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Chin. Phys. B, 2021, Vol. 30(5): 057501    DOI: 10.1088/1674-1056/abe233
CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES Prev   Next  

Absence of magnetic order in dichloro [1,2-bis (diphenylphosphino) ethane] nickel2 + single crystal

Shuaiqi Ma(马帅奇)1,3, Linlin An(安琳琳)2,3, and Xiangde Zhu(朱相德)3,†
1 Institute of Physical Science and Information Technology, Anhui University, Hefei 230601, China;
2 School of Electronic Science and Applied Physics, Hefei University of Technology, Hefei 230009, China;
3 Anhui Province Key Laboratory of Condensed Matter Physics at Extreme Conditions, High Magnetic Field Laboratory, Chinese Academy of Sciences, Hefei 230031, China
Abstract  Dichloro [1,2-bis (diphenylphosphino) ethane] nickel2+ (NiCl2(dppe)) is an organic compound containing C26H24P2(dppe) molecules and Cl-, Ni2+ ions. The large-size NiCl2(dppe) single crystals with longest dimension of 4 mm were grown by the method of slow evaporation of organic solution. Single crystal x-ray diffraction spectrum indicates that the single crystal is of high quality. Magnetization results of the NiCl2(dppe) single crystals show an anisotropic paramagnetism behavior and diamagnetic background, which come from Ni2+ ions and benzene ring, respectively. However, according to the specific heat results with temperature down to 0.1 K and magnetic field up to 14 T, no expected field-induced quantum phase transition was observed in NiCl2(dppe) single crystals.
Keywords:  anisotropic      paramagnetic      single crystal      ultra low temperature      specific heat  
Received:  07 January 2021      Revised:  26 January 2021      Accepted manuscript online:  02 February 2021
PACS:  75.30.Gw (Magnetic anisotropy)  
  78.30.Jw (Organic compounds, polymers)  
  65.40.Ba (Heat capacity)  
Fund: Project supported by the National Key Research and Development Program of China (Grant No. 2017YFA0403502), the National Natural Science Foundation of China, and Youth Innovation Promotion Association of Chinese Academy of Sciences (Grant No. 2017483). A portion of this work was supported by the High Magnetic Field Laboratory of Anhui Province, China.
Corresponding Authors:  Xiangde Zhu     E-mail:  xdzhu@hmfl.ac.cn

Cite this article: 

Shuaiqi Ma(马帅奇), Linlin An(安琳琳), and Xiangde Zhu(朱相德) Absence of magnetic order in dichloro [1,2-bis (diphenylphosphino) ethane] nickel2 + single crystal 2021 Chin. Phys. B 30 057501

[1] Einstein A 1924 Sitzber Preuss Akad 261
[2] Bose 1924 Z. Phys. 26 178
[3] Lai C W, Kim N Y, Utsunomiya S, Roumpos G, Deng H, Fraser M D, Byrnes T, Recher P, Kumada N, Fujisawa T and Yamamoto Y 2007 Nature 450 529
[4] Plumhof J D, Stoferle T, Mai L J, Scherf U and Mahrt R F 2014 Nat. Mater. 13 248
[5] Donley E A, Claussen N R, Cornish S L, Roberts J L, Cornell E A and Wieman C E 2001 Nature 412 295
[6] Bloch I, Hansch T W and Esslinger T 2000 Nature 403 166
[7] Zapf V, Jaime M and Batista C D 2014 Rev. Mod. Phys. 86 563
[8] Giamarchi T, Ruegg C and Tchernyshyov O 2008 Nat. Phys. 4 198
[9] Bloch F 1930 Z. Phys. 61 206
[10] Matsubara T and Matsuda H 1956 Prog. Theor. Phys. 16 569
[11] Nikuni T, Oshikawa M, Oosawa A and Tanaka H 2000 Phys. Rev. Lett. 84 5868
[12] Ruegg C, Cavadini N, Furrer A, Gudel H U, Kramer K, Mutka H, Habicht A K, Vorderwisch P and Wildes A 2003 Nature 423 62
[13] Jaime M, Correa V F, Harrison N, Batista C D, Kawashima N, Kazuma Y, Jorge G A, Stern R, Heinmaa I, Zvyagin S A, Sasago Y and Uchinokura K 2004 Phys. Rev. Lett. 93 087203
[14] Zapf V S, Zocco D, Hansen B R, Jaime M, Harrison N, Batista C D, Kenzelmann M, Niedermayer C, Lacerda A and Paduan A 2006 Phys. Rev. Lett. 96 077204
[15] Andrianov S N and Moiseev S A 2014 Phys. Rev. A 90 0423031
[16] Spek A L, Vaneijck B P, Jans R J F and Vankoten G 1987 Acta Crystallogr. Sect. C-Cryst. Struct. Commun. 43 1878
[17] Busby R, Hursthouse M B, Jarrett P S, Lehmann C W, Malik K M A and Phillips C 1993 J. Chem. Soc. Dalton. 3767
[18] Oberhauser W, Bachmann C, Stampfl T, Haid R and Bruggeller P 1997 Polyhedron 16 2827
[19] Davison J C, Foreman M R S, Howie R A, Plater M J and Skakle J M S 2001 Acta Crystallogr. Sect. C-Cryst. Struct. Commun. 57 690
[20] Benial A M F, Ramakrishnan V and Murugesan R 2002 Spectrochim Acta A 58 1703
[21] Gao W, Li K and Wang X L 2013 Asian. J. Chem. 25 7876
[22] Pauling L 1936 J. Chem. Phys. 4 673
[23] Lykos P G and Parr R G 1958 J. Chem. Phys. 28 361
[24] Haberditzl W 1966 Angew. Chem. Int. Edit. 5 288
[25] Honda Z, Asakawa H and Katsumata K 1998 Phys. Rev. Lett. 81 2566
[26] Paduan A, Gratens X and Oliveira N F 2004 Phys. Rev. B 69 0204051
[27] Blundell S 2009 Magnetism in condensed matter (Peking: Science Press) p. 93
[28] Salvador M, Gasparini N, Perea J D, Paleti H, Distler A, Inasaridze L N, Troshin P A, Luer L, Egelhaaf H J and Brabec C 2017 Energy Environ. Sci. 10 2005
[29] Huang Y L, Yang R, Li P G and Xiao H 2020 Chin. Phys. B 29 097405
[30] Tari A 2003 The Specific Heat of Matter at Low Temperatures (London:Imperial College Press) p. 150
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