275-4289

    2. [2]

      Wernsdorfer W, Aliaga N A, Hendrickson D N, Christou G. Nature, 2002, 416: 406-409  doi: 10.1038/416406a

    3. [3]

      (a) Wernsdorfer W, Sessoli R. Science, 1999, 284: 133-135
      (b) Bogani L, Wernsdorfer L B. Nat. Mater., 2008, 7: 179-186

    4. [4]

      Hill S, Edwards R S, Aliaga N A, Christou G. Science, 2003, 302: 1015-1018  doi: 10.1126/science.1090082

    5. [5]

      (a) Guo Y N, Xu G F, Gamez P, Zhao L, Lin S Y, Deng R, Tang J K, Zhang H J. J. Am. Chem. Soc., 2010, 132: 8538-8539
      (b) Roy J J L, Ungur L, Korobkov I, Chibotaru L F, Murugesu M. J. Am. Chem. Soc., 2014, 136: 8003-8010
      (c) Qin L, Singleton J, Chen W P, Nojiri H, Engelhardt L, Winpenny R E P, Zheng Y Z. Angew. Chem. Int. Ed., 2017, 56: 16571-16574
      (d) Daniel N W, Richard A L, Richard E P W. Chem. Rev., 2013, 113: 5110-5148
      (e) Lu J J, Guo M, Tang J K. Chem. Asian J., 2017, 12: 2772-2779

    6. [6]

      Ishikawa N, Sugita M, Ishikawa T, Koshihara S Y, Kaizu Y. J. Am. Chem. Soc. , 2003, 125: 8694-8695  doi: 10.1021/ja029629n

    7. [7]

      Guo F S, Day B M, Chen Y C, Tong M L, Mansikkamäki A, Layfield R A. Science, 2018, 362: 1400-1403  doi: 10.1126/science.aav0652

    8. [8]

      (a) Han T, Shi W, Niu Z, Na B, Cheng P. Chem. Eur. J., 2013, 19: 994-1001
      (b) Liu R N, Li L C, Wang X L, Yang P P, Wang C, Liao D Z, Sutter J P. Chem. Commun., 2010, 46: 2566-2568
      (c) Yang M, Xie J, Sun Z, Li L C, Sutter J P. Inorg. Chem., 2017, 56: 13482-13490
      (d) Liu X Q, Zhang Y, Shi W, Cheng P. Inorg. Chem., 2018, 57: 13409-13414

    9. [9]

      (a) Zhou N, Ma Y, Wang C, Xu G F, Tang J K, Xu J X, Yan S P, Cheng P, Li L C, Liao D Z. Dalton Trans., 2009, 40: 8489-8492
      (b) Coronado E, Saiz C G, Recuenco A, Tarazón A, Romero F M, Camón A, Luis F. Inorg. Chem., 2011, 50: 7370-7372
      (c) Lv X H, Yang S L, Lia Y X, Zhang C X, Wang Q L. RSC Adv., 2017, 7: 38179-38186
      (d) Chen P Y, Wu M Z, Li T, Shi X J, Tian L, Liu Z Y. Inorg. Chem., 2018, 57: 12466-12470

    10. [10]

      (a) Bogani L, Sangregorio C, Sessoli R, Gatteschi D. Angew. Chem., Int. Ed., 2005, 44: 5817-5821
      (b) Bernot K, Bogani L, Caneschi A, Gatteschi D, Sessoli R. J. Am. Chem. Soc., 2006, 128: 7947-7956

    11. [11]

      Poneti G, Bernot K, Bogani L, Caneschi A, Sessoli R, Wernsdorferc W, Gatteschi D. Chem. Commun. , 2007, 18: 1807-1809

    12. [12]

      Bernot K, Pointillart F, Rosa P, Etienne M, Sessoli R, Gatteschi D. Chem. Commun. , 2010, 46: 6458-6460  doi: 10.1039/c0cc00966k

    13. [13]

      Li H D, Sun J, Yang M, Sun Z, Xie J, Ma Y, Li L C. New J. Chem. , 2017, 41: 10181-10188  doi: 10.1039/C7NJ02006F

    14. [14]

      Li H D, Guo J N, Sun G F, Xie J, Li L C. Inorg. Chem. Commun. , 2017, 85: 62-65  doi: 10.1016/j.inoche.2017.06.011

    15. [15]

      Sheldrick G M. SADABS, University of Göttingen, Germany, 2011.

    16. [16]

      (a) Sheldrick G M. SHELXS 2014, Program for the Solution of Crystal Structures, University of Göttingen, Germany, 2014.
      (b) Sheldrick G M. SHELXL-2014, Program for the Structure Refinement of Crystal Structures, University of Göttingen, Germany, 2014.

    17. [17]

      Spek A L. Acta Crystallogr. Sect. D, 2009, D65: 148-155

    18. [18]

      (a) Casanova D, Llunell M, Alemany P, Alvarez S. Chem. Eur. J., 2005, 11: 1479-1494
      (b) Llunell M, Casanova D, Cirera J, Alemany P, Alvarez S. SHAPE 2.1, University of Barcelona, Spain, 2013.

    19. [19]

      (a) Li L L, Liu S, Zhang Y, Shi W, Cheng P. Dalton Trans., 2015, 44: 6118-6125
      (b) Xiao Z X, Miao H, Shao D, Wei H Y, Zhang Y Q, Wang X Y. Chem. Commun., 2018, 54: 9726-9729
      (c) Sun P P, Yang S L, Zhang C X, Wang Q L. Polyhedron, 2018, 156: 155-160

    20. [20]

      (a) xu j x, ma y, liao d z, xu g f, tang j k, wang c, zhou n, yan s p, cheng p, li l c. inorg. chem., 2009, 48: 8890-8896
      (b) xu n, wang c, shi w, yan s p, cheng p, liao d z. eur. j. inorg. chem., 2011, 15: 2387-2393
      (c) ouyang y, zhang w, xu n, xu g f, liao d z, yoshimura k, yan s p, cheng p. inorg. chem., 2007, 46: 8454-8456

    21. [21]

      (a) Wang Y L, Gao Y Y, Ma Y, Wang Q L, Li L C, Liao D Z. CrystEngComm, 2012, 14: 4706-4712
      (b) Song M Y, Hou Y F, Wen L M, Wang S P, Yang S T, Zhang J J, Geng L N, Shi S K. J. Mol. Struct., 2016, 1107: 174-181
      (c) Wang Y L, Gao Y Y, Ma Y, Wang Q L, Li L C, Liao D Z. J. Solid. State Chem., 2013, 202: 276-281

    22. [22]

      Feng X, Li S H, Wang L Y, Zhao J S, Shi Z Q, Lei P P. CrystEngComm, 2012, 14: 3684-3693  doi: 10.1039/c2ce06151a

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