Synthesis of CuInS2 and CuInS2@ZnX (X = S, Se) nanoparticles for bioimaging of cancer cells using electrochemically generated S2- and Se2-

被引:23
作者
Silva, Richardson R. [1 ]
Freitas, Denilson, V [1 ]
Sousa, Felipe L. N. [1 ]
Jesus, Anderson C. [2 ]
Silva, Stterferson E. [1 ]
Mansur, Alexandra A. P. [2 ]
Carvalho, Sandhra M. [2 ]
Marques, Dayane S. [1 ]
Carvalho, Isadora C. [2 ]
Azevedo, Walter M. [1 ]
Mansur, Herman S. [2 ]
Navarro, Marcelo [1 ]
机构
[1] Univ Fed Pernambuco UFPE, Dept Quim Fundamental, Ctr Ciencias Exatas & Nat, BR-50740560 Recife, PE, Brazil
[2] Fed Univ Minas Gerais UFMG, Ctr Nanosci Nanotechnol & Innovat CeNano2I, Dept Met & Mat Engn, Av Antonio Carlos 6627, Belo Horizonte, MG, Brazil
关键词
Electrosynthesis; CuInS2; CuInS2@ZnS; Glutathione; Cytotoxicity; HeLa cells; CDTE QUANTUM-DOTS; CHALCOPYRITE AGINS2; FACILE SYNTHESIS; NANOCRYSTALS; GREEN; ELECTROSYNTHESIS; IN2S3; FLUORESCENT; OXIDATION; TERNARY;
D O I
10.1016/j.jallcom.2020.156926
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
An electrochemical approach has been used for the aqueous synthesis of low-toxicity and eco-friendly copper indium sulfide (CuInS2) nanocrystals, and related core@shell systems (CuInS2@ZnX, where X = S2- and Se2-). The chalcogenide precursors (S2-, Se2-) were generated in electrochemical cavity cell, using a constant current electrolysis (i = 30 mA and Q = 11.5C), in the presence of metallic precursors (In3+, Cu+, Zn2+), room temperature and argon atmosphere. Firstly, In2S3 seeds were obtained in the intermediate compartment of the cell and converted to CuInS2 by thermoactivated diffusion (colloidal solution under reflux) of Cu+ ions into the In2S3 lattice. Cu+/In3+ ratios = 0.25 and 0.125 were tested for the production of CuInS2 stabilized by L-glutathione (GSH), and characterized by UV-vis and emission spectroscopy, XRD, HRTEM and zeta potential. CuInS2@ZnX nanoparticles were prepared by using the same electrochemical system, paired electrolysis and Zn sacrificial anode. Nanocrystals prepared under Cu+/In3+ = 0.125 reached 3.1% (CuInS2), 4.6% (CuInS2@ZnSe), and 9.6% (CuInS2@ZnS) quantumyields. The CuInS2@ZnX systems presented high cell viability (85%-94%) and internalization in cytosol region of HeLa cells, showing high potential for biological labeling. (C) 2020 Elsevier B.V. All rights reserved.
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页数:13
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