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Ngày đăng: 25/01/2021, 23:15

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Tiêu đề: Synthesis of highly dispersed ZnO nanoparticles on graphene surface and their acetylene sensing properties
2. Xu, S., et al., Preparation of ZnO flower/reduced graphene oxide composite with enhanced photocatalytic performance under sunlight. Ceramics International, 2015. 41(3, Part A): p. 4007-4013 Sách, tạp chí
Tiêu đề: Preparation of ZnO flower/reduced graphene oxide composite with enhanced photocatalytic performance under sunlight
3. Zhang, L., et al., ZnO-reduced graphene oxide nanocomposites as efficient photocatalysts for photocatalytic reduction of CO2. Ceramics International, 2015. 41(5, Part A): p. 6256-6262 Sách, tạp chí
Tiêu đề: ZnO-reduced graphene oxide nanocomposites as efficient photocatalysts for photocatalytic reduction of CO2
4. Saranya, M., R. Ramachandran, and F. Wang, Graphene-zinc oxide (G-ZnO) nanocomposite for electrochemical supercapacitor applications. Journal of Science: Advanced Materials and Devices, 2016. 1(4): p. 454-460 Sách, tạp chí
Tiêu đề: Graphene-zinc oxide (G-ZnO) nanocomposite for electrochemical supercapacitor applications
5. Zhong, L. and K. Yun, Graphene oxide-modified ZnO particles: synthesis, characterization, and antibacterial properties. International Journal of Nanomedicine, 2015. 10(Spec Iss): p. 79-92 Sách, tạp chí
Tiêu đề: Graphene oxide-modified ZnO particles: synthesis, characterization, and antibacterial properties
6. Zayed, M., A.M. Ahmed, and M. Shaban, Synthesis and characterization of nanoporous ZnO and Pt/ZnO thin films for dye degradation and water splitting applications. International Journal of Hydrogen Energy, 2019 Sách, tạp chí
Tiêu đề: Synthesis and characterization of nanoporous ZnO and Pt/ZnO thin films for dye degradation and water splitting applications
7. Wongrat, E., et al., Acetone gas sensors based on ZnO nanostructures decorated with Pt and Nb. Ceramics International, 2017. 43: p. S557-S566 Sách, tạp chí
Tiêu đề: Acetone gas sensors based on ZnO nanostructures decorated with Pt and Nb
8. Xu, Y., et al., Chemical states of gold doped in ZnO films and its effect on electrical and optical properties. Journal of Alloys and Compounds, 2014.585: p. 479-484 Sách, tạp chí
Tiêu đề: Chemical states of gold doped in ZnO films and its effect on electrical and optical properties
9. Pan, X., et al., The enhancement of near-band-edge emission by hydrogen plasma treatment for Ga-doped ZnO, ZnO and ZnMgO films. Optical Materials, 2019. 92: p. 11-15 Sách, tạp chí
Tiêu đề: The enhancement of near-band-edge emission by hydrogen plasma treatment for Ga-doped ZnO, ZnO and ZnMgO films
10. Jadhav, J. and S. Biswas, Hybrid ZnO:Ag core-shell nanoparticles for wastewater treatment : Growth mechanism and plasmonically enhanced photocatalytic activity. Applied Surface Science, 2018. 456: p. 49-58 Sách, tạp chí
Tiêu đề: Hybrid ZnO:Ag core-shell nanoparticles for wastewater treatment : Growth mechanism and plasmonically enhanced photocatalytic activity
11. R, R., S. K.S, and G. K.G, ZnO:Ag nanorods as efficient photocatalysts: Sunlight driven photocatalytic degradation of sulforhodamine B. Applied Surface Science, 2018. 427: p. 863-875 Sách, tạp chí
Tiêu đề: ZnO:Ag nanorods as efficient photocatalysts: "Sunlight driven photocatalytic degradation of sulforhodamine B
12. Baruah, B., L. Downer, and D. Agyeman, Fabric-based composite materials containing ZnO-NRs and ZnO-NRs-AuNPs and their application in photocatalysis. Materials Chemistry and Physics, 2019. 231: p. 252-259 Sách, tạp chí
Tiêu đề: Fabric-based composite materials containing ZnO-NRs and ZnO-NRs-AuNPs and their application in photocatalysis
13. Shunmugiah, G., et al., Synthesis of ZnO decorated graphene nanocomposite for enhanced photocatalytic properties. Vol. 115. 2014. 173504-173504 Sách, tạp chí
Tiêu đề: Synthesis of ZnO decorated graphene nanocomposite for enhanced photocatalytic properties
14. Saravanakumar, B., R. Mohan, and S.-J. Kim, Facile synthesis of graphene/ZnO nanocomposites by low temperature hydrothermal method.Materials Research Bulletin, 2013. 48(2): p. 878-883 Sách, tạp chí
Tiêu đề: Facile synthesis of graphene/ZnO nanocomposites by low temperature hydrothermal method
15. Yin, P.T., et al., Design, Synthesis, and Characterization of Graphene–Nanoparticle Hybrid Materials for Bioapplications. Chemical Reviews, 2015. 115(7): p. 2483-2531 Sách, tạp chí
Tiêu đề: Design, Synthesis, and Characterization of Graphene–"Nanoparticle Hybrid Materials for Bioapplications
16. Zhu, Y.W., et al., Graphene and graphene oxide: synthesis, properties and applications. Vol. 20. 2010. 1-19 Sách, tạp chí
Tiêu đề: Graphene and graphene oxide: synthesis, properties and applications
17. Ding, J., et al., Photoluminescence investigation about zinc oxide with graphene oxide & reduced graphene oxide buffer layers. Journal of Colloid and Interface Science, 2014. 416: p. 289-293 Sách, tạp chí
Tiêu đề: Photoluminescence investigation about zinc oxide with graphene oxide & reduced graphene oxide buffer layers
18. Azarang, M., E-mail: azarangmajid@gmail.com, E-mail: azarang@phys.usb.ac.ir, et al., Effects of graphene oxide concentration on optical properties of ZnO/RGO nanocomposites and their application to photocurrent generation. Journal of Applied Physics, 2014: p. Medium: X;Size: page(s) 084307-084307.6 Sách, tạp chí
Tiêu đề: Effects of graphene oxide concentration on optical properties of ZnO/RGO nanocomposites and their application to photocurrent generation
20. Kashinath, L., K. Namratha, and K. Byrappa, Microwave Assisted Synthesis and Characterization of Nanostructure Zinc Oxide-Graphene Oxide and Photo Degradation of Brilliant Blue. Materials Today: Proceedings, 2016.3(1): p. 74-83 Sách, tạp chí
Tiêu đề: Microwave Assisted Synthesis and Characterization of Nanostructure Zinc Oxide-Graphene Oxide and Photo Degradation of Brilliant Blue
21. AlZoubi, T., et al., Enhanced UV-light detection based on ZnO nanowires/graphene oxide hybrid using cost-effective low temperature hydrothermal process. Optical Materials, 2018. 77: p. 226-232 Sách, tạp chí
Tiêu đề: Enhanced UV-light detection based on ZnO nanowires/graphene oxide hybrid using cost-effective low temperature hydrothermal process

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