Synthesis of highly chemiluminescent graphene oxide/silver nanoparticle nano-composites and their analytical applications

被引:69
|
作者
He, Yi [1 ]
Cui, Hua [1 ]
机构
[1] Univ Sci & Technol China, Dept Chem, CAS Key Lab Soft Matter Chem, Hefei 230026, Anhui, Peoples R China
关键词
SILVER NANOPARTICLES; GOLD NANOPARTICLES; GREEN SYNTHESIS; OXIDE;
D O I
10.1039/c2jm16028e
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
A fast, linker free, one step strategy for in situ preparation of graphene oxide/Ag nanoparticle (GO-AgNP) nano-composites was proposed by reducing AgNO3 with chemiluminescent reagent luminol in the presence of GO. The nano-composites were characterized by transmission electron microscopy, energy-dispersive spectroscopy, X-ray diffraction, UV-Vis absorption spectra, X-ray photoelectron spectroscopy, thermogravimetric analysis, and electrochemical impedance spectroscopy. The results demonstrated that many Ag nanoparticles (AgNPs) with an average diameter of about 22 nm were uniformly dispersed on the surface of GO nanosheets. Luminol molecules were also decorated on the surface of the nano-composites. Thus the nano-composites showed excellent chemiluminescence (CL) activity when reacting with H2O2. Furthermore, the formation mechanism of the as-prepared GO-AgNP nano-composites is proposed as follows: Ag+ adsorbs on the surface of GO via an electrostatic force and Ag+-pi orbital interaction. Afterwards, they are in situ gradually reduced by luminol molecules to AgNPs on the surface of GO and some luminol molecules are attached on the surface of the nano-composites. Finally, it was found that glutathione could enhance the CL intensity between GO-AgNP nano-composites and hydrogen peroxide. On this basis, a sensitive and selective method for the detection of glutathione was developed. This method showed a detection limit of 25 mu mol L-1 and a linear range from 30 to 1000 mu mol L-1. The nano-composites may be attractive and advanced composite materials with great promise as advanced building blocks, CL labels, and platforms for various analytical devices with CL detection such as sensors, microchips and bioassays.
引用
收藏
页码:9086 / 9091
页数:6
相关论文
共 50 条
  • [1] Synthesis of highly chemiluminescent graphene oxide/metal nanoparticles nano-composites and their analytical applications
    He, Yi
    Cui, Hua
    [J]. LUMINESCENCE, 2012, 27 (02) : 121 - 122
  • [2] Lignin based nano-composites: Synthesis and applications
    Parvathy, G.
    Sethulekshmi, A. S.
    Jayan, Jitha S.
    Raman, Akhila
    Saritha, Appukuttan
    [J]. PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2021, 145 : 395 - 410
  • [3] Analytical Modeling of Micro and Nano-composites
    Papanicolaou, G. C.
    Portan, D. V.
    [J]. 7TH INTERNATIONAL CONFERENCE ON STRUCTURAL ANALYSIS OF ADVANCED MATERIALS (ICSAAM 2017), 2018, 1932
  • [4] Graphene reinforced alumina nano-composites
    Porwal, Harshit
    Tatarko, Peter
    Grasso, Salvatore
    Khaliq, Jibran
    Dlouhy, Ivo
    Reece, Mike J.
    [J]. CARBON, 2013, 64 : 359 - 369
  • [5] Synthesis and Characterization of Hot Extruded Magnesium-Zinc Nano-Composites Containing Low Content of Graphene Oxide for Implant Applications
    A. Saberi
    H. R. Bakhsheshi-Rad
    E. Karamian
    M. Kasiri-Asgarani
    H. Ghomi
    M. Omidi
    S. Abazari
    A. F. Ismail
    S. Sharif
    F. Berto
    [J]. Physical Mesomechanics, 2021, 24 : 486 - 502
  • [6] Synthesis and Characterization of Hot Extruded Magnesium-Zinc Nano-Composites Containing Low Content of Graphene Oxide for Implant Applications
    Saberi, A.
    Bakhsheshi-Rad, H. R.
    Karamian, E.
    Kasiri-Asgarani, M.
    Ghomi, H.
    Omidi, M.
    Abazari, S.
    Ismail, A. F.
    Sharif, S.
    Berto, F.
    [J]. PHYSICAL MESOMECHANICS, 2021, 24 (04) : 486 - 502
  • [7] Synthesis of tungsten nano-composites
    Yu, CC
    Kumar, R
    Sudarshan, TS
    [J]. TUNGSTEN AND REFRACTORY METALS 3 - 1995, 1996, : 29 - 36
  • [8] Dispersion of Graphene in Aluminum Powder to Aid Synthesis of Homogenous Nano-Composites
    Yoganand, C. R.
    Ramaswamy, Parvati
    [J]. MATERIALS TODAY-PROCEEDINGS, 2018, 5 (14) : 27928 - 27935
  • [9] Magnetic Nano-Composites and their Industrial Applications
    Sharma, Swati
    Verma, Ambika
    Kumar, Ashok
    Kamyab, Hesam
    [J]. NANO HYBRIDS AND COMPOSITES, 2018, 20 : 149 - 172
  • [10] Preparation of nano-composites for biomedical applications
    Campelj, Stanislav
    Makovec, Darko
    Skrlep, Luka
    Drofenik, Miha
    [J]. MATERIALI IN TEHNOLOGIJE, 2008, 42 (04): : 179 - 182