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Erschienen in: Rare Metals 2/2013

01.04.2013

Advance in the chemical synthesis and magnetic properties of nanostructured rare-earth-based permanent magnets

verfasst von: Ce Yang, Yang-Long Hou

Erschienen in: Rare Metals | Ausgabe 2/2013

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Abstract

Rare-earth-based permanent magnets are one of the most important magnets in both scientific and industrial fields. With the development of technology, nanostructured rare-earth-based permanent magnets with high energy products are highly required. In this article, we will review the progress in chemical synthetic strategies of nanostructured rare-earth-based permanent magnets.

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Literatur
[1]
Zurück zum Zitat Strnat KJ. Modern permanent-magnets for applications in electrotechnology. Proc IEEE. 1990;78(6):923.CrossRef Strnat KJ. Modern permanent-magnets for applications in electrotechnology. Proc IEEE. 1990;78(6):923.CrossRef
[2]
Zurück zum Zitat Cronk ER. Recent developments in high-energy alnico alloys. J Appl Phys. 1966;37(3):1097.CrossRef Cronk ER. Recent developments in high-energy alnico alloys. J Appl Phys. 1966;37(3):1097.CrossRef
[3]
Zurück zum Zitat Cochardt A. Recent ferrite magnet developments. J Appl Phys. 1966;37(3):1112.CrossRef Cochardt A. Recent ferrite magnet developments. J Appl Phys. 1966;37(3):1112.CrossRef
[4]
Zurück zum Zitat Strnat K, Hoffer G, Olson J, Ostertag W, Becker JJ. A family of new cobalt-base permanent magnet materials. J Appl Phys. 1967;38(3):1001.CrossRef Strnat K, Hoffer G, Olson J, Ostertag W, Becker JJ. A family of new cobalt-base permanent magnet materials. J Appl Phys. 1967;38(3):1001.CrossRef
[5]
Zurück zum Zitat Sagawa M, Fujimura S, Togawa N, Yamamoto H, Matsuura Y. New material for permanent-magnets on a base of Nd and Fe. J Appl Phys. 1984;55(6):2083.CrossRef Sagawa M, Fujimura S, Togawa N, Yamamoto H, Matsuura Y. New material for permanent-magnets on a base of Nd and Fe. J Appl Phys. 1984;55(6):2083.CrossRef
[6]
Zurück zum Zitat Croat JJ, Herbst JF, Lee RW, Pinkerton FE. Pr–Fe and Nd–Fe based materials—a new class of high-performance permanent-magnets. J Appl Phys. 1984;55(6):2078.CrossRef Croat JJ, Herbst JF, Lee RW, Pinkerton FE. Pr–Fe and Nd–Fe based materials—a new class of high-performance permanent-magnets. J Appl Phys. 1984;55(6):2078.CrossRef
[7]
Zurück zum Zitat Herbst JF, Croat JJ. Magnetization of R6Fe23 intermetallic compounds—molecular-field theory analysis. J Appl Phys. 1984;55(8):3023.CrossRef Herbst JF, Croat JJ. Magnetization of R6Fe23 intermetallic compounds—molecular-field theory analysis. J Appl Phys. 1984;55(8):3023.CrossRef
[8]
Zurück zum Zitat Kneller EF, Hawig R. The exchange–spring magnet—a new material principle for permanent-magnets. IEEE Trans Magn. 1991;27(4):3588.CrossRef Kneller EF, Hawig R. The exchange–spring magnet—a new material principle for permanent-magnets. IEEE Trans Magn. 1991;27(4):3588.CrossRef
[9]
Zurück zum Zitat Gu HW, Xu B, Rao JC, Zheng RK, Zhang XX, Fung KK, Wong CYC. Chemical synthesis of narrowly dispersed SmCo5 nanoparticles. J Appl Phys. 2003;93(10):7589.CrossRef Gu HW, Xu B, Rao JC, Zheng RK, Zhang XX, Fung KK, Wong CYC. Chemical synthesis of narrowly dispersed SmCo5 nanoparticles. J Appl Phys. 2003;93(10):7589.CrossRef
[10]
Zurück zum Zitat Gu HW, Zheng RK, Rao JC, Zhang XX, Fung KK, Xu B. Chemical synthesis and magnetization measurement of SmCo5 magnetic nanoparticles. Abstr Am Chem Soc. 2003;225:U74. Gu HW, Zheng RK, Rao JC, Zhang XX, Fung KK, Xu B. Chemical synthesis and magnetization measurement of SmCo5 magnetic nanoparticles. Abstr Am Chem Soc. 2003;225:U74.
[11]
Zurück zum Zitat Chakka VM, Altuncevahir B, Jin ZQ, Li Y, Liu JP. Magnetic nanoparticles produced by surfactant-assisted ball milling. J Appl Phys. 2006;99(8):08E912.CrossRef Chakka VM, Altuncevahir B, Jin ZQ, Li Y, Liu JP. Magnetic nanoparticles produced by surfactant-assisted ball milling. J Appl Phys. 2006;99(8):08E912.CrossRef
[12]
Zurück zum Zitat Rong CB, Zhang HW, Chen RJ, Shen BG, He SL, Liu JP. Effects of annealing on the coercivity of Sm(Co, Fe, Cu, Zr)z ribbons and its temperature dependence. J Phys D Appl Phys. 2006;39(3):437.CrossRef Rong CB, Zhang HW, Chen RJ, Shen BG, He SL, Liu JP. Effects of annealing on the coercivity of Sm(Co, Fe, Cu, Zr)z ribbons and its temperature dependence. J Phys D Appl Phys. 2006;39(3):437.CrossRef
[13]
Zurück zum Zitat Hou YL, Xu ZC, Peng S, Rong CB, Liu JP, Sun SH. A facile synthesis of SmCo5 magnets from core/shell Co/Sm2O3 nanoparticles. Adv Mater. 2007;19(20):3349.CrossRef Hou YL, Xu ZC, Peng S, Rong CB, Liu JP, Sun SH. A facile synthesis of SmCo5 magnets from core/shell Co/Sm2O3 nanoparticles. Adv Mater. 2007;19(20):3349.CrossRef
[14]
Zurück zum Zitat Wang YP, Li Y, Rong CB, Liu JP. Sm–Co hard magnetic nanoparticles prepared by surfactant-assisted ball milling. Nanotechnology. 2007;18(46):465701.CrossRef Wang YP, Li Y, Rong CB, Liu JP. Sm–Co hard magnetic nanoparticles prepared by surfactant-assisted ball milling. Nanotechnology. 2007;18(46):465701.CrossRef
[15]
Zurück zum Zitat Li Y, Zhang XL, Qiu R, Kang YS. Synthesis and investigation of SmCo5 magnetic nanoparticles. Colloid Surf A Physicochem Eng Asp. 2008;313:621.CrossRef Li Y, Zhang XL, Qiu R, Kang YS. Synthesis and investigation of SmCo5 magnetic nanoparticles. Colloid Surf A Physicochem Eng Asp. 2008;313:621.CrossRef
[16]
Zurück zum Zitat Liu JP. Ferromagnetic nanoparticles: synthesis, processing, and characterization. JOM. 2010;62(4):56.CrossRef Liu JP. Ferromagnetic nanoparticles: synthesis, processing, and characterization. JOM. 2010;62(4):56.CrossRef
[17]
Zurück zum Zitat Matsushita T, Iwamoto T, Inokuchi M, Toshima N. Novel ferromagnetic materials of SmCo5 nanoparticles in single-nanometer size: chemical syntheses and characterizations. Nanotechnology. 2010;21(9):095603.CrossRef Matsushita T, Iwamoto T, Inokuchi M, Toshima N. Novel ferromagnetic materials of SmCo5 nanoparticles in single-nanometer size: chemical syntheses and characterizations. Nanotechnology. 2010;21(9):095603.CrossRef
[18]
Zurück zum Zitat Poudyal N, Rong CB, Liu JP. Effects of particle size and composition on coercivity of Sm–Co nanoparticles prepared by surfactant-assisted ball milling. J Appl Phys. 2010;107(9):09A703.CrossRef Poudyal N, Rong CB, Liu JP. Effects of particle size and composition on coercivity of Sm–Co nanoparticles prepared by surfactant-assisted ball milling. J Appl Phys. 2010;107(9):09A703.CrossRef
[19]
Zurück zum Zitat Poudyal N, Nguyen VV, Rong CB, Liu JP. Anisotropic bonded magnets fabricated via surfactant-assisted ball milling and magnetic-field processing. J Phys D Appl Phys. 2011;44(33):335002.CrossRef Poudyal N, Nguyen VV, Rong CB, Liu JP. Anisotropic bonded magnets fabricated via surfactant-assisted ball milling and magnetic-field processing. J Phys D Appl Phys. 2011;44(33):335002.CrossRef
[20]
Zurück zum Zitat Zhang HW, Peng S, Rong CB, Liu JP, Zhang Y, Kramer MJ, Sun SH. Chemical synthesis of hard magnetic SmCo nanoparticles. J Mater Chem. 2011;21(42):16873.CrossRef Zhang HW, Peng S, Rong CB, Liu JP, Zhang Y, Kramer MJ, Sun SH. Chemical synthesis of hard magnetic SmCo nanoparticles. J Mater Chem. 2011;21(42):16873.CrossRef
[21]
Zurück zum Zitat Suresh G, Saravanan P, Babu DR. Effect of annealing on phase composition, structural and magnetic properties of Sm–Co based nanomagnetic material synthesized by sol–gel process. J Magn Magn Mater. 2012;324(13):2158.CrossRef Suresh G, Saravanan P, Babu DR. Effect of annealing on phase composition, structural and magnetic properties of Sm–Co based nanomagnetic material synthesized by sol–gel process. J Magn Magn Mater. 2012;324(13):2158.CrossRef
[22]
Zurück zum Zitat Zheng LY, Cui BZ, Li WF, Hadjipanayis GC. Separated Sm–Co hard nanoparticles by an optimization of mechanochemical processes. J Appl Phys. 2012;7:07B536.CrossRef Zheng LY, Cui BZ, Li WF, Hadjipanayis GC. Separated Sm–Co hard nanoparticles by an optimization of mechanochemical processes. J Appl Phys. 2012;7:07B536.CrossRef
[23]
Zurück zum Zitat Poudyal N, Altuncevahir B, Chakka V, Chen KH, Black TD, Liu JP, Ding Y, Wang ZL. Field-ball milling induced anisotropy in magnetic particles. J Phys D Appl Phys. 2004;37(24):L45.CrossRef Poudyal N, Altuncevahir B, Chakka V, Chen KH, Black TD, Liu JP, Ding Y, Wang ZL. Field-ball milling induced anisotropy in magnetic particles. J Phys D Appl Phys. 2004;37(24):L45.CrossRef
[24]
Zurück zum Zitat Zheng LY, Cui BZ, Zhao LX, Li WF, Hadjipanayis GC. Sm2Co17 nanoparticles synthesized by surfactant-assisted high energy ball milling. J Alloys Compd. 2012;539:69.CrossRef Zheng LY, Cui BZ, Zhao LX, Li WF, Hadjipanayis GC. Sm2Co17 nanoparticles synthesized by surfactant-assisted high energy ball milling. J Alloys Compd. 2012;539:69.CrossRef
[25]
Zurück zum Zitat Poudyal N, Liu JP. Advances in nanostructured permanent magnets research. J Phys D Appl Phys. 2013;46(4):043001.CrossRef Poudyal N, Liu JP. Advances in nanostructured permanent magnets research. J Phys D Appl Phys. 2013;46(4):043001.CrossRef
[26]
Zurück zum Zitat Liu RM, Yue M, Zhang DT, Liu WQ, Zhang JX. Preparation, structure and magnetic properties of SmCo5 nanoparticles and nanoflakes. Acta Metall Sin. 2012;48(4):475.CrossRef Liu RM, Yue M, Zhang DT, Liu WQ, Zhang JX. Preparation, structure and magnetic properties of SmCo5 nanoparticles and nanoflakes. Acta Metall Sin. 2012;48(4):475.CrossRef
[27]
Zurück zum Zitat Jadhav AP, Hussain A, Lee JH, Baek YK, Choi CJ, Kang YS. One pot synthesis of hard phase Nd2Fe14B nanoparticles and Nd2Fe14B/alpha-Fe nanocomposite magnetic materials. New J Chem. 2012;36(11):2405. Jadhav AP, Hussain A, Lee JH, Baek YK, Choi CJ, Kang YS. One pot synthesis of hard phase Nd2Fe14B nanoparticles and Nd2Fe14B/alpha-Fe nanocomposite magnetic materials. New J Chem. 2012;36(11):2405.
[28]
Zurück zum Zitat Yue M, Wang YP, Poudyal N, Rong CB, Liu JP. Preparation of Nd–Fe–B nanoparticles by surfactant-assisted ball milling technique. J Appl Phys. 2009;105(7):07A708.CrossRef Yue M, Wang YP, Poudyal N, Rong CB, Liu JP. Preparation of Nd–Fe–B nanoparticles by surfactant-assisted ball milling technique. J Appl Phys. 2009;105(7):07A708.CrossRef
[29]
Zurück zum Zitat Akdogan NG, Hadjipanayis GC, Sellmyer DJ. Novel Nd2Fe14B nanoflakes and nanoparticles for the development of high energy nanocomposite magnets. Nanotechnology. 2010;21(29):295705.CrossRef Akdogan NG, Hadjipanayis GC, Sellmyer DJ. Novel Nd2Fe14B nanoflakes and nanoparticles for the development of high energy nanocomposite magnets. Nanotechnology. 2010;21(29):295705.CrossRef
[30]
Zurück zum Zitat Deheri PK, Swaminathan V, Bhame SD, Liu ZW, Ramanujan RV. Sol–gel based chemical synthesis of Nd2Fe14B hard magnetic nanoparticles. Chem Mater. 2010;22(24):6509.CrossRef Deheri PK, Swaminathan V, Bhame SD, Liu ZW, Ramanujan RV. Sol–gel based chemical synthesis of Nd2Fe14B hard magnetic nanoparticles. Chem Mater. 2010;22(24):6509.CrossRef
[31]
Zurück zum Zitat Deheri PK, Shukla S, Ramanujan RV. The reaction mechanism of formation of chemically synthesized Nd2Fe14B hard magnetic nanoparticles. J Solid State Chem. 2012;186:224.CrossRef Deheri PK, Shukla S, Ramanujan RV. The reaction mechanism of formation of chemically synthesized Nd2Fe14B hard magnetic nanoparticles. J Solid State Chem. 2012;186:224.CrossRef
[32]
Zurück zum Zitat Yue M, Pan R, Liu RM, Liu WQ, Zhang DT, Zhang JX, Zhang XF, Guo ZH, Li W. Crystallographic alignment evolution and magnetic properties of Nd–Fe–B nanoflakes prepared by surfactant-assisted ball milling. J Appl Phys. 2012;111(7):07A732.CrossRef Yue M, Pan R, Liu RM, Liu WQ, Zhang DT, Zhang JX, Zhang XF, Guo ZH, Li W. Crystallographic alignment evolution and magnetic properties of Nd–Fe–B nanoflakes prepared by surfactant-assisted ball milling. J Appl Phys. 2012;111(7):07A732.CrossRef
[33]
Zurück zum Zitat Liu W, Zhang ZD, Liu JP, Chen LJ, He LL, Liu Y, Sun XK, Sellmyer DJ. Exchange coupling and remanence enhancement in nanocomposite multilayer magnets. Adv Mater. 2002;14(24):1832.CrossRef Liu W, Zhang ZD, Liu JP, Chen LJ, He LL, Liu Y, Sun XK, Sellmyer DJ. Exchange coupling and remanence enhancement in nanocomposite multilayer magnets. Adv Mater. 2002;14(24):1832.CrossRef
[34]
Zurück zum Zitat Cui WB, Takahashi YK, Hono K. Nd2Fe14B/FeCo anisotropic nanocomposite films with a large maximum energy product. Adv Mater. 2012;24(48):6530.CrossRef Cui WB, Takahashi YK, Hono K. Nd2Fe14B/FeCo anisotropic nanocomposite films with a large maximum energy product. Adv Mater. 2012;24(48):6530.CrossRef
[35]
Zurück zum Zitat Cui BZ, Han K, Garmestani H, Su JH, Schneider-Muntau HJ, Liu JP. Enhancement of exchange coupling and hard magnetic properties in nanocomposites by magnetic annealing. Acta Mater. 2005;53(15):4155.CrossRef Cui BZ, Han K, Garmestani H, Su JH, Schneider-Muntau HJ, Liu JP. Enhancement of exchange coupling and hard magnetic properties in nanocomposites by magnetic annealing. Acta Mater. 2005;53(15):4155.CrossRef
[36]
Zurück zum Zitat Jiang JS, Pearson JE, Liu ZY, Kabius B, Trasobares S, Miller DJ, Bader SD, Lee, Haskel D, Srajer G, Liu JP. A new approach for improving exchange-spring magnets. J Appl Phys. 2005;97(10):10K311.CrossRef Jiang JS, Pearson JE, Liu ZY, Kabius B, Trasobares S, Miller DJ, Bader SD, Lee, Haskel D, Srajer G, Liu JP. A new approach for improving exchange-spring magnets. J Appl Phys. 2005;97(10):10K311.CrossRef
[37]
Zurück zum Zitat Yu MH, Hattrick-Simpers J, Takeuchi I, Li J, Wang ZL, Liu JP, Lofland SE, Tyagi S, Freeland JW, Giubertoni D, Bersani M, Anderle M. Interphase exchange coupling in Fe/Sm–Co bilayers with gradient Fe thickness. J Appl Phys. 2005;98(6):063908.CrossRef Yu MH, Hattrick-Simpers J, Takeuchi I, Li J, Wang ZL, Liu JP, Lofland SE, Tyagi S, Freeland JW, Giubertoni D, Bersani M, Anderle M. Interphase exchange coupling in Fe/Sm–Co bilayers with gradient Fe thickness. J Appl Phys. 2005;98(6):063908.CrossRef
[38]
Zurück zum Zitat Liu S, Higgins A, Shin E, Bauser S, Chen C, Lee D, Shen Y, He Y, Huang MQ. Enhancing magnetic properties of bulk anisotropic Nd–Fe–B/alpha-Fe composite magnets by applying powder coating technologies. IEEE Trans Magn. 2006;42(10):2912.CrossRef Liu S, Higgins A, Shin E, Bauser S, Chen C, Lee D, Shen Y, He Y, Huang MQ. Enhancing magnetic properties of bulk anisotropic Nd–Fe–B/alpha-Fe composite magnets by applying powder coating technologies. IEEE Trans Magn. 2006;42(10):2912.CrossRef
[39]
Zurück zum Zitat Choi Y, Jiang JS, Pearson JE, Bader SD, Kavich JJ, Freeland JW, Liu JP. Controlled interface profile in Sm–Co/Fe exchange-spring magnets. Appl Phys Lett. 2007;91(7):072509.CrossRef Choi Y, Jiang JS, Pearson JE, Bader SD, Kavich JJ, Freeland JW, Liu JP. Controlled interface profile in Sm–Co/Fe exchange-spring magnets. Appl Phys Lett. 2007;91(7):072509.CrossRef
[40]
Zurück zum Zitat Choi Y, Jiang JS, Pearson JE, Bader SD, Liu JP. Origin of recoil hysteresis loops in Sm–Co/Fe exchange-spring magnets. Appl Phys Lett. 2007;91(2):022502.CrossRef Choi Y, Jiang JS, Pearson JE, Bader SD, Liu JP. Origin of recoil hysteresis loops in Sm–Co/Fe exchange-spring magnets. Appl Phys Lett. 2007;91(2):022502.CrossRef
[41]
Zurück zum Zitat Hou Y, Sun S, Rong C, Liu JP. SmCo5/Fe nanocomposites synthesized from reductive annealing of oxide nanoparticles. Appl Phys Lett. 2007;91(15):153117.CrossRef Hou Y, Sun S, Rong C, Liu JP. SmCo5/Fe nanocomposites synthesized from reductive annealing of oxide nanoparticles. Appl Phys Lett. 2007;91(15):153117.CrossRef
[42]
Zurück zum Zitat Rong CB, Liu JP. Effect of thermal fluctuations on the recoil loops of SmCo5/Fe nanocomposite system. J Appl Phys. 2009;105(7):07A714.CrossRef Rong CB, Liu JP. Effect of thermal fluctuations on the recoil loops of SmCo5/Fe nanocomposite system. J Appl Phys. 2009;105(7):07A714.CrossRef
[43]
Zurück zum Zitat Rong CB, Zhang Y, Poudyal N, Xiong XY, Kramer MJ, Liu JP. Fabrication of bulk nanocomposite magnets via severe plastic deformation and warm compaction. Appl Phys Lett. 2010;96(10):102513.CrossRef Rong CB, Zhang Y, Poudyal N, Xiong XY, Kramer MJ, Liu JP. Fabrication of bulk nanocomposite magnets via severe plastic deformation and warm compaction. Appl Phys Lett. 2010;96(10):102513.CrossRef
[44]
Zurück zum Zitat Zhang Y, Kramer MJ, Rong CB, Liu JP. Microstructure and intergranular diffusion in exchange-coupled Sm–Co/Fe nanocomposites. Appl Phys Lett. 2010;97(3):032506.CrossRef Zhang Y, Kramer MJ, Rong CB, Liu JP. Microstructure and intergranular diffusion in exchange-coupled Sm–Co/Fe nanocomposites. Appl Phys Lett. 2010;97(3):032506.CrossRef
[45]
Zurück zum Zitat Chaubey GS, Poudyal N, Liu YZ, Rong CB, Liu JP. Synthesis of Sm–Co and Sm–Co/Fe nanocrystals by reductive annealing of nanoparticles. J Alloys Compd. 2011;509(5):2132.CrossRef Chaubey GS, Poudyal N, Liu YZ, Rong CB, Liu JP. Synthesis of Sm–Co and Sm–Co/Fe nanocrystals by reductive annealing of nanoparticles. J Alloys Compd. 2011;509(5):2132.CrossRef
[46]
Zurück zum Zitat Liu WQ, Zuo JH, Yue M, Cui ZZ, Zhang DT, Zhang JX, Zhang PY, Ge HL, Guo ZH, Li W. Structure and magnetic properties of bulk anisotropic SmCo5/alpha-Fe nanocomposite permanent magnets with different alpha-Fe content. J Appl Phys. 2011;109(7):07A741.CrossRef Liu WQ, Zuo JH, Yue M, Cui ZZ, Zhang DT, Zhang JX, Zhang PY, Ge HL, Guo ZH, Li W. Structure and magnetic properties of bulk anisotropic SmCo5/alpha-Fe nanocomposite permanent magnets with different alpha-Fe content. J Appl Phys. 2011;109(7):07A741.CrossRef
[47]
Zurück zum Zitat Rong CB, Zhang Y, Kramer MJ, Liu JP. Correlation between microstructure and first-order magnetization reversal in the SmCo5/alpha-Fe nanocomposite magnets. Phys Lett A. 2011;375(10):1329.CrossRef Rong CB, Zhang Y, Kramer MJ, Liu JP. Correlation between microstructure and first-order magnetization reversal in the SmCo5/alpha-Fe nanocomposite magnets. Phys Lett A. 2011;375(10):1329.CrossRef
[48]
Zurück zum Zitat Rong CB, Zhang Y, Poudyal N, Szlufarska I, Hebert RJ, Kramer MJ, Liu JP. Self-nanoscaling of the soft magnetic phase in bulk SmCo/Fe nanocomposite magnets. J Mater Sci. 2011;46(18):6065.CrossRef Rong CB, Zhang Y, Poudyal N, Szlufarska I, Hebert RJ, Kramer MJ, Liu JP. Self-nanoscaling of the soft magnetic phase in bulk SmCo/Fe nanocomposite magnets. J Mater Sci. 2011;46(18):6065.CrossRef
[49]
Zurück zum Zitat Rong CB, Zhang Y, Poudyal N, Wang DP, Kramer MJ, Liu JP. Bulk SmCo5/alpha-Fe nanocomposite permanent magnets fabricated by mould-free Joule-heating compaction. J Appl Phys. 2011;109(7):07A735.CrossRef Rong CB, Zhang Y, Poudyal N, Wang DP, Kramer MJ, Liu JP. Bulk SmCo5/alpha-Fe nanocomposite permanent magnets fabricated by mould-free Joule-heating compaction. J Appl Phys. 2011;109(7):07A735.CrossRef
[50]
Zurück zum Zitat Xiong XY, Rong CB, Rubanov S, Zhang Y, Liu JP. Atom probe study on the bulk nanocomposite SmCo/Fe permanent magnet produced by ball-milling and warm compaction. J Magn Magn Mater. 2011;323(22):2855.CrossRef Xiong XY, Rong CB, Rubanov S, Zhang Y, Liu JP. Atom probe study on the bulk nanocomposite SmCo/Fe permanent magnet produced by ball-milling and warm compaction. J Magn Magn Mater. 2011;323(22):2855.CrossRef
[51]
Zurück zum Zitat Hu DW, Yue M, Zuo JH, Pan R, Zhang DT, Liu WQ, Zhang JX, Guo ZH, Li W. Structure and magnetic properties of bulk anisotropic SmCo5/alpha-Fe nanocomposite permanent magnets prepared via a bottom up approach. J Alloys Compd. 2012;538:173.CrossRef Hu DW, Yue M, Zuo JH, Pan R, Zhang DT, Liu WQ, Zhang JX, Guo ZH, Li W. Structure and magnetic properties of bulk anisotropic SmCo5/alpha-Fe nanocomposite permanent magnets prepared via a bottom up approach. J Alloys Compd. 2012;538:173.CrossRef
[52]
Zurück zum Zitat Rong CB, Poudyal N, Liu XB, Zhang Y, Kramer MJ, Liu JP. High temperature magnetic properties of SmCo5/alpha-Fe(Co) bulk nanocomposite magnets. Appl Phys Lett. 2012;101(15):152401.CrossRef Rong CB, Poudyal N, Liu XB, Zhang Y, Kramer MJ, Liu JP. High temperature magnetic properties of SmCo5/alpha-Fe(Co) bulk nanocomposite magnets. Appl Phys Lett. 2012;101(15):152401.CrossRef
[53]
Zurück zum Zitat Wang DP, Poudyal N, Rong CB, Zhang Y, Kramer MJ, Liu JP. Exchange-coupled nanoscale SmCo/NdFeB hybrid magnets. J Magn Magn Mater. 2012;324(18):2836.CrossRef Wang DP, Poudyal N, Rong CB, Zhang Y, Kramer MJ, Liu JP. Exchange-coupled nanoscale SmCo/NdFeB hybrid magnets. J Magn Magn Mater. 2012;324(18):2836.CrossRef
[54]
Zurück zum Zitat Liu WQ, Zuo JH, Yue M, Lv WC, Zhang DT, Zhang JX. Preparation and magnetic properties of bulk nanostructured PrCo5 permanent magnets with strong magnetic anisotropy. J Appl Phys. 2011;109(7):07A731.CrossRef Liu WQ, Zuo JH, Yue M, Lv WC, Zhang DT, Zhang JX. Preparation and magnetic properties of bulk nanostructured PrCo5 permanent magnets with strong magnetic anisotropy. J Appl Phys. 2011;109(7):07A731.CrossRef
[55]
Zurück zum Zitat Coey JMD. Hard magnetic materials: a perspective. IEEE Trans Magn. 2011;47(12):4671.CrossRef Coey JMD. Hard magnetic materials: a perspective. IEEE Trans Magn. 2011;47(12):4671.CrossRef
[56]
Zurück zum Zitat Zhang JJ, Gao HM, Yan Y, Bai X, Su F, Wang WQ, Du XB. Morphology and magnetic properties of CeCo5 submicron flakes prepared by surfactant-assisted high-energy ball milling. J Magn Magn Mater. 2012;324(20):3272.CrossRef Zhang JJ, Gao HM, Yan Y, Bai X, Su F, Wang WQ, Du XB. Morphology and magnetic properties of CeCo5 submicron flakes prepared by surfactant-assisted high-energy ball milling. J Magn Magn Mater. 2012;324(20):3272.CrossRef
[57]
Zurück zum Zitat Li Z, Ding H, Zhang J, Wang HB, Wang H. Effects of annealing temperature and time on microstructure and magnetic properties of Pr–Co thin films. Rare Met. 2012;31(2):121.CrossRef Li Z, Ding H, Zhang J, Wang HB, Wang H. Effects of annealing temperature and time on microstructure and magnetic properties of Pr–Co thin films. Rare Met. 2012;31(2):121.CrossRef
[58]
Zurück zum Zitat Tang CY, Xiao ZY, Luo F, Wang J, Ma CY, Zhang W. Structural characteristics and magnetic properties of bulk nanocrystalline Fe84Zr2Nb4B10 alloy prepared by mechanical alloying and spark plasma sintering consolidation. Rare Met. 2012;31(3):255.CrossRef Tang CY, Xiao ZY, Luo F, Wang J, Ma CY, Zhang W. Structural characteristics and magnetic properties of bulk nanocrystalline Fe84Zr2Nb4B10 alloy prepared by mechanical alloying and spark plasma sintering consolidation. Rare Met. 2012;31(3):255.CrossRef
[59]
Zurück zum Zitat Liu JJ, Wang R, Yin HY, Liu XC, Si PZ, Du J. Structure and magnetostriction of Tb0.4Nd0.6(Fe0.8Co0.2)1.90 alloy prepared by solid-state synthesis. Rare Met. 2012;31(6):547.CrossRef Liu JJ, Wang R, Yin HY, Liu XC, Si PZ, Du J. Structure and magnetostriction of Tb0.4Nd0.6(Fe0.8Co0.2)1.90 alloy prepared by solid-state synthesis. Rare Met. 2012;31(6):547.CrossRef
Metadaten
Titel
Advance in the chemical synthesis and magnetic properties of nanostructured rare-earth-based permanent magnets
verfasst von
Ce Yang
Yang-Long Hou
Publikationsdatum
01.04.2013
Verlag
Nonferrous Metals Society of China
Erschienen in
Rare Metals / Ausgabe 2/2013
Print ISSN: 1001-0521
Elektronische ISSN: 1867-7185
DOI
https://doi.org/10.1007/s12598-013-0047-8

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