What works and what doesn't when graphene quantum dots are functionalized for contemporary applications?

被引:13
作者
Ravi, Pavithra V. [1 ]
Subramaniyam, Vinodhini [1 ,4 ]
Saravanakumar, Neha [2 ]
Pattabiraman, Ajay [3 ]
Pichumani, Moorthi [1 ]
机构
[1] Sri Ramakrishna Engn Coll, Dept Nanosci & Technol, Coimbatore 641022, Tamil Nadu, India
[2] PSG Coll Technol, Dept Biotechnol, Coimbatore 641004, Tamil Nadu, India
[3] Govt Primary Hlth Ctr, Coimbatore 641108, Tamil Nadu, India
[4] Karpagam Coll Engn, Dept Phys, Coimbatore 641032, Tamil Nadu, India
关键词
Graphene quantum dots; Functionalization strategies; Functionalized graphene quantum dots; Optical sensor; Electrochemical sensor; Catalysis; ELECTROCHEMICAL DETECTION; FACILE SYNTHESIS; OPTICAL-PROPERTIES; FLUORESCENT-PROBE; ENHANCED PHOTOLUMINESCENCE; TUNABLE FLUORESCENCE; SILVER NANOPARTICLES; GOLD NANOPARTICLES; HIGHLY EFFICIENT; DRUG-DELIVERY;
D O I
10.1016/j.ccr.2023.215270
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Graphene Quantum Dots (GQDs) is the breakthrough and the most known material for their optoelectronic properties. The richness of electrons promotes the GQDs to the next level in a wide variety of applications. An extensive array of domains includes GQDs for several applications such as agriculture, bio-medical, device fabrication, sensor, energy storage, water desalination, environmental remediation, and many more. The func-tionalization of GQDs enhances their biocompatibility, which can be a substitute for many traditionally available materials which are toxic and hazardous like metal quantum dots and dyes in myriad fields such as biotech-nology, immunology, biochemistry, analytical, and diagnostic departments. The nanoscale morphology of the GQDs can alter the device structure and simplify functionality. Functionalized GQDs offer higher efficiency within a time which aids their potential usage in wearable and portable sensor developments. Though GQDs are functionalized with numerous functional materials, biomolecules (carbohydrates, lipids, nucleic acids, and proteins), heteroatoms (S, N, B, Cl, F, etc.,), metals (Au, Ag, metal oxides (copper oxide, iron oxide, bismuth oxide, etc.,), amino acids (glycine, histidine, cysteine, valine, etc.,), polymers (polyaniline, polypyrene, polypyrrole, poly arginine), drugs (penicillamine, folic acid, dopamine, glucose, ascorbic acid), dyes (rhodamine, methylene blue) and many more, the strategies of functionalization are unspoken and need to explore in detail to choose them for the desired applications. Functionalization strategies could be the major factor in altering the resultant functionalized GQDs and their properties. In this review, we have explored several functionalization strategies of GQDs and elucidated their applications in different domains. The elucidation of the functionalization strategies will enlighten the young researchers in availing the correct functionalization method for the opted functional group elements. This will lead to achieving the resultant material with enhanced and tuned properties for the anticipated applications in prevalent fields.
引用
收藏
页数:26
相关论文
共 50 条
  • [41] Peptide-functionalized quantum dots for potential applications in the imaging and treatment of obesity
    Thovhogi, Ntevheleni
    Sibuyi, Nicole Remaliah Samantha
    Onani, Martin Opiyo
    Meyer, Mervin
    Madiehe, Abram Madimabe
    INTERNATIONAL JOURNAL OF NANOMEDICINE, 2018, 13 : 2551 - 2559
  • [42] Graphene Quantum Dots and Their Applications in Bioimaging, Biosensing, and Therapy
    Chung, Seokhwan
    Revia, Richard A.
    Zhang, Miqin
    ADVANCED MATERIALS, 2021, 33 (22)
  • [43] Graphene quantum dots: preparations, properties, functionalizations and applications
    Tian, Pin
    Tang, Libin
    Teng, Kar-Seng
    Lau, Shu-Ping
    MATERIALS FUTURES, 2024, 3 (02):
  • [44] Removal of Atrazine from contaminated water by functionalized graphene quantum dots
    Hellal, Ahmed
    Abdelsalam, Hazem
    Tawfik, Walid
    Ibrahim, Medhat A.
    OPTICAL AND QUANTUM ELECTRONICS, 2024, 56 (03)
  • [45] Removal of Atrazine from contaminated water by functionalized graphene quantum dots
    Ahmed Hellal
    Hazem Abdelsalam
    Walid Tawfik
    Medhat A. Ibrahim
    Optical and Quantum Electronics, 2024, 56
  • [46] A Novel Lubricant Based on Covalent Functionalized Graphene Oxide Quantum Dots
    Wolk, Andreas
    Rosenthal, Marta
    Neuhaus, Stephan
    Huber, Klaus
    Brassat, Katharina
    Lindner, Joerg K. N.
    Grothe, Richard
    Grundmeier, Guido
    Bremser, Wolfgang
    Wilhelm, Rene
    SCIENTIFIC REPORTS, 2018, 8
  • [47] Role of functionalized graphene quantum dots in hydrogen evolution reaction: A density functional theory study
    Sharma, Vaishali
    Roondhe, Basant
    Saxena, Sumit
    Shukla, Alok
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (99) : 41748 - 41758
  • [48] Graphene quantum dots: Synthesis, optical properties and navigational applications against cancer
    Kansara, Vrushti
    Shukla, Rahul
    Bahadur, Pratap
    Tiwari, Sanjay
    Flora, Swaran Jeet Singh
    MATERIALS TODAY COMMUNICATIONS, 2022, 31
  • [49] Graphene Quantum Dots as Fluorescence Probes for Sensing Metal Ions: Synthesis and Applications
    Ju, Jian
    Chen, Wei
    CURRENT ORGANIC CHEMISTRY, 2015, 19 (12) : 1150 - 1162
  • [50] Enhanced Chemotherapy for Glioblastoma Multiforme Mediated by Functionalized Graphene Quantum Dots
    Perini, Giordano
    Palmieri, Valentina
    Ciasca, Gabriele
    D'Ascenzo, Marcello
    Primiano, Aniello
    Gervasoni, Jacopo
    De Maio, Flavio
    De Spirito, Marco
    Papi, Massimiliano
    MATERIALS, 2020, 13 (18)