Metal-conducting polymer hybrid composites: A promising platform for electrochemical sensing

被引:21
作者
Abhishek, N. [1 ]
Verma, Arunima [1 ]
Singh, Anita [2 ]
Vandana [3 ]
Kumar, Tanuj [1 ]
机构
[1] Cent Univ Jammu, Dept Nanosci & Mat, Jammu 181143, India
[2] Cent Univ Haryana, Dept Enviormental Sci, Mahendergarh 23031, India
[3] Cent Univ Jammu, Dept Phys & Astron Sci, Jammu 181143, India
关键词
Conducting polymer; Metal doping; Metal-conducting polymer composite; Electrochemical sensing; Electrochemical sensor; ONE-STEP SYNTHESIS; GOLD NANOPARTICLES; AU NANOPARTICLES; GLUCOSE-OXIDASE; GRAPHENE OXIDE; NANOCOMPOSITES SYNTHESIS; POLYANILINE NANOFIBERS; MODIFIED ELECTRODE; BULK SYNTHESIS; ASCORBIC-ACID;
D O I
10.1016/j.inoche.2023.111334
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
In recent years conducting polymers (CP) are extensively used for electrochemical sensing applications. They are the polymers which shows electrical conductivity. Conducting polymers are very sensitive to minor changes in concentrations of analyte. In complex systems, electrochemical sensors are renowned for their great specificity, sensitivity, and accuracy. These sensors can pick up on solid, liquid, and gaseous phase analyses.The combination of CPs with metal nanoparticles especially noble metal nanoparticle has attracted a lot of attention from researchers. Because of their distinctive electrical and optical characteristics as well as their many uses in industries including Sensors, electronics, photonics, catalysts, nano and biotechnology. An Electrochemical sensor convert the electrochemical response of target species on electrodes into usable signals which helps the detection of various chemical entities. Electrochemical sensor's sensitivity, response times, and stability have recently been explored through the introduction of metal nanoparticles into conducting polymers. To increase the likelihood that metal nanoparticles will come into touch with their surroundings, metal nanoparticles may first be evenly disseminated throughout a polymer matrix. Second, the conductivity of the polymer or its composite structure may be improved by the nanoparticles included within. As a result, conductive polymers combined with metal nanoparticles in the form of thin films or nanowires showing efficiency particularly in the chemical sensing and biological sensing of a variety of analytes. Furthermore, the flexibility of conducting polymers gives the nanocomposite far greater stability. The primary benefits of using metal/conducting polymer as chemisensors and bio sensors, in a nutshell, are raising the specific area and enhancing catalytic efficiency.This review is focused on Metal-Conducting polymer composites and their electrochemical sensing application. Synthesis and fabrication of metal-conducting polymer composites, different sensors like electrochemical sensors, electrochemical biosensors and chemiresistive sensors are discussed as well as the electrochemical sensing application of metal doped derivatives of conducting polymers especially PANI, PEDOT and PPy are highlighted.
引用
收藏
页数:19
相关论文
共 154 条
  • [51] Site-selective deposition of ultra-fine Au nanoparticles on polyaniline nanofibers for H2O2 sensing
    Hung, Chi-Chang
    Wen, Ten-Chin
    Wei, Yen
    [J]. MATERIALS CHEMISTRY AND PHYSICS, 2010, 122 (2-3) : 392 - 396
  • [52] Inzelt G., 2008, Conducting Polymers: A New Era in Electrochemistry
  • [53] Electrocatalytically active nanocomposite from palladium nanoparticles and polyaniline: Oxidation of hydrazine
    Ivanov, Svetlozar
    Lange, Ulrich
    Tsakova, Vessela
    Mirsky, Vladimir M.
    [J]. SENSORS AND ACTUATORS B-CHEMICAL, 2010, 150 (01): : 271 - 278
  • [54] SERS Detection of Rhodamine-6G on Ion Beam Nanostructured Ultra-Thin Gold (Au) Films: A Correlation between Fractal Growth, Water Contact-Angle and Raman Intensity
    Jasrotia, Priya
    Priya, Bhanu
    Kumar, Raj
    Bishnoi, Priyanka
    Vij, Ankush
    Kumar, Tanuj
    [J]. ECS JOURNAL OF SOLID STATE SCIENCE AND TECHNOLOGY, 2023, 12 (02)
  • [55] A one-pot 'green' synthesis of Pd-decorated PEDOT nanospheres for nonenzymatic hydrogen peroxide sensing
    Jiang, Fengxing
    Yue, Ruirui
    Du, Yukou
    Xu, Jingkun
    Yang, Ping
    [J]. BIOSENSORS & BIOELECTRONICS, 2013, 44 : 127 - 131
  • [56] Review on nanomaterials/conducting polymer based nanocomposites for the development of biosensors and electrochemical sensors
    Kaur, Gagandeep
    Kaur, Anupreet
    Kaur, Harpreet
    [J]. POLYMER-PLASTICS TECHNOLOGY AND MATERIALS, 2021, 60 (05): : 502 - 519
  • [57] Evaluation of amperometric glucose biosensors based on glucose oxidase encapsulated within enzymatically synthesized polyaniline and polypyrrole
    Kausaite-Minkstimiene, Asta
    Mazeiko, Viktor
    Ramanaviciene, Almira
    Ramanavicius, Arunas
    [J]. SENSORS AND ACTUATORS B-CHEMICAL, 2011, 158 (01) : 278 - 285
  • [58] Kausar A., 2021, Conducting polymer-based nanocomposites: fundamentals and applications
  • [59] Composite electrode materials based on conducting polymers loaded with metal nanostructures
    Kondratiev, V. V.
    Malev, V. V.
    Eliseeva, S. N.
    [J]. RUSSIAN CHEMICAL REVIEWS, 2016, 85 (01) : 14 - 37
  • [60] PEDOT-supported Pd nanoparticles as a catalyst for hydrazine oxidation
    Kondratiev, Veniamin V.
    Babkova, Tatyana A.
    Tolstopjatova, Elena G.
    [J]. JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2013, 17 (06) : 1621 - 1630