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Erschienen in: Journal of Materials Science 19/2018

29.05.2018 | Mechanochemical Synthesis

Mechanochemical synthesis and characterization of Ni25Te75 nanocrystalline alloy

verfasst von: K. F. Ulbrich, C. E. M. Campos

Erschienen in: Journal of Materials Science | Ausgabe 19/2018

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Abstract

Ni25Te75 nanocrystalline alloy containing trigonal NiTe2 and Te nanocrystals was prepared through mechanochemical processing of pure elemental tellurium and nickel powders in argon atmosphere. The Ni25Te75 samples processed from 3 h to 30 h milling times were characterized by X-ray powder diffraction, transmission electron microscopy, magnetization and Raman spectroscopy. Trigonal NiTe2 crystals with average size of 16 nm can be obtained after only 3 h of processing time. For longer milling times, the trigonal NiTe2 phase becomes majority (about 70% with 30% for nanometric Te and no pure Ni was detected) and its average crystallite size slightly increases to 20 nm. Transmission electron microscopy images and electron diffraction patterns confirm the nanometric size of the crystalline domains in the agglomerated particles. The magnetic properties of the Ni25Te75 powders are dependent on synthesis time, suggesting a paramagnetic behavior mainly associated with the NiTe2 nanophase. Raman spectra showed peaks that can be associated with unreacted Te and tellurium oxides modes, but it also showed several modes that can be attributed to trigonal NiTe2 nanophase. The high-pressure experiments showed no phase transitions for NiTe2 up to 17 GPa and Te phase transitions from form I to forms II and III occurred simultaneously at 4.5 GPa, remaining up to 12 GPa; after that, only reflections of Te-III and the NiTe2 were observed. All the phase transitions observed with pressure are reversible after decompression. The bulk modulus determined from the least-squares fit of first-order Murnaghan equation of states is 110 GPa for the NiTe2 nanophase and 28 GPa for Te-I.

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Literatur
1.
Zurück zum Zitat Predel B. Ni-Te (Nickel-Tellurium). In: Madelung O. (eds) Ni-Np–Pt-Zr. Landolt-Börnstein—Group IV Physical Chemistry (Numerical Data and Functional Relationships in Science and Technology), vol 5I. Springer, Berlin, Heidelberg; and references therein Predel B. Ni-Te (Nickel-Tellurium). In: Madelung O. (eds) Ni-Np–Pt-Zr. Landolt-Börnstein—Group IV Physical Chemistry (Numerical Data and Functional Relationships in Science and Technology), vol 5I. Springer, Berlin, Heidelberg; and references therein
2.
Zurück zum Zitat Lee SH, Kim SY, Kim SM, Jeong JI, Kim SJ (2017) Fabrication of transparent NiTe2 electrodes via magnetron sputtering combined with chemical exfoliation. J Alloy Compd 704:607–613CrossRef Lee SH, Kim SY, Kim SM, Jeong JI, Kim SJ (2017) Fabrication of transparent NiTe2 electrodes via magnetron sputtering combined with chemical exfoliation. J Alloy Compd 704:607–613CrossRef
3.
Zurück zum Zitat Lei YX, Zhou JP, Wang JZ, Miao NX, Guo ZQ, Hassan Q (2017) Novel magnetic properties of uniform NiTex nanorods selectively synthesized by hydrothermal method. Mater Des 117:390–395CrossRef Lei YX, Zhou JP, Wang JZ, Miao NX, Guo ZQ, Hassan Q (2017) Novel magnetic properties of uniform NiTex nanorods selectively synthesized by hydrothermal method. Mater Des 117:390–395CrossRef
4.
Zurück zum Zitat Li B, Xie Y, Huang J, Su H, Qian Y (1999) Solvothermal synthesis to NiE2 (E=Se, Te) nanorods at low temperature. Nanostruct Mater 11:1067–1071CrossRef Li B, Xie Y, Huang J, Su H, Qian Y (1999) Solvothermal synthesis to NiE2 (E=Se, Te) nanorods at low temperature. Nanostruct Mater 11:1067–1071CrossRef
5.
Zurück zum Zitat Jiang L, Zhu YJ, Cui JB (2010) Cetyltrimethylammonium bromide assisted self-assembly of NiTe2 nanoflakes: nanoflake arrays and their photoluminescence properties. J Solid State Chem 183:2358–2364CrossRef Jiang L, Zhu YJ, Cui JB (2010) Cetyltrimethylammonium bromide assisted self-assembly of NiTe2 nanoflakes: nanoflake arrays and their photoluminescence properties. J Solid State Chem 183:2358–2364CrossRef
6.
Zurück zum Zitat Liu X, Hu R, Chai L, Li H, Gu J, Qian Y (2009) Synthesis and characterization of hexagonal NiTe2 nanoplates. J Nanosci Nanotechnol 9:2715–2718CrossRef Liu X, Hu R, Chai L, Li H, Gu J, Qian Y (2009) Synthesis and characterization of hexagonal NiTe2 nanoplates. J Nanosci Nanotechnol 9:2715–2718CrossRef
7.
Zurück zum Zitat Anand TJS, Zaidan M (2014) Electro Synthesised NiTe2 Thin Films with the Influence of Additives. Adv Mater Res 925:159–163CrossRef Anand TJS, Zaidan M (2014) Electro Synthesised NiTe2 Thin Films with the Influence of Additives. Adv Mater Res 925:159–163CrossRef
8.
Zurück zum Zitat Shi L, Zhao T (2017) Recent advances in inorganic 2D materials and their applications in lithium and sodium batteries. J Mater Chem A 5:3735–3758CrossRef Shi L, Zhao T (2017) Recent advances in inorganic 2D materials and their applications in lithium and sodium batteries. J Mater Chem A 5:3735–3758CrossRef
9.
Zurück zum Zitat Chhowalla M, Shin HS, Eda G, Li LJ, Loh KP, Zhang H (2013) Nat Chem 5:263–275CrossRef Chhowalla M, Shin HS, Eda G, Li LJ, Loh KP, Zhang H (2013) Nat Chem 5:263–275CrossRef
10.
Zurück zum Zitat Gong L, Yan L, Zhou R, Xie J, Wu W, Gu Z (2017) Two-dimensional transition metal dichalcogenide nanomaterials for combination cancer therapy. J Mater Chem B 5:1873–1895CrossRef Gong L, Yan L, Zhou R, Xie J, Wu W, Gu Z (2017) Two-dimensional transition metal dichalcogenide nanomaterials for combination cancer therapy. J Mater Chem B 5:1873–1895CrossRef
11.
12.
Zurück zum Zitat Tonkov EY (1992) High pressure phase transformations handbook 1. CRC Press, Boca Raton, p 591 Tonkov EY (1992) High pressure phase transformations handbook 1. CRC Press, Boca Raton, p 591
13.
Zurück zum Zitat Takumi M, Masamitsu T, Nagata K (2002) X-ray structural analysis of the high-pressure phase III of tellurium. J Phys: Condens Matter 14:10609–10613 Takumi M, Masamitsu T, Nagata K (2002) X-ray structural analysis of the high-pressure phase III of tellurium. J Phys: Condens Matter 14:10609–10613
14.
Zurück zum Zitat TOPAS, v4.2 (2009) Bruker AXS. Karlsruhe, Germany TOPAS, v4.2 (2009) Bruker AXS. Karlsruhe, Germany
15.
Zurück zum Zitat Inorganic Crystal Structure Database - ICSD (2007) Gmelin-Institut für Anorganische Chemie and Fachinformationszentrum. FIZ, Karlsruhe Inorganic Crystal Structure Database - ICSD (2007) Gmelin-Institut für Anorganische Chemie and Fachinformationszentrum. FIZ, Karlsruhe
16.
Zurück zum Zitat Rai BK, Bist HD, Katiyar RS, Chen KT, Burger A (1996) Controlled micro oxidation of CdTe surface by laser irradiation: a micro-spectroscopic study. J Appl Phys 80:477–481CrossRef Rai BK, Bist HD, Katiyar RS, Chen KT, Burger A (1996) Controlled micro oxidation of CdTe surface by laser irradiation: a micro-spectroscopic study. J Appl Phys 80:477–481CrossRef
17.
Zurück zum Zitat Mirgorodsky P, Merle-Méjean T, Champarnaud JC, Thomas P, Frit B (2000) Dynamics and structure of TeO2 polymorphs: model treatment of paratellurite and tellurite; Raman scattering evidence for new γ-and δ-phases. J Phys Chem Solids 61:501–509CrossRef Mirgorodsky P, Merle-Méjean T, Champarnaud JC, Thomas P, Frit B (2000) Dynamics and structure of TeO2 polymorphs: model treatment of paratellurite and tellurite; Raman scattering evidence for new γ-and δ-phases. J Phys Chem Solids 61:501–509CrossRef
18.
Zurück zum Zitat Parthasarathy G, Holzapfel WB (1988) High-pressure structural phase transitions in tellurium. Phys Rev 37:8499–8501CrossRef Parthasarathy G, Holzapfel WB (1988) High-pressure structural phase transitions in tellurium. Phys Rev 37:8499–8501CrossRef
Metadaten
Titel
Mechanochemical synthesis and characterization of Ni25Te75 nanocrystalline alloy
verfasst von
K. F. Ulbrich
C. E. M. Campos
Publikationsdatum
29.05.2018
Verlag
Springer US
Erschienen in
Journal of Materials Science / Ausgabe 19/2018
Print ISSN: 0022-2461
Elektronische ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-018-2470-6

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