Controllable synthesis, characterization and optical properties of colloidal PbS/gelatin core-shell nanocrystals

被引:41
作者
Mozafari, Masoud [1 ]
Moztarzadeh, Fathollah [1 ]
机构
[1] Amirkabir Univ Technol, Ctr Excellence, Fac Biomed Engn, Biomat Grp, Tehran, Iran
关键词
Lead sulfide; Gelatin; Colloidal solution; Photoluminescence; Photostability; GELATIN NANOPARTICLES; QUANTUM DOTS; HYPERBRANCHED POLYESTER; 2-STEP DESOLVATION; OXIDATION; CRYSTALS; GALENA; CYTOTOXICITY; NANOCLUSTERS; MICROSCOPY;
D O I
10.1016/j.jcis.2010.08.030
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Native quantum dots (QDs) made up of semiconductor nanocrystals (NCs) are toxic in nature but due to their excellent optical properties, they have proven themselves to be an attractive choice in biological labeling and targeting. In order to improve the general biocompatibility of lead sulfide (PbS) NCs, we present a new and simple procedure for preparing PbS/gelatin core-shell nanoparticles cross-linked with glutaraldehyde (GA) molecules. The phase composition, morphology, luminescence and in vitro photostability of the samples were characterized by X-ray diffraction (XRD). Fourier transform infrared (FTIR), transmission electron microscope (TEM) and fluorescence spectroscopy, respectively. The XRD analysis showed that the PbS NCs were of the cubic structure, the mean crystallite size was calculated to be 13.5 nm and the calculated lattice constant using Bragg's equation was 0.5950 nm, which was very close to its value in the standard card (JCPDS No. 5-592). In vitro test revealed that compared with bare PbS NCs, the photostability of the core-shell nanostructure remarkably improved. In addition, possible formation mechanisms of the PbS/gelatin nanoparticles were discussed in detail. Consequently, the advantages of high stability as well as high fluorescent intensity and biocompatibility make the core-shell nanoparticles promising candidates for in vivo biological targeting applications. (C) Elsevier Inc. All rights reserved.
引用
收藏
页码:442 / 448
页数:7
相关论文
共 59 条
[31]   SCANNING-TUNNELING-MICROSCOPY STUDIES OF GALENA - THE MECHANISM OF OXIDATION IN AIR [J].
KIM, BS ;
HAYES, RA ;
PRESTIDGE, CA ;
RALSTON, J ;
SMART, RS .
APPLIED SURFACE SCIENCE, 1994, 78 (04) :385-397
[32]   GROWTH OF A POLYHEDRAL CRYSTAL FROM SOLUTION AND ITS MORPHOLOGICAL STABILITY [J].
KURODA, T ;
IRISAWA, T ;
OOKAWA, A .
JOURNAL OF CRYSTAL GROWTH, 1977, 42 (DEC) :41-46
[33]   Anisotropic shape control of colloidal inorganic nanocrystals [J].
Lee, SM ;
Cho, SN ;
Cheon, J .
ADVANCED MATERIALS, 2003, 15 (05) :441-444
[34]   Studies on quantum dots synthesized in aqueous solution for biological labeling via electrostatic interaction [J].
Lin, ZB ;
Cui, SX ;
Zhang, H ;
Chen, QD ;
Yang, B ;
Su, XG ;
Zhang, JH ;
Jin, QH .
ANALYTICAL BIOCHEMISTRY, 2003, 319 (02) :239-243
[35]   Hierarchical, star-shaped PbS crystals formed by a simple solution route [J].
Ma, YR ;
Qi, LM ;
Ma, JM ;
Cheng, HM .
CRYSTAL GROWTH & DESIGN, 2004, 4 (02) :351-354
[36]   Architectonic quantum dot solids [J].
Markovich, G ;
Collier, CP ;
Henrichs, SE ;
Remacle, F ;
Levine, RD ;
Heath, JR .
ACCOUNTS OF CHEMICAL RESEARCH, 1999, 32 (05) :415-423
[37]  
Matsuda S, 1999, J BIOMED MATER RES, V45, P20, DOI 10.1002/(SICI)1097-4636(199904)45:1<20::AID-JBM3>3.0.CO
[38]  
2-6
[39]   Solution-processed PbS quantum dot infrared photodetectors and photovoltaics [J].
McDonald, SA ;
Konstantatos, G ;
Zhang, SG ;
Cyr, PW ;
Klem, EJD ;
Levina, L ;
Sargent, EH .
NATURE MATERIALS, 2005, 4 (02) :138-142
[40]   Green synthesis and characterisation of spherical PbS luminescent micro- and nanoparticles via wet chemical technique [J].
Mozafari, M. ;
Moztarzadeh, F. ;
Tahriri, M. .
ADVANCES IN APPLIED CERAMICS, 2011, 110 (01) :30-34