欢迎登录材料期刊网

材料期刊网

高级检索

铝纳米颗粒由于具有高活性和高能量密度而成为近年来基础和应用领域研究的热点.综述了铝纳米颗粒结构和热力学性能的计算机模拟和实验研究进展,并提出了用计算机模拟与实验相结合的方法探讨铝纳米颗粒额外储能的未来研究方向.

参考文献

[1] Yetter R A;Risha G A;Son S F .Metal particle combustion and nanotechnology[J].Proceedings of the Combustion Institute,2009,32(02):1819.
[2] Mustafa H. Chowdhury;Krishanu Ray;Stephen K. Gray;James Pond;Joseph R. Lakowicz .Aluminum Nanoparticles as Substrates for Metal-Enhanced Fluorescence in the Ultraviolet for the Label-Free Detection of Biomolecules[J].Analytical chemistry,2009(4):1397-1403.
[3] Tyner KM;Schiffman SR;Giannelis EP .Nanobiohybrids as delivery vehicles for camptothecin[J].Journal of Controlled Release: Official Journal of the Controlled Release Society,2004(3):501-514.
[4] Kyle W. Watson;Michelle L. Pantoya;Valery I. Levitas .Fast reactions with nano- and micrometer aluminum: A study on oxidation versus fluorination[J].Combustion and Flame,2008(4):619-634.
[5] Kwon Y S;Jung Y H;Yavorovsky N A et al.Ultra-fine powder by wire explosion method[J].Scripta Materialia,2001,44(8-9):2247.
[6] Sanchez-Lopez J C;Fernandez A .The melting behavior ofpassivated nanocrystalline aluminum[J].Nano-Structured Materials,1996,7(08):813.
[7] Yanan Gan;Li Qiao .Combustion characteristics of fuel droplets with addition of nano and micron-sized aluminum particles[J].Combustion and Flame,2011(2):354-368.
[8] Chen L;Song W;Lv J et al.Research on the methods to determine metallic aluminum content in aluminum nanoparticles[J].Materials Chemistry and Physics,2010,120(2-3):670.
[9] W. J. Huang;R. Sun;J. Tao;L. D. Menard;R. G. Nuzzo;J. M. Zuo .Coordination-dependent surface atomic contraction in nanocrystals revealed by coherent diffraction[J].Nature Materials,2008(4):308-313.
[10] Foiles S M;Baskes M I;Daw M S .Embedded-atom-method functions for the fcc metals Cu,Ag,Au,Ni,Pd,Pt,and their alloys[J].Physical Review B:Condensed Matter,1986,33(12):7983.
[11] Johnson R A .Analytic nearest-neighbor model for fcc metals[J].Physical Review B:Condensed Matter,1988,37(08):392.
[12] Zhang Bangwei;Ouyang Yifang .Theoretical calculation of thermodynamic data for bcc binary alloys with the embedded-atom method[J].Physical Review B:Condensed Matter,1993,48(05):3022.
[13] Campbell TJ;Aral G;Ogata S;Kalia RK;Nakano A;Vashishta P .Oxidation of aluminum nanoclusters[J].Physical review, B. Condensed matter and materials physics,2005(20):5413-1-5413-14-0.
[14] Alavi S;Mintmire J W;Thompson D L .Molecular dynamics simulations of the oxidation of aluminum nanoparticles[J].Journal of Physical Chemistry B,2005,109(01):209.
[15] A. Perron;S. Garruchet;O. Politano;G. Aral;V. Vignal .Oxidation of nanocrystalline aluminum by variablecharge molecular dynamics[J].The journal of physics and chemistry of solids,2010(2):119-124.
[16] Hasnaoui A;Politano O;Salazar JM;Aral G;Kalia RK;Nakano A;Vashishta P .Molecular dynamics simulations of the nano-scale room-temperature oxidation of aluminum single crystals[J].Surface Science: A Journal Devoted to the Physics and Chemistry of Interfaces,2005(1):47-57.
[17] Wang W;Clark R;Nakano A et al.Fast reaction mechanism cf a core (A1)-shell (A12O3) nanoparticle in oxygen[J].Applied Physics Letters,2009,95(26):261901.
[18] Puri, P.;Yang, V. .Thermo-mechanical behavior of nano aluminum particles with oxide layers during melting[J].Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology,2010(8):2989-3002.
[19] Computational study of the surface properties of aluminum nanoparticles[J].Surface Science: A Journal Devoted to the Physics and Chemistry of Interfaces,2009(13):2042-2046.
[20] Zhang JM;Wen YN;Xu KW .Calculation of the formation energies of isolated vacancy and adatom-vacancy pair at low-index surfaces of fcc metals with MAEAM[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2007(8):3779-3784.
[21] Tang, FL;Che, XX;Lu, WJ;Chen, GB;Xie, Y;Yu, WY .Surface structure and solidification morphology of aluminum nanoclusters[J].Physica, B. Condensed Matter,2009(16):2489-2494.
[22] Desgranges C;Delhommelle J .Molecular insight into the pathway to crystallization of aluminum[J].Journal of the American Chemical Society,2007(22):7012-7013.
[23] Solution assisted laser ablation synthesis of discrete aluminum nanoparticles[J].Materials Letters,2010(3):271.
[24] Yuhua Zhou;Wulin Song;Xiaochuan Zeng;Changsheng Xie .Quantitative X-ray Rietveld analysis of metallic aluminum content in nano-aluminum powders[J].Materials Letters,2012(1):177-179.
[25] Gi-Sang Yun;Young-Soon Kwon;Ji-Soon Kim;Jin-Chun Kim;Alexander P. Ilyin .Excess energy in the electroexplosive nanopowders[J].Research on Chemical Intermediates,2010(6/7):881-881.
[26] Yuma Ohkura;Pratap M. Rao;Xiaolin Zheng .Flash ignition of Al nanoparticles: Mechanism and applications[J].Combustion and Flame,2011(12):2544-2548.
[27] An V;Ilyin A;Izarra C .X-ray characterization of structural defects in electroexplosive nanopowders[J].High Techn Plasma Processes,2005,9:253.
[28] 周玉华 .X射线Rietveld法测定纳米铝粉中单质铝含量及微观应力的研究[D].华中科技大学,2012.
[29] 陈亮 .纳米铝粉活性评判方法的建立及其额外储能的研究[D].华中科技大学,2009.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%