Nanomaterial-Based Sensors for Coumarin Detection

被引:0
|
作者
Saylan, Yeseren [1 ]
Aliyeva, Nilufer [1 ]
Eroglu, Seckin [2 ]
Denizli, Adil [1 ]
机构
[1] Hacettepe Univ, Dept Chem Engn, TR-06800 Ankara, Turkiye
[2] Middle East Tech Univ, Dept Biol Sci, TR-06800 Ankara, Turkiye
来源
ACS OMEGA | 2024年 / 9卷 / 28期
关键词
ELECTROCHEMICAL SENSOR; ULTRASENSITIVE DETECTION; CARBON NANOTUBES; GRAPHENE; NANOPARTICLES; ELECTRODE; PLATFORM; DOTS; FLUORESCENCE; DERIVATIVES;
D O I
10.1021/acsomega.4c01945
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Sensors are widely used owing to their advantages including excellent sensing performance, user-friendliness, portability, rapid response, high sensitivity, and specificity. Sensor technologies have been expanded rapidly in recent years to offer many applications in medicine, pharmaceuticals, the environment, food safety, and national security. Various nanomaterial-based sensors have been developed for their exciting features, such as a powerful absorption band in the visible region, excellent electrical conductivity, and good mechanical properties. Natural and synthetic coumarin derivatives are attracting attention in the development of functional polymers and polymeric networks for their unique biological, optical, and photochemical properties. They are the most abundant organic molecules in medicine because of their biological and pharmacological impacts. Furthermore, coumarin derivatives can modulate signaling pathways that affect various cellular processes. This review covers the discovery of coumarins and their derivatives, the integration of nanomaterial-based sensors, and recent advances in nanomaterial-based sensing for coumarins. This review also explains how sensors work, their types, their pros and cons, and sensor studies for coumarin detection in recent years.
引用
收藏
页码:30015 / 30034
页数:20
相关论文
共 50 条
  • [1] Nanomaterial-Based Sensors for the Detection of Glyphosate
    Zuniga, Karem
    Rebollar, Georgette
    Avelar, Mayra
    Campos-Teran, Jose
    Torres, Eduardo
    WATER, 2022, 14 (15)
  • [2] Nanomaterial-based sensors for microbe detection: a review
    Khan, Muhammad Qamar
    Khan, Jahangir
    Alvi, Muhammad Abbas Haider
    Nawaz, Hifza
    Fahad, Muhammad
    Umar, Muhammad
    DISCOVER NANO, 2024, 19 (01)
  • [3] Nanomaterial-based aptamer sensors for arsenic detection
    Mao, Kang
    Zhang, Hua
    Wang, Zhenglu
    Cao, Haorui
    Zhang, Kuankuan
    Li, Xiqing
    Yang, Zhugen
    BIOSENSORS & BIOELECTRONICS, 2020, 148
  • [4] Nanomaterial-based electrochemical sensors for detection of amino acids
    Imanzadeh, Hamideh
    Sefid-Sefidehkhan, Yasaman
    Afshary, Hosein
    Afruz, Ali
    Amiri, Mandana
    JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 2023, 230
  • [5] Nanomaterial-based electrochemical sensors for detection of glucose and insulin
    Jana Hovancová
    Ivana Šišoláková
    Renata Oriňaková
    Andrej Oriňak
    Journal of Solid State Electrochemistry, 2017, 21 : 2147 - 2166
  • [6] Nanomaterial-based sensors for the detection of biological threat agents
    Rowland, Clare E.
    Brown, Carl W., III
    Delehanty, James B.
    Medintz, Igor L.
    MATERIALS TODAY, 2016, 19 (08) : 464 - 477
  • [7] Nanomaterial-based electrochemical sensors for detection of glucose and insulin
    Hovancova, Jana
    Sisolakova, Ivana
    Orinakova, Renata
    Orinak, Andrej
    JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2017, 21 (08) : 2147 - 2166
  • [8] Nanomaterial-based sensors as potential remedy for detection of biotoxins
    Jigyasa
    Rajput, Jaspreet Kaur
    FOOD CONTROL, 2022, 135
  • [9] Nanomaterial-based fluorescent sensors for the detection of lead ions
    Singh, Harpreet
    Bamrah, Amy
    Bhardwaj, Sanjeev K.
    Deep, Akash
    Khatri, Madhu
    Kim, Ki-Hyun
    Bhardwaj, Neha
    JOURNAL OF HAZARDOUS MATERIALS, 2021, 407
  • [10] Nanomaterial-based sensors for detection of disease by volatile organic compounds
    Broza, Yoav Y.
    Haick, Hossam
    NANOMEDICINE, 2013, 8 (05) : 785 - 806