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TÀI LIỆU THAM KHẢO

DẠY KÈM QUY NHƠN OFFICIAL TÀI LIỆU THAM KHẢO [1] Ramanathan Nagarajan, "Nanoparticles: building blocks for nanotechnology," ed: ACS Publications, 2008. [2] Mini Mishra,P Chauhan, "Nanosilver and its medical implications", J. Nanomed Res, 2 (5), 2015. [3] K. Arivalagan, S. Ravichandran, K. Rangasamy, E. Karthikeyan, "Nanomaterials and its Potential Applications", International Journal of Chem Tech Research, 3 534-538, 2011. [4] Junli Li, Hyunkyu Sang, Huiyuan Guo, James T Popko, Lili He, Jason C White, et al., "Antifungal mechanisms of ZnO and Ag nanoparticles to Sclerotinia homoeocarpa", Nanotechnology, 28 (15), 155101, 2017. [5] Xuemei Chen, Seockmo Ku, Justin A Weibel, Eduardo Ximenes, Xingya Liu, Michael Ladisch, et al., "Enhanced antimicrobial efficacy of bimetallic porous CuO microspheres decorated with Ag nanoparticles", ACS applied materials & interfaces, 9 (45), 39165-39173, 2017. [6] Kayano Sunada, Toshiya Watanabe, Kazuhito Hashimoto, "Studies on photokilling of bacteria on TiO2 thin film", Journal of Photochemistry and Photobiology A: Chemistry, 156 (1-3), 227-233, 2003. [7] Muhammad Sani Usman, Mohamed Ezzat El Zowalaty, Kamyar Shameli, Norhazlin Zainuddin, Mohamed Salama, Nor Azowa Ibrahim, "Synthesis, characterization, and antimicrobial properties of copper nanoparticles", International journal of nanomedicine, 8 4467, 2013. [8] Tugba O Okyay, Rukayya K Bala, Hang N Nguyen, Ramazan Atalay, Yavuz Bayam, Debora F Rodrigues, "Antibacterial properties and mechanisms of toxicity of sonochemically grown ZnO nanorods", RSC Advances, 5 (4), 25682575, 2015. 96

DẠY KÈM QUY NHƠN OFFICIAL [9] Timothy E Cooney, "Bactericidal activity of copper and non-copper paints", Infection Control & Hospital Epidemiology, 16 (8), 444-450, 1995. [10] Joseph J Cooney,Ruey-Jing Tang, "[47] Quantifying effects of antifouling paints on microbial biofilm formation," in Methods in enzymology. 310, ed: Elsevier, 1999, pp. 637-644. [11] Ojas Mahapatra, Megha Bhagat, C Gopalakrishnan, Kantha D Arunachalam, "Ultrafine dispersed CuO nanoparticles and their antibacterial activity", Journal of Experimental Nanoscience, 3 (3), 185-193, 2008. [12] Ameer Azam, Arham S Ahmed, M Oves, MS Khan, Adnan Memic, "Sizedependent antimicrobial properties of CuO nanoparticles against Gram-positive and-negative bacterial strains", International journal of nanomedicine, 7 3527, 2012. [13] Solmaz Maleki Dizaj, Farzaneh Lotfipour, Mohammad Barzegar-Jalali, Mohammad Hossein Zarrintan, Khosro Adibkia, "Antimicrobial activity of the metals and metal oxide nanoparticles", Materials Science and Engineering: C, 44 278-284, 2014. [14] Nagarajan Padmavathy,Rajagopalan Vijayaraghavan, "Enhanced bioactivity of ZnO nanoparticles—an antimicrobial study", Science and technology of advanced materials, 9 (3), 035004, 2008. [15] G Nixon Samuel Vijayakumar, S Devashankar, M Rathnakumari, P Sureshkumar, "Synthesis of electrospun ZnO/CuO nanocomposite fibers and their dielectric and non-linear optic studies", Journal of alloys and compounds, 507 (1), 225-229, 2010. [16] Adil M Allahverdiyev, Emrah Sefik Abamor, Malahat Bagirova, Miriam Rafailovich, "Antimicrobial effects of TiO2 and Ag2O nanoparticles against drug-resistant bacteria and leishmania parasites", Future microbiology, 6 (8), 933-940, 2011. 97

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DẠY KÈM QUY NHƠN OFFICIAL [17] Pin-Ching Maness, Sharon Smolinski, Daniel M Blake, Zheng Huang, Edward J Wolfrum, William A Jacoby, "Bactericidal activity of photocatalytic TiO2 reaction: toward an understanding of its killing mechanism", Applied and environmental microbiology, 65 (9), 4094-4098, 1999. [18] Chang Wei, Wen Yuan Lin, Zulkarnain Zainal, Nathan E Williams, Kai Zhu, Andrew P Kruzic, et al., "Bactericidal activity of TiO2 photocatalyst in aqueous media: toward a solar-assisted water disinfection system", Environmental science & technology, 28 (5), 934-938, 1994. [19] Adil M Allahverdiyev, Emrah Sefik Abamor, Melahat Bagirova, Serap Yesilkir Baydar, Sezen Canim Ates, Figen Kaya, et al., "Investigation of antileishmanial activities of Tio2@ Ag nanoparticles on biological properties of L. tropica and L. infantum parasites, in vitro", Experimental parasitology, 135 (1), 55-63, 2013. [20] Anna S Brady‐Estévez, Seoktae Kang, Menachem Elimelech, "A single‐walled‐carbon‐nanotube filter for removal of viral and bacterial pathogens", Small, 4 (4), 481-484, 2008. [21] Robert Y Pelgrift,Adam J Friedman, "Nanotechnology as a therapeutic tool to combat microbial resistance", Advanced drug delivery reviews, 65 (13-14), 1803-1815, 2013. [22] Karin Blecher, Adnan Nasir, Adam Friedman, "The growing role of nanotechnology in combating infectious disease", Virulence, 2 (5), 395-401, 2011. [23] Dambar B Hamal, Johanna A Haggstrom, George L Marchin, Myles A Ikenberry, Keith Hohn, Kenneth J Klabunde, "A multifunctional biocide/sporocide and photocatalyst based on titanium dioxide (TiO2) codoped with silver, carbon, and sulfur", Langmuir, 26 (4), 2805-2810, 2010. 98

DẠY KÈM QUY NHƠN OFFICIAL [24] Mohammad Azam Ansari, Haris M Khan, Aijaz A Khan, Asfia Sultan, Ameer Azam, "Characterization of clinical strains of MSSA, MRSA and MRSE isolated from skin and soft tissue infections and the antibacterial activity of ZnO nanoparticles", World Journal of Microbiology and Biotechnology, 28 (4), 1605-1613, 2012. [25] LakshmipathiNaik Gomathi Devi,Basavalingaiah Nagaraj, "Disinfection of E scherichia Coli Gram Negative Bacteria Using Surface Modified TiO2: Optimization of Ag Metallization and Depiction of Charge Transfer Mechanism", Photochemistry and photobiology, 90 (5), 1089-1098, 2014. [26] M Pratap Reddy, A Venugopal, M Subrahmanyam, "Hydroxyapatite-supported Ag–TiO2 as Escherichia coli disinfection photocatalyst", Water research, 41 (2), 379-386, 2007. [27] Guogang Ren, Dawei Hu, Eileen WC Cheng, Miguel A Vargas-Reus, Paul Reip, Robert P Allaker, "Characterisation of copper oxide nanoparticles for antimicrobial applications", International journal of antimicrobial agents, 33 (6), 587-590, 2009. [28] Jayesh P Ruparelia, Arup Kumar Chatterjee, Siddhartha P Duttagupta, Suparna Mukherji, "Strain specificity in antimicrobial activity of silver and copper nanoparticles", Acta biomaterialia, 4 (3), 707-716, 2008. [29] Ae Jung Huh,Young Jik Kwon, "“Nanoantibiotics”: a new paradigm for treating infectious diseases using nanomaterials in the antibiotics resistant era", Journal of controlled release, 156 (2), 128-145, 2011. [30] Kezhen Qi, Bei Cheng, Jiaguo Yu, Wingkei Ho, "Review on the improvement of the photocatalytic and antibacterial activities of ZnO", Journal of alloys and compounds, 727 792-820, 2017. 99

DẠY KÈM QUY NHƠN OFFICIAL [31] Ge Ma, Xiaoxi Liang, Liangchao Li, Ru Qiao, Donghua Jiang, Yan Ding, et al., "Cu-doped zinc oxide and its polythiophene composites: Preparation and antibacterial properties", Chemosphere, 100 146-151, 2014. [32] Peter K Stoimenov, Rosalyn L Klinger, George L Marchin, Kenneth J Klabunde, "Metal oxide nanoparticles as bactericidal agents", Langmuir, 18 (17), 6679-6686, 2002. [33] PA Arciniegas-Grijalba, MC Patiño-Portela, LP Mosquera-Sánchez, JA Guerrero-Vargas, JE Rodríguez-Páez, "ZnO nanoparticles (ZnO-NPs) and their antifungal activity against coffee fungus Erythricium salmonicolor", Applied Nanoscience, 7 (5), 225-241, 2017. [34] N Widiarti, JK Sae, S Wahyuni, "Synthesis CuO-ZnO nanocomposite and its application as an antibacterial agent," in IOP Conference Series: Materials Science and Engineering, 2017, p. 012036. [35] D Saravanakkumar, S Sivaranjani, K Kaviyarasu, A Ayeshamariam, B Ravikumar, S Pandiarajan, et al., "Synthesis and characterization of ZnO–CuO nanocomposites powder by modified perfume spray pyrolysis method and its antimicrobial investigation", Journal of Semiconductors, 39 (3), 033001, 2018. [36] Dušan Zvekić, Vladimir V Srdić, Maja A Karaman, Milan N Matavulj, "Antimicrobial properties of ZnO nanoparticles incorporated in polyurethane varnish", Processing and Application of Ceramics, 5 (1), 41-45, 2011. [37] Pham Van Viet, Hai Thi Nguyen, Thi Minh Cao, Le Van Hieu, "Fusarium antifungal activities of copper nanoparticles synthesized by a chemical reduction method", Journal of Nanomaterials, 2016 2016. [38] Lili He, Yang Liu, Azlin Mustapha, Mengshi Lin, "Antifungal activity of zinc oxide nanoparticles against Botrytis cinerea and Penicillium expansum", Microbiological research, 166 (3), 207-215, 2011. 100

DẠY KÈM QUY NHƠN OFFICIAL [39] JE Whitehouse, MJ Chapman, DP Goodall, NC Steele, D Luo, SM Bozic, et al., "Woodhead Publishing Series in Electronic and Optical Materials", Vehicular Communications and Networks: Architectures, Protocols, Operation and Deployment, 2015. [40] O Faix, "Fourier transform infrared spectroscopy," in Methods in lignin chemistry, ed: Springer, 1992, pp. 83-109. [41] P Senthil Kumar, K Grace Pavithra, Mu Naushad, "Characterization techniques for nanomaterials," in Nanomaterials for Solar Cell Applications, ed: Elsevier, 2019, pp. 97-124. [42] Matthias Thommes, Katsumi Kaneko, Alexander V Neimark, James P Olivier, Francisco Rodriguez-Reinoso, Jean Rouquerol, et al., "Physisorption of gases, with special reference to the evaluation of surface area and pore size distribution (IUPAC Technical Report)", Pure and Applied Chemistry, 87 (9-10), 10511069, 2015. [43] Liwei Lin, Yongsheng Han, Masayoshi Fuji, Takeshi Endo, Xiaowei Wang, Minoru Takahashi, "Synthesis of hexagonal ZnO microtubes by a simple soft aqueous solution method", Journal of the Ceramic Society of Japan, 116 (1350), 198-200, 2008. [44] Ismat Zerin Luna, Sarwaruddin Chowdhury, Mohammad Abdul Gafur, Nuruzzaman Khan, Ruhul A Khan, "Preparation and characterization of CuOPVA nanofluids for heat transfer applications", Journal of Chemical Engineering and Chemistry Research, 2 (5), 607-615, 2015. [45] Benjawan Moongraksathum, Jun-Ya Shang, Yu-Wen Chen, "Photocatalytic antibacterial effectiveness of Cu-doped TiO2 thin film prepared via the peroxo sol-gel method", Catalysts, 8 (9), 352, 2018. [46] T Theivasanthi,M Alagar, "X-ray diffraction studies of copper nanopowder", arXiv preprint arXiv:1003.6068, 2010. 101

DẠY KÈM QUY NHƠN OFFICIAL [47] Zi-Ling Liu, Jian-Cheng Deng, Jing-Jing Deng, Fei-Fei Li, "Fabrication and photocatalysis of CuO/ZnO nano-composites via a new method", Materials Science and Engineering: B, 150 (2), 99-104, 2008. [48] K Chitra,G Annadurai, "Antimicrobial activity of wet chemically engineered spherical shaped ZnO nanoparticles on food borne pathogen", International food research journal, 20 (1), 2013. [49] K Karthik, N Victor Jaya, M Kanagaraj, S Arumugam, "Temperature-dependent magnetic anomalies of CuO nanoparticles", Solid state communications, 151 (7), 564-568, 2011. [50] IB Abdul Rahman, MTM Ayob, Faizal Mohamed, Norinsan Kamil Othman, RL Mohd Lawi, Radiman Shahidan, "Synthesis and Characterization of ZnO, CuO and CuO/ZnO Nanostructures by a Novel Sol-Gel Route under Ultrasonic Conditions," in Advanced Materials Research, 2012, pp. 64-70. [51] Yijiao Jiang, Jason Scott, Rose Amal, "Exploring the relationship between surface structure and photocatalytic activity of flame-made TiO2-based catalysts", Applied Catalysis B: Environmental, 126 290-297, 2012. [52] Ruby Chauhan, Ashavani Kumar, Ram Pal Chaudhary, "Structural and optical characterization of Zn doped TiO 2 nanoparticles prepared by sol–gel method", Journal of sol-gel science and technology, 61 (3), 585-591, 2012. [53] CM Janet, S Navaladian, B Viswanathan, TK Varadarajan, RP Viswanath, "Heterogeneous wet chemical synthesis of superlattice-type hierarchical ZnO architectures for concurrent H2 production and N2 reduction", The Journal of Physical Chemistry C, 114 (6), 2622-2632, 2010. [54] Vo NL Uyen, Nguyen P Anh, Nguyen TT Van, Nguyen Tri, Nguyen V Minh, Nguyen N Huy, et al., "Characteristics and antifungal activity of CuO-ZnO nanocomposites synthesised by the sol-gel technique", Vietnam Journal of Science, Technology and Engineering, 62 (1), 17-22, 2020. 102

DẠY KÈM QUY NHƠN OFFICIAL [55] Sabriye Pişkin, P Arzu, SY MÜGE, "Antimicrobial activity of synthesized TiO2 nanoparticles," in International Conference on Emerging Trends in Engineering and Technology, ICETET, Patong Beach, Phuket, Thailand., 2013. [56] Nguyễn Thị Thanh Bình, Vũ Đức Lợi, Bùi Thanh Tùng, Nguyễn Thanh Hải, "Nghiên cứu điều chế tiểu phân nano chứa bạc để ứng dụng trong dược phẩm", VNU Journal of Science: Medical and Pharmaceutical Sciences, 32 (2), 2016. [57] Mahsa Vahdati,Tahereh Tohidi Moghadam, "Synthesis and characterization of Selenium nanoparticles-Lysozyme nanohybrid System with Synergistic Antibacterial properties", Scientific reports, 10 (1), 1-10, 2020. [58] Pratibha Pandey, Merwyn S Packiyaraj, Himangini Nigam, Gauri S Agarwal, Beer Singh, Manoj K Patra, "Antimicrobial properties of CuO nanorods and multi-armed nanoparticles against B. anthracis vegetative cells and endospores", Beilstein journal of nanotechnology, 5 (1), 789-800, 2014. [59] Munin Agarwala, Bula Choudhury, RNS Yadav, "Comparative study of antibiofilm activity of copper oxide and iron oxide nanoparticles against multidrug resistant biofilm forming uropathogens", Indian journal of microbiology, 54 (3), 365-368, 2014. [60] Yong-Wook Baek,Youn-Joo An, "Microbial toxicity of metal oxide nanoparticles (CuO, NiO, ZnO, and Sb2O3) to Escherichia coli, Bacillus subtilis, and Streptococcus aureus", Science of the total environment, 409 (8), 1603-1608, 2011. [61] Linlin Wang, Chen Hu, Longquan Shao, "The antimicrobial activity of nanoparticles: present situation and prospects for the future", International journal of nanomedicine, 12 1227, 2017. [62] Joseph AH Romaniuk,Lynette Cegelski, "Bacterial cell wall composition and the influence of antibiotics by cell-wall and whole-cell NMR", Philosophical 103

DẠY KÈM QUY NHƠN OFFICIAL Transactions of the Royal Society B: Biological Sciences, 370 (1679), 20150024, 2015. [63] Shrouaq Al-Zubaidi, Aisha Al-Ayafi, Hayam Abdelkader, "Biosynthesis, characterization and antifungal activity of silver nanoparticles by Aspergillus niger isolate", J Nanotechnol Res, 1 (1), 023-036, 2019. [64] Priyanka Singh,Arun Nanda, "Antimicrobial and antifungal potential of zinc oxide nanoparticles in comparison to conventional zinc oxide particles", J Chem Pharm Res, 5 (11), 457-463, 2013. [65] Abdolreza Mirmohseni, Maryam Azizi, Mir Saeed Seyed Dorraji, "A promising ternary nanohybrid of Copper@ Zinc oxide intercalated with polyaniline for simultaneous antistatic and antibacterial applications", Journal of Coatings Technology and Research, 16 (5), 1411-1422, 2019. 104

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