Two new piperazine templated lanthanide sulfates with 2D corrugated layered crystal structures

Deng Zhang , Xin-rong Fan , Yun Lu , Yan Xu

Chemical Research in Chinese Universities ›› 2013, Vol. 29 ›› Issue (1) : 10 -14.

PDF
Chemical Research in Chinese Universities ›› 2013, Vol. 29 ›› Issue (1) : 10 -14. DOI: 10.1007/s40242-013-2110-2
Article

Two new piperazine templated lanthanide sulfates with 2D corrugated layered crystal structures

Author information +
History +
PDF

Abstract

Two new piperazine templated lanthanide sulfates (C4N2H12)1.5[Ln(SO4)3(H2O)]·H2O[Ln=Gd(1), Tb(2)] have been synthesized solvothermally and structurally characterized by single crystal X-ray diffraction(XRD), infrared(IR) spectroscopy, thermal analysis, fluorescent spectra and inductively coupled plasma(ICP). Single crystal X-ray diffraction reveals that both compounds 1 and 2 crystallized in the monoclinic crystal system, with space group P21/c and cell dimensions: a=0.64468(19) nm, b=2.9979(9) nm, c=0.9818(3) nm, β=101.271(4)°, V=1.8608(10) nm3, Z=4 for compound 1; a=0.64259(19) nm, b=3.0010(9) nm, c=0.9812(3) nm, β=101.229(4)°, V=1.8560(10) nm3, Z=4 for compound 2. Compounds 1 and 2 are isomorphous and have similar 2D corrugated inorganic frameworks fabricated via the connection of single chains and S2O4 groups, while fully protonated piperazine cations and water molecules are located between the inorganic layers. The solid state luminescent properties of compound 2 were investigated and it displayed a typical luminescent property of Tb3+ with excitation wavelength at 371 nm.

Keywords

Solvothermal synthesis / Lanthanide sulfate / Layered structure / Luminescence

Cite this article

Download citation ▾
Deng Zhang, Xin-rong Fan, Yun Lu, Yan Xu. Two new piperazine templated lanthanide sulfates with 2D corrugated layered crystal structures. Chemical Research in Chinese Universities, 2013, 29(1): 10-14 DOI:10.1007/s40242-013-2110-2

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Cheetham A. K., Ferey G., Loiseau T. Angew. Chem. Int. Ed., 1999, 38: 3268.

[2]

Natarajan S., Mandal S. Angew. Chem., Int. Ed., 2008, 47: 4798.

[3]

Kondo M., Okubo T., Asami A., Noro S., Yoshitomi T., Kitagawa S., Ishii T., Matsuzaka H., Seki K. Angew. Chem. Int. Ed., 1999, 38: 140.

[4]

Seo J. S., Whang D., Lee H., Jun S. I., Oh J., Jeon Y. J., Kim K. Nature, 2000, 404: 982.

[5]

Eddaoudi M., Kim J., Rosi N., Vodak D., Wachter J., O’Keeffe M., Yaghi O. M. Science, 2002, 295: 469.

[6]

Robinson F., Zaworotko M. J. Chem. Commun., 1995, 23: 2413.

[7]

Yaghi O. M., Li H. J. Am. Chem. Soc., 1996, 118: 295.

[8]

Gutschke S. O. H., Price D. J., Powell A. K., Wood P. T. Angew. Chem. Int. Ed., 2001, 40: 1920.

[9]

Pan L., Liu H., Lei X., Huang X., Olson D. H., Turro N. J., Li J. Angew. Chem. Int. Ed., 2003, 42: 542.

[10]

Hoskins B. F., Robson R. J. Am. Chem. Soc., 1990, 112: 1546.

[11]

Rao C. N. R., Behera J. N., Dan M. Chem. Soc. Rev., 2006, 35: 375.

[12]

Bunzli J. G., Piguet C. Chem. Soc. Rev., 2005, 34: 1048.

[13]

Choudhury A., Krishnamoorthy J., Rao C. N. R., Chem. Commun., 2001, 2610.

[14]

Doran M., Norquist A. J. O’Hare D., Chem. Commun., 2002, 2946.

[15]

Fu J., Zheng L., Zhang Z., Xu Y. Inorganica Chimica Acta, 2012, 383: 112.

[16]

Zhou W., Chen Q., Zhu D., Xu Y. Z. Anorg. Allg. Chem., 2009, 635: 572.

[17]

Zheng L., Xu Y., Zhang X., Zhang Z., Zhu D., Chen S., Elangovan S. P. CrystEngComm, 2010, 12: 694.

[18]

Zheng L., Qiu X., Xu Y., Fu J., Yuan Y., Zhu D., Chen S. CrystEngComm, 2011, 13: 2714.

[19]

Zheng L., Zhang Z., Zhu D., Xu Y. Inorg. Chem. Commun., 2011, 14: 258.

[20]

Zheng L., Qiu X., Zhang Z., Zhu D., Xu Y. Inorg. Chem. Commun., 2011, 14: 906.

[21]

Zhu Y., Zhou G., Xu Y., Zhu D., Zheng X. Z. Anorg. Allg. Chem., 2008, 634: 545.

[22]

Zhu Y., Sun X., Zhu D., Xu Y. Inorganica Chimica Acta, 2009, 362: 2565.

[23]

Xu Y., Ding S., Zheng X. J. Solid State Chem., 2007, 180: 2020.

[24]

Li H., Zhu Y., Zheng L., Xu Y. Chin. J. Inorg. Chem., 2011, 12: 2453.

[25]

Zhou W., Chen Q., Jiang N., Meng X., Zhu D., Xu Y. Inorganica Chimica Acta, 2009, 362: 3299.

[26]

Zhou W., Xu Y. Chin. J. Inorg. Chem., 2011, 12: 2507.

[27]

Bataille T., Louer D. J. Solid State Chem., 2004, 177: 1235.

[28]

Zhou W., Xu Y., Han L., Zhu D. Dalton Trans., 2010, 39: 3681.

[29]

Zhou W., Ding X., Zhang Z., Zheng L., Xu Y., Zhu D. Z. Anorg. Allg. Chem., 2010, 636: 882.

[30]

Xing Y., Shi Z., Li G., Pang W., Dalton Trans., 2003, 940.

[31]

Zhang D., Zheng L., Qiu X., Xu Y., Fu J., Zhu D. RSC Adv., 2012, 2: 217.

[32]

Dan M., Behera J. N., Rao C. N. R. J. Mater. Chem., 2004, 14: 1257.

[33]

Bataille T., Louer D. J. Mater. Chem., 2002, 12: 3487.

[34]

Zhou Y. S., Xu D. H., Zhang L. J. Chem. Res. Chinese Universites, 2010, 26(6): 866.

[35]

Ge G., Liu M. P., Ni Z. G., Du H. B. Chem. J. Chinese Universites, 2011, 32(3): 644.

[36]

Sheldrick G. M. SHELXTL Version 5.10, 1997, Wisconsion, USA: Bruker AXS Inc. Madsion.

AI Summary AI Mindmap
PDF

130

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/