Comparison between ligand exchange methods for the quantum dots hydrophilization

被引:0
|
作者
Drozd, Daniil D. [1 ]
Goryacheva, Irina Yu. [1 ]
机构
[1] Saratov NG Chernyshevskii State Univ, Inst Chem, 83 Astrakhanskaya Str, Saratov 410012, Russia
关键词
quantum dots; silanization; DHLA-coating; bioapplication;
D O I
10.1117/12.2523184
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Nowadays semiconductor quantum dots (QDs) is a popular luminescent material for different kinds of bioapplications. Core-shell CdSe/ZnS QDs obtained by the high-temperature synthesis are traditional luminescent nanocrystals with high quantum yield and narrow emission peak. But this type of QDs must be hydrophilized before their use in a water or biological environment. The goal of our work was the comparison of hydrophilized QDs properties, obtained from one initial sample using two different hydrophilization methods. Core-shell type QDs with CdSe/ZnS semiconductors composition was synthesized and hydrophilized by two ligand exchange methods: silanization and coating with dihydrolipoic acid (DHLA). Quantum yield, size and colloidal stability of the nanoparticles obtained via both methods were investigated. The collected data allows making the conclusions about perspectives to use the described methods in different bioapplications.
引用
收藏
页数:4
相关论文
共 50 条
  • [21] Thermodynamics of Composition Dependent Ligand Exchange on the Surfaces of Colloidal Indium Phosphide Quantum Dots
    Calvin, Jason J.
    O'Brien, Erin A.
    Sedlak, Adam B.
    Balan, Arunima D.
    Alivisatos, A. Paul
    ACS NANO, 2021, 15 (01) : 1407 - 1420
  • [22] Synthesis of cationic quantum dots via a two-step ligand exchange process
    Yeh, Yi-Cheun
    Patra, Debabrata
    Yan, Bo
    Saha, Krishnendu
    Miranda, Oscar R.
    Kim, Chae Kyu
    Rotello, Vincent M.
    CHEMICAL COMMUNICATIONS, 2011, 47 (11) : 3069 - 3071
  • [23] Synergistic ligand exchange and UV curing of PbS quantum dots for effective surface passivation
    Dastjerdi, Hadi Tavakoli
    Prochowicz, Daniel
    Yadav, Pankaj
    Tavakoli, Mohammad Mandi
    NANOSCALE, 2019, 11 (47) : 22832 - 22840
  • [24] Ligand exchange engineering of FAPbI3 perovskite quantum dots for solar cells
    Fan, Wentao
    Gao, Qiyuan
    Mei, Xinyi
    Jia, Donglin
    Chen, Jingxuan
    Qiu, Junming
    Zhou, Qisen
    Zhang, Xiaoliang
    FRONTIERS OF OPTOELECTRONICS, 2022, 15 (01)
  • [25] Luminescent carbon dots obtained from chitosan: a comparison between different methods to enhance the quantum yield
    Passos Zattar, Alessandra Pires
    Fajardo, Gabriela Ladeira
    de Mesquita, Joao Paulo
    Pereira, Fabiano Vargas
    FULLERENES NANOTUBES AND CARBON NANOSTRUCTURES, 2021, 29 (06) : 414 - 422
  • [26] The exchange interaction between neighboring quantum dots: physics and applications in quantum information processing
    Zhou, Zheng
    Li, Yixin
    Wu, Zhiyuan
    Ma, Xinping
    Fan, Shichang
    Huang, Shaoyun
    JOURNAL OF SEMICONDUCTORS, 2024, 45 (10)
  • [27] The exchange interaction between neighboring quantum dots:physics and applications in quantum information processing
    Zheng Zhou
    Yixin Li
    Zhiyuan Wu
    Xinping Ma
    Shichang Fan
    Shaoyun Huang
    Journal of Semiconductors, 2024, 45 (10) : 27 - 42
  • [28] Controllable Anisotropic Exchange Coupling between Spin Qubits in Quantum Dots
    Shim, Yun-Pil
    Oh, Sangchul
    Hu, Xuedong
    Friesen, Mark
    PHYSICAL REVIEW LETTERS, 2011, 106 (18)
  • [29] Spin exchange interaction with tunable range between graphene quantum dots
    Braun, Matthias
    Struck, P. R.
    Burkard, Guido
    PHYSICAL REVIEW B, 2011, 84 (11)
  • [30] Asymmetric exchange between electron spins in coupled semiconductor quantum dots
    Badescu, SC
    Lyanda-Geller, YB
    Reinecke, TL
    PHYSICAL REVIEW B, 2005, 72 (16)