Supramolecular Chemistry of Carbon-Based Dots Offers Widespread Opportunities

被引:40
作者
Arcudi, Francesca [1 ]
Dordevic, Luka [1 ]
机构
[1] Univ Padua, Dept Chem Sci, Via F Marzolo 1, I-35131 Padua, Italy
关键词
carbon dots; nanoparticles; nanotechnology; non-covalent interactions; self-assembly; supramolecular chemistry; SELF-ASSEMBLY STRATEGY; GRAPHENE QUANTUM DOTS; FLUORESCENT CHEMOSENSORS; NANODOTS; EMISSION; PHOTOLUMINESCENT; NITROGEN; HYBRIDS; HYDROGEL; NANOCOMPOSITE;
D O I
10.1002/smll.202300906
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Carbon dots are an emerging class of nanomaterials that has recently attracted considerable attention for applications that span from biomedicine to energy. These photoluminescent carbon nanoparticles are defined by characteristic sizes of <10 nm, a carbon-based core and various functional groups at their surface. Although the surface groups are widely used to establish non-covalent bonds (through electrostatic interactions, coordinative bonds, and hydrogen bonds) with various other (bio)molecules and polymers, the carbonaceous core could also establish non-covalent bonds (pi-pi stacking or hydrophobic interactions) with pi-extended or apolar compounds. The surface functional groups, in addition, can be modified by various post-synthetic chemical procedures to fine-tune the supramolecular interactions. Our contribution categorizes and analyzes the interactions that are commonly used to engineer carbon dots-based materials and discusses how they have allowed preparation of functional assemblies and architectures used for sensing, (bio)imaging, therapeutic applications, catalysis, and devices. Using non-covalent interactions as a bottom-up approach to prepare carbon dots-based assemblies and composites can exploit the unique features of supramolecular chemistry, which include adaptability, tunability, and stimuli-responsiveness due to the dynamic nature of the non-covalent interactions. It is expected that focusing on the various supramolecular possibilities will influence the future development of this class of nanomaterials.
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页数:13
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共 202 条
[1]   Lighting up the Electrochemiluminescence of Carbon Dots through Pre- and Post-Synthetic Design [J].
Arcudi, Francesca ;
Dordevic, Luka ;
Rebeccani, Sara ;
Cacioppo, Michele ;
Zanut, Alessandra ;
Valenti, Giovanni ;
Paolucci, Francesco ;
Prato, Maurizio .
ADVANCED SCIENCE, 2021, 8 (13)
[2]   Design, Synthesis, and Functionalization Strategies of Tailored Carbon Nanodots [J].
Arcudi, Francesca ;
Dordevic, Luka ;
Prato, Maurizio .
ACCOUNTS OF CHEMICAL RESEARCH, 2019, 52 (08) :2070-2079
[3]   Rationally Designed Carbon Nanodots towards Pure White-Light Emission [J].
Arcudi, Francesca ;
Dordevic, Luka ;
Prato, Maurizio .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2017, 56 (15) :4170-4173
[4]   Surface charge influences protein corona, cell uptake and biological effects of carbon dots [J].
Arezki, Yasmin ;
Delalande, Francois ;
Schaeffer-Reiss, Christine ;
Cianferani, Sarah ;
Rapp, Mickael ;
Lebeau, Luc ;
Pons, Francoise ;
Ronzani, Carole .
NANOSCALE, 2022, 14 (39) :14695-14710
[5]   Engineering Electro- and Photocatalytic Carbon Materials for CO2 Reduction by Formate Dehydrogenase [J].
Badiani, Vivek M. ;
Casadevall, Carla ;
Miller, Melanie ;
Cobb, Samuel J. ;
Manuel, Rita R. . ;
Pereira, Ines A. C. ;
Reisner, Erwin .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2022, 144 (31) :14207-14216
[6]   Simple Strategy for Scalable Preparation Carbon Dots: RTP, Time-Dependent Fluorescence, and NIR Behaviors [J].
Bai, Jianliang ;
Yuan, Guojun ;
Chen, Xu ;
Zhang, Lu ;
Zhu, Yaqing ;
Wang, Xinyu ;
Ren, Lili .
ADVANCED SCIENCE, 2022, 9 (05)
[7]   A Smart Near-Infrared Carbon Dot-Metal Organic Framework Assemblies for Tumor Microenvironment-Activated Cancer Imaging and Chemodynamic-Photothermal Combined Therapy [J].
Bai, Yulong ;
Zhao, Jingjin ;
Zhang, Liangliang ;
Wang, Shulong ;
Hua, Jing ;
Zhao, Shulin ;
Liang, Hong .
ADVANCED HEALTHCARE MATERIALS, 2022, 11 (12)
[8]   Screening Supramolecular Interactions between Carbon Nanodots and Porphyrins [J].
Cadranel, Alejandro ;
Strauss, Volker ;
Margraf, Johannes T. ;
Winterfeld, Kim A. ;
Vogl, Christoph ;
Dordevic, Luka ;
Arcudi, Francesca ;
Hoelzel, Helen ;
Jux, Norbert ;
Prato, Maurizio ;
Guldi, Dirk M. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2018, 140 (03) :904-907
[9]   Two-Dimensional Self-Assembly of Boric Acid-Functionalized Graphene Quantum Dots: Tunable and Superior Optical Properties for Efficient Eco-Friendly Luminescent Solar Concentrators [J].
Cai, Kun-Bin ;
Huang, Hsiu-Ying ;
Hsieh, Meng-Lin ;
Chen, Po-Wen ;
Chiang, Shou-En ;
Chang, Sheng Hsiung ;
Shen, Ji-Lin ;
Liu, Wei-Ren ;
Yuan, Chi-Tsu .
ACS NANO, 2022, 16 (03) :3994-4003
[10]   Single atomically anchored iron on graphene quantum dots for a highly efficient oxygen evolution reaction [J].
Chang, C. -Y. ;
Kashale, A. A. ;
Lee, C. -M. ;
Chu, S. -L. ;
Lin, Y. -F. ;
Chen, I-W. P. .
MATERIALS TODAY ENERGY, 2021, 20