A non-enzymatic highly stable electrochemical sensing platform based on allylamine capped copper nanoparticles for the detection of the soil nitrate content

被引:1
|
作者
Mukherjee, Bimalendu [1 ,2 ]
Mandal, Mukti [1 ]
Suresh, Raghavv Raghavender [1 ]
Kar, Shantanu [4 ]
Parida, Binaya Kumar [4 ]
Chakraborty, Somsubhra [3 ]
Dutta, Gorachand [1 ]
机构
[1] Indian Inst Technol, Sch Med Sci & Technol, Nanobiosensors & Biodevices Lab, Kharagpur 721302, West Bengal, India
[2] Indian Inst Technol, Sch Nano Sci & Technol, Kharagpur 721302, West Bengal, India
[3] Indian Inst Technol, Agr & Food Engn Dept, Kharagpur 721302, West Bengal, India
[4] Coromandel Int Ltd, Coromandel House, Secunderabad 500003, Telangana, India
关键词
MULTIWALL CARBON NANOTUBES; WATER SAMPLES; NITRITE; REDUCTION; ELECTRODES; BEHAVIOR; SENSOR; ARRAY; OXIDE; SIZE;
D O I
10.1039/d4an01345j
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Nitrate (NO3-) ion contamination of water is a major issue that affects many parts of the world due to excessive usage of nitrogen containing fertilizers in the soil. Hence, quantification of NO3- ions in the soil is of utmost importance. In the present research work, we have developed an efficient and highly stable non-enzymatic electrochemical sensor for NO3- ion detection based on allylamine capped copper nanoparticles (Alym@CuNPs) decorated on exfoliated multi-walled carbon nanotubes (Exf-CNTs). Herein, we have addressed the sensor surface storage stability issue of copper nanoparticle based electrochemical sensors for the first time and confirmed the superior storage stability of the Alym@CuNPs modified glassy carbon electrode (GCE) over uncapped copper nanoparticles (uCuNPs) and electrodeposited copper nanoparticles (eCuNPs) modified GCEs. In comparison to the bare GCE, Exf-CNT/GCE and Alym@CuNPs/Exf-CNT/GCE, the proposed Alym@CuNPs-Nafion (NF)/Exf-CNT/GCE demonstrated enhanced catalytic activity towards the electro-reduction of NO3- ions (pH = 2) under optimal experimental conditions, with a considerable increase in cathodic peak currents. Along with that, no inert gas was purged into the electrolyte medium prior to the detection of NO3- ions which makes the sensor more reliable under real environmental conditions. The sensor displayed broad linear ranges from 10 to 1000 mu M (R2 = 0.997), with a limit of detection (LOD) of 5.28 mu M (n = 3) for NO3- ion detection. The sensor surface shows excellent storage stability even up to 45 days with 97.8% retention in current value which is much higher compared to the previously reported works. Additionally, the sensor surface shows promising reproducibility and repeatability results with RSD values of 1.78% and 0.91%, respectively. Moreover, the proposed sensor is successfully utilized to detect NO3- ions in real soil samples.
引用
收藏
页码:936 / 952
页数:17
相关论文
共 50 条
  • [41] Facile Non-Enzymatic Electrochemical Sensing for Glucose Based on Cu2O-BSA Nanoparticles Modified GCE
    Dai, Zhikuang
    Yang, Ailing
    Bao, Xichang
    Yang, Renqiang
    SENSORS, 2019, 19 (12)
  • [42] Facile copper-based nanofibrous matrix for glucose sensing: Eenzymatic vs. non-enzymatic
    Apetrei, Roxana-Mihaela
    Camurlu, Pinar
    BIOELECTROCHEMISTRY, 2021, 140
  • [43] A Comparative evaluation of Graphene oxide based materials for Electrochemical non-enzymatic sensing of Curcumin
    Dey, Nibedita
    Devasena, T.
    Sivalingam, Tamilarasu
    MATERIALS RESEARCH EXPRESS, 2018, 5 (02):
  • [44] Investigation on Electrochemical Property of CNT Fibers and its Non-enzymatic Sensing Performance for Glucose Detection
    Song, Min-Jung
    KOREAN CHEMICAL ENGINEERING RESEARCH, 2021, 59 (02): : 159 - 164
  • [45] A nanocomposite-based electrochemical sensor for non-enzymatic detection of hydrogen peroxide
    Du, Xin
    Chen, Yuan
    Dong, Wenhao
    Han, Bingkai
    Liu, Min
    Chen, Qiang
    Zhou, Jun
    ONCOTARGET, 2017, 8 (08) : 13039 - 13047
  • [46] PtAu/C based bimetallic nanocomposites for non-enzymatic electrochemical glucose detection
    Singh, Baljit
    Laffir, Fathima
    McCormac, Timothy
    Dempsey, Eithne
    SENSORS AND ACTUATORS B-CHEMICAL, 2010, 150 (01): : 80 - 92
  • [47] Non-Enzymatic Electrochemical Hydrogen Peroxide Sensor Based on Copper Oxide Hollow Microspheres
    Shuai, Ying
    Liu, Chuanghua
    Wang, Jia
    Ma, Jun
    Cui, Xiaoyan
    SENSOR LETTERS, 2013, 11 (10) : 1945 - 1949
  • [48] Non-enzymatic electrochemical detection of hydrogen peroxide on highly amidized graphene quantum dot electrodes
    Gu, Siyong
    Hsieh, Chien-Te
    Mallick, Bikash Chandra
    Fu, Chun-Chieh
    Juang, Ruey-Shin
    Gandomi, Yasser Ashraf
    Kihm, Kenneth D.
    APPLIED SURFACE SCIENCE, 2020, 528
  • [49] CuxO nanoparticles loaded LTA zeolite as non-enzymatic and noble-metal-free sensing platform for accurate and fast glucose detection
    Zhu, Xinyu
    Tong, Xiyuan
    Li, Zhuozhe
    Fang, Fang
    Bian, Qianqian
    Yifeng, E.
    Chen, Peng
    Li, Li
    Qian, Kun
    CHEMICAL ENGINEERING JOURNAL, 2024, 494
  • [50] CuO nanoparticles incorporated in hierarchical MFI zeolite as highly active electrocatalyst for non-enzymatic glucose sensing
    Dong, Junping
    Tian, Taolei
    Ren, Linxiao
    Zhang, Yuan
    Xu, Jiaqiang
    Cheng, Xiaowei
    COLLOIDS AND SURFACES B-BIOINTERFACES, 2015, 125 : 206 - 212