• Frontiers of Optoelectronics
  • Vol. 6, Issue 4, 452 (2013)
Li JIANG1、2, Aimiao QIN1、2、3、*, Kunpeng JIANG1、2, Lei LIAO4, Xiulan WU1、2, and Chaojian WU1、2
Author Affiliations
  • 1Key Lab of New Processing Technology for Nonferrous Metals & Materials, Ministry of Education
  • 2College of Materials Science & Engineering, Guilin University of Technology, Guilin 541004, China
  • 3Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, China
  • 4College of Environmental Science & Engineering, Guilin University of Technology, Guilin 541004, China
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    DOI: 10.1007/s12200-013-0345-7 Cite this Article
    Li JIANG, Aimiao QIN, Kunpeng JIANG, Lei LIAO, Xiulan WU, Chaojian WU. Preparation, structure and properties of fluorescent nano-CdTe/poly (1, 4-butanediol-citrate) bioelastomer nanocomposite in-situ dispersion technique[J]. Frontiers of Optoelectronics, 2013, 6(4): 452 Copy Citation Text show less
    References

    [1] Liu Y F, Yu J S. In situ synthesis of highly luminescent glutathionecapped CdTe/ZnS quantum dots with biocompatibility. Journal of Colloid and Interface Science, 2010, 351(1): 1-9

    [2] Nag A, Kovalenko M V, Lee J S, Liu W Y, Spokoyny B, Talapin D V. Metal-free inorganic ligands for colloidal nanocrystals: S2-, HS-, Se2-, HSe-, Te2-, HTe-, TeS3 2-, OH-, and NH2 - as surface ligands. Journal of the American Chemical Society, 2011, 133(27): 10612-10620

    [3] Qin A M, Zhou X S, Qiu Y F, Fang Y P, Su C Y, Yang S H. Periodically twinned nanotowers and nanodendrites of mercury selenide synthesized via a solution-liquid-solid route. Advanced Materials, 2008, 20(4): 768-773

    [4] Qin A M, Fang Y P, Su C Y. Hydrothermal synthesis of HgTe rodshaped nanocrystals. Materials Letters, 2007, 61(1): 126-129

    [5] Zhao D M, Sun L G, Wang Y J, Du Y H, Wang C. Preparation and application of CdTe nanocrystals. Progress in Chemistry, 2012, 24(7): 1277-1293

    [6] Mahesh S, Gopal A, Thirumalai R, Ajayaghosh A. Light-induced Ostwald ripening of organic nanodots to rods. Journal of the American Chemical Society, 2012, 134(17): 7227-7230

    [7] Liu Z Q, Liu S P, Yan S G, Yin P F, He Y Q. Interaction between GSH-CdTe QDs and L-aspartic acid and its analytical application. Acta Chimica Sinica, 2011, 69(24): 2969-2974

    [8] Ding T, Xu Y Q, Gu H, Liang Y R, Fang X M, Zhang L Q. Properties of poly(ethylene glycol)-based bioelastomers. Journal of Applied Polymer Science, 2010, 118(4): 2442-2447

    [9] Zhang Y, Wu L B, Li B G. Synthesis and characterization of biodegradable crosslinked polymers from 5-hydroxylevulinic acid and α,ω-diols. Journal of Applied Polymer Science, 2010, 117(6): 3315-3321

    [10] Wen H Y, Dong C Y, Dong H Q, Shen A J, Xia W J, Cai X J, Song Y, Li X, Li Y, Shi D. Engineered redox-responsive PEG detachment mechanism in PEGylated nano-graphene oxide for intracellular drug delivery. Small, 2012, 8(5): 760-769

    [11] Liu Q Y, Jiang L, Shi R, Zhang L Q. Synthesis, preparation, in vitro degradation, and application of novel degradable bioelastomers - a review. Progress in Polymer Science, 2012, 37(5): 715-765

    [12] Zhang Y, Tran R T, Qattan I S, Tsai Y T, Tang L, Liu C, Yang J. Fluorescence imaging enabled urethane-doped citrate-based biodegradable elastomers. Biomaterials, 2013, 34(16): 4048-4056

    Li JIANG, Aimiao QIN, Kunpeng JIANG, Lei LIAO, Xiulan WU, Chaojian WU. Preparation, structure and properties of fluorescent nano-CdTe/poly (1, 4-butanediol-citrate) bioelastomer nanocomposite in-situ dispersion technique[J]. Frontiers of Optoelectronics, 2013, 6(4): 452
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