Open Access
Issue |
E3S Web Conf.
Volume 267, 2021
7th International Conference on Energy Science and Chemical Engineering (ICESCE 2021)
|
|
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Article Number | 02057 | |
Number of page(s) | 5 | |
Section | Environmental Chemistry Research and Chemical Preparation Process | |
DOI | https://doi.org/10.1051/e3sconf/202126702057 | |
Published online | 04 June 2021 |
- IIJIMA, Sumio. Helical microtubules of graphitic carbon[J]. nature, 1991, 354.6348: 56. [Google Scholar]
- KANG, Seoktae, et al. Single-walled carbon nanotubes exhibit strong antimicrobial activity[J]. Langmuir, 2007, 23.17: 8670-8673. [Google Scholar]
- YANG, Cheenou, et al. Antimicrobial activity of single-walled carbon nanotubes: length effect[J]. Langmuir, 2010, 26.20: 16013-16019. [Google Scholar]
- LIU, Shaobin, et al. Sharper and faster “nano darts” kill more bacteria: a study of antibacterial activity of individually dispersed pristine single-walled carbon nanotube[J]. ACS nano, 2009, 3.12: 3891-3902. [Google Scholar]
- ARIAS, L. Renea; YANG, Liju. Inactivation of bacterial pathogens by carbon nanotubes in suspensions[J]. Langmuir, 2009, 25.5: 3003-3012. [Google Scholar]
- Liu T, Tang H Q, Cai X M, et al. A study on bactericidal properties of Ag coated carbon nanotubes[J]. Nuclear Instruments and Methods in Physics Research B, 2007, 264:282-286. [Google Scholar]
- ZARDINI, Hadi Zare, et al. Enhanced antibacterial activity of amino acids-functionalized multi walled carbon nanotubes by a simple method[J]. Colloids and Surfaces B: Biointerfaces, 2012, 92: 196-202. [Google Scholar]
- ASLAN, Seyma, et al. Carbon nanotube-based antimicrobial biomaterials formed via layer-by-layer assembly with polypeptides[J]. Journal of colloid and interface science, 2012, 388.1: 268-273. [Google Scholar]
- DONG, Xiuli, et al. Inhibitory effects of nisin-coated multi-walled carbon nanotube sheet on biofilm formation from Bacillus anthracis spores[J]. Journal of Environmental Sciences, 2014, 26.12: 2526-2534. [Google Scholar]
- HU, Wenbing, et al. Graphene-based antibacterial paper[J]. ACS nano, 2010, 4.7: 4317-4323. [Google Scholar]
- LIU, Shaobin, et al. Antibacterial activity of graphite, graphite oxide, graphene oxide, and reduced graphene oxide: membrane and oxidative stress. ACS nano, 2011, 5.9: 6971-6980. [Google Scholar]
- LIU, Lei, et al. Facile synthesis of monodispersed silver nanoparticles on graphene oxide sheets with enhanced antibacterial activity. New Journal of Chemistry, 2011, 35.7: 1418-1423. [Google Scholar]
- Lim H N, Huang N M, Loo C H. Facile preparation of grapheme -based chitosan films:Enhanced thermal, mechanical and antibacterial properties[J]. Joural of NonCrystalline Solids, 2012(358): 525-530. [Google Scholar]
- Sun H J, Gao N, Dong K, et al. Graphene quantum dots-band-aids used for wound disinfection. Acs Nano, 2014, 8(6): 6202-6210. [CrossRef] [PubMed] [Google Scholar]
- Wang Z, Dong K, Liu Z, et al. Activation of biologically relevant levels of reactive oxygen species by Au/g-C3N4 hybrid nanozyme for bacteria killing and wound disinfection. Biomaterials, 2017, 113: 145-157. [CrossRef] [PubMed] [Google Scholar]
- Tao Y, Ju E G, Ren J S, et al. Bifunctionalized mesoporous silica-supported gold nanoparticles: intrinsic oxidase and peroxidase catalytic activities for antibacterial applications. Adv Mater, 2015, 27(6): 1097-1104. [CrossRef] [PubMed] [Google Scholar]
- Ji H, Dong K, Yan Z, et al. Bacterial hyaluronidase self-triggered prodrug release for chemo-photothermal synergistic treatment of bacterial infection. Small, 2016, 12(45): 6200-6206 [CrossRef] [PubMed] [Google Scholar]
- RIGODANZA, Francesco, et al. Customizing the Electrochemical Properties of Carbon Nanodots by Using Quinones in Bottom‐Up Synthesis. Angewandte Chemie, 2018, 130.18: 5156-5161. [Google Scholar]
- Travlou N A, Giannakoudakis D A, Algarra M, et al. S-and N-doped carbon quantum dots: Surface chemistry dependent antibacterial activity[J]. Carbon, 2018, 135:104-111. [Google Scholar]
- Xin Q, Liu Q, Geng L, et al. Chiral nanoparticle as a new efficient antimicrobial nanoagent[J]. Advanced healthcare materials, 2017, 6(4): 1601011. [Google Scholar]
- JIAN, Hong-Jyuan, et al. Super-cationic carbon quantum dots synthesized from spermidine as an eye drop formulation for topical treatment of bacterial keratitis. ACS nano, 2017, 11.7: 6703-6716. [Google Scholar]
- Stanković, Nenad K., et al. Antibacterial and antibiofouling properties of light triggered fluorescent hydrophobic carbon quantum dots Langmuir–Blodgett thin films. ACS Sustainable Chemistry & Engineering, 2018, 6.3: 4154-4163. [Google Scholar]
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