欢迎登录材料期刊网

材料期刊网

高级检索

Ge纳米粒子由于其小尺寸特性而展现出的良好的光学性能吸引着人们对其不断进行深入探索.综述了Ge纳米粒子的物理和化学制备技术,如分子束外延、氢化物还原锗盐等,并对Ge纳米粒子有代表性的光学特性进行了概述,最后展望了Ge纳米粒子的未来发展方向.

参考文献

[1] Maeda Y;Tsukamoto N;Yazawa Y et al.Visible photoluminescence of Ge microcrystals embedded in SiO2 glassy matrices[J].Applied Physics Letters,1991,59(24):3168.
[2] W. K. Choi;W. K. Chim;C. L. Heng;L. W. Teo;Vincent Ho;V. Ng;D. A. Antoniadis;E. A. Fitzgerald .Observation of memory effect in germanium nanocrystals embedded in an amorphous silicon oxide matrix of a metal-insulator-semiconductor structure[J].Applied physics letters,2002(11):2014-2016.
[3] Lee, DC;Pietryga, JM;Robel, I;Werder, DJ;Schaller, RD;Klimov, VI .Colloidal Synthesis of Infrared-Emitting Germanium Nanocrystals[J].Journal of the American Chemical Society,2009(10):3436-3438.
[4] Ma X;Yuan B;Yan Z .The photodetector of Ge nanocrystals/Si for 1.55 μm operation deposited by pulsed laser deposition[J].Optics Communications,2006,260(01):337.
[5] Fan, J.;Chu, P.K. .Group IV nanoparticles: Synthesis, properties, and biological applications[J].Small,2010(19):2080-2098.
[6] Heath J R;Shiang J J;Alivisatos A P .Germanium quantum dots:Optical properties and synthesis[J].Journal of Chemical Physics,1994,101(02):1607.
[7] 王启明.提高Si基材料高效率发光途径的探索[J].物理学进展,1996(01):75.
[8] Bean J.C. .Silicon-based semiconductor heterostructures: column IV bandgap engineering[J].Proceedings of the IEEE,1992(4):571-587.
[9] Wang X;Jiang ZM;Zhu HJ;Lu F;Huang DM;Liu XH;Hu CW;Chen YF;Zhu ZQ;Yao T .Germanium dots with highly uniform size distribution grown on Si(100) substrate by molecular beam epitaxy[J].Applied physics letters,1997(24):3543-3545.
[10] 周志玉,周志文,李成,陈松岩,余金中,赖虹凯.Ge/Si(100)量子点生长与形态分布的研究[J].半导体光电,2008(02):220-225.
[11] 潘红星,王茺,杨杰,张学贵,靳映霞,杨宇.Ge/Si量子点的控制生长[J].红外与毫米波学报,2012(05):416-420,454.
[12] 杨杰,王茺,靳映霞,李亮,陶东平,杨宇.离子束溅射Ge量子点的应变调制生长[J].物理学报,2012(01):379-385.
[13] 张学贵,王茺,鲁植全,杨杰,李亮,杨宇.离子束溅射自组装Ge/Si量子点生长的演变[J].物理学报,2011(09):480-486.
[14] Prabakar S;Shiohara A;Hanada S et al.Size controlled synthesis of germanium nanocrystals by hydride reducing agents and their biological applications[J].CHEMISTRY OF MATERIALS,2009,22(02):482.
[15] Dubrovskii V G;Cirlin G E;Musikhin Y G et al.Effect of growth kinetics on the structural and optical properties of quantum dot ensembles[J].Journal of Crystal Growth,2004,267(01):47.
[16] Wang Ke-Fan;Zhang Yang;Zhang Weifeng .Morphology and photoluminescence of ultrasmall size of Ge quantum dots directly grown on Si(0 0 1) substrate[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2012(6):1935-1939.
[17] Grydlik, M.;Langer, G.;Fromherz, T.;Sch?ffler, F.;Brehm, M. .Recipes for the fabrication of strictly ordered Ge islands on pit-patterned Si(001) substrates[J].Nanotechnology,2013(10):105601-1-105601-14.
[18] Ma, Y.J.;Zhong, Z.;Yang, X.J.;Fan, Y.L.;Jiang, Z.M. .Factors influencing epitaxial growth of three-dimensional Ge quantum dot crystals on pit-patterned Si substrate[J].Nanotechnology,2013(1):015304-1-015304-7.
[19] Palange E;Capellini G;Di Gaspare L et al.Atomic force microscopy and photoluminescence study of Ge layers and self-organized Ge quantum dots on Si(100)[J].Applied Physics Letters,1996,68(21):2982.
[20] Baranov AV;Fedorov AV;Perova TS;Moore RA;Yam V;Bouchier D;Le Thanh V;Berwick K .Analysis of strain and intermixing in single-layer Ge/Si quantum dots using polarized Raman spectroscopy[J].Physical review, B. Condensed matter and materials physics,2006(7):5322-1-5322-6-0.
[21] Liu Z;Cheng B;Hu W et al.Enhanced photoluminescence of multilayer Ge quantum dots on Si(001)substrates by increased overgrowth temperature[J].Nanoscale Research Letters,2012,7(01):1.
[22] 吴军,顾书林,施毅,江宁,朱顺明,郑有炓,王牧,刘晓勇,闵乃本.生长温度对Si基Ge量子点VLP-CVD自组织生长的影响[J].高技术通讯,2000(04):34-37.
[23] S.K. Ray;K. Das .Luminescence characteristics of Ge nanocrystals embedded in SiO_2 matrix[J].Optical materials,2005(5):948-952.
[24] Skudai U T M .Light emitting germanium and silicon nanoisland grown by RF magnetron sputtering[J].Journal of Ovarian Research,2012,8(03):65.
[25] Taylor BR.;Lee HWH.;Delgado GR.;Kauzlarich SM. .Solution synthesis of germanium nanocrystals demonstrating quantum confinement[J].Chemistry of Materials,1998(1):22-24.
[26] Taylor B R;Kauzlarich S M;Delgado G R et al.Solution synthesis and characterization of quantum confined Ge nanoparticles[J].CHEMISTRY OF MATERIALS,1999,11(09):2493.
[27] Tanke RS.;Kauzlarich SM.;Patten TE.;Pettigrew KA.;Murphy DL.;Thompson ME.;Lee HWH. .Synthesis of germanium nanoclusters with irreversibly attached functional groups: Acetals, alcohols, esters, and polymers[J].Chemistry of Materials,2003(8):1682-1689.
[28] Ma, XC;Wu, FY;Kauzlarich, SM .Alkyl-terminated crystalline Ge nanoparticles prepared from NaGe: Synthesis, functionalization and optical properties[J].Journal of Solid State Chemistry,2008(7):1628-1633.
[29] Dimitri D.Vaughn II;Raymond E. Schaak .Synthesis, properties and applications of colloidal germanium and germanium-based nanomaterials[J].Chemical Society Reviews,2013(7):2861-2879.
[30] Natalia Zaitseva;Zu Rong Dai;Christian D.Grant .Germanium Nanocrystals Synthesized in High-Boiling-Point Organic Solvents[J].Chemistry of Materials: A Publication of the American Chemistry Society,2007(21):5174-5178.
[31] Dimitri D. Vaughn II;James F. Bondi;Raymond E. Schaak .Colloidal Synthesis of Air-Stable Crystalline Germanium Nanoparticles with Tunable Sizes and Shapes[J].Chemistry of Materials: A Publication of the American Chemistry Society,2010(22):6103-6108.
[32] Xianmao Lu;Kirk J. Ziegler;Ali Ghezelbash;Keith P. Johnston;Brian A. Korgel .Synthesis of Germanium Nanocrystals in High Temperature Supercritical Fluid Solvents[J].Nano letters,2004(5):969-974.
[33] Komowski A;Giersig M;Vogel R et al.Nanometer-sized colloidal germanium particles:Wet-chemical synthesis,laser-induced crystallization and particle growth[J].Advanced Materials,1993,5(09):634.
[34] Wilcoxon JP.;Samara GA.;Provencio PP. .Synthesis and optical properties of colloidal germanium nanocrystals - art. no. 035417[J].Physical Review.B.Condensed Matter,2001(3):5417-0.
[35] Jonathan G C .Preparation of alkyl-surface functionalized germanium quantum dots via thermally initiated hydrogermylation[J].Chemical Communications,2004,4:386.
[36] Warner JH;Tilley RD .Synthesis of water-soluble photoluminescent germanium nanocrystals[J].Nanotechnology,2006(15):3745-3749.
[37] Warner J H;Rubinsztein-Dunlop H;Tilley R D .Surface morphology dependent photoluminescence from colloidal silicon nanocrystals[J].Journal of Physical Chemistry B,2005,109(41):19064.
[38] Henderson EJ;Hessel CM;Veinot JGC .Synthesis and photoluminescent properties of size-controlled germanium nanocrystals from phenyl trichlorogermane-derived polymers[J].Journal of the American Chemical Society,2008(11):3624-3632.
[39] J H Warner .Solution-phase synthesis of germanium nanoclusters using sulfur[J].Nanotechnology,2006(22):5613-5619.
[40] Sato, S;Ikeda, T;Hamada, K;Kimura, K .Size regulation by bandgap-controlled etching: Application to germanium nanoparticles[J].Solid State Communications,2009(21/22):862-865.
[41] Batu Ghosh;Yoshio Sakka;Naoto Shirahata .Efficient green-luminescent germanium nanocrystals[J].Journal of Materials Chemistry, A. Materials for energy and sustainability,2013(11):3747-3751.
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%