Academic literature on the topic 'Antibacterial Polymer'

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Dissertations / Theses on the topic "Antibacterial Polymer"

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Nguyen, Thi Phuong Thu. "Polymer and surface modifications for antibacterial purposes." Thesis, Université Paris-Saclay (ComUE), 2019. http://www.theses.fr/2019SACLS449.

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La contamination microbienne des surfaces est l’une des préoccupations majeures des secteurs d’activités comme l’industrie agro-alimentaire, la santé publique et les milieux hospitaliers. Face aux problèmes de santé publique liés à contamination bactérienne sur les surfaces, la préparation de surfaces aux propriétés antibactériennes est devenue un intérêt de recherche majeur pour de nombreux scientifiques et ce, dans de nombreux domaines de recherches. Du point de vue de la chimie, des matériaux et de la microbiologie, la fonctionnalisation des surfaces de matériaux polymères préexistants sans
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Li, Mingjun [Verfasser]. "Antibacterial Coatings Based on Bioinspired Polymer Systems / Mingjun Li." Berlin : Freie Universität Berlin, 2019. http://d-nb.info/1199583790/34.

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Khanlari, Samaneh. "Poly(Sodium Acrylate)-Based Antibacterial Nanocomposite Materials." Thesis, Université d'Ottawa / University of Ottawa, 2015. http://hdl.handle.net/10393/32556.

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Mobley, Emily B. "Antibacterial Coatings Derived from Novel Chemically Responsive Vesicles." DigitalCommons@CalPoly, 2020. https://digitalcommons.calpoly.edu/theses/2200.

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In order for a drug, or any material used for the purpose of eliciting a change in an organisms’ physical or chemical state, to be effective it must reach the intended target intact and for a sustained rate over time. Drug delivery systems encapsulate a drug to protect it from degradation, prevent side reactions, increase solubility, improve accumulation rates at target sites, and release drugs at a controlled rate. Controlled and sustained release of drugs is achieved by degradation of the carrier triggered by breaking dynamic chemical bonds caused by changes in the chemical environment such
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Kheiri, Sina. "Antibacterial capability characterization of polymer-nanoparticle composites using high-throughput microfluidic platform." Thesis, University of British Columbia, 2017. http://hdl.handle.net/2429/64223.

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Nanoparticles have been significantly employed in the number, variety, and function to create advanced materials with antibacterial capability. Despite considerable recent progress in the development of advanced material technology, the quest to fabricate optimized antibacterial materials remains a high research priority in biomedical and food packaging industries. This thesis presents a study to characterize and optimized antibacterial capability of liquid silicone rubber (LSR) and nanoparticle (NP) composites. Over the past decades, inorganic NPs, particularly metal oxide NPs, have attracted
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Kamisoglu, Kubra. "Synthesis Of Zeolite-polymer Composites For Biological Applications." Master's thesis, METU, 2007. http://etd.lib.metu.edu.tr/upload/2/12608537/index.pdf.

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Zeolites are nanoporous crystalline aluminosilicates that are tasteless, odorless and nontoxic to humans. They can be tailored into antibacterial agents that are more cost effective than other conventional alternatives. Considering the increasing demand for enduring antibacterial agents, the potential uses of antibacterial zeolites are numerous in medical applications and for everyday household products. To produce antibacterial zeolites, the extra framework cations in the zeolite structures can be exchanged with silver ion (Ag+), the most commonly used antibacterial heavy metal ion due to its
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Hamilton, A. R. "The development and evaluation of antibacterial polymer-phyllosilicate composite systems for the treatment of infected wounds." Thesis, Liverpool John Moores University, 2017. http://researchonline.ljmu.ac.uk/7684/.

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Clays and clay minerals (phyllosilicates) have been used for millennia to treat a range of human maladies, such as infected wounds and diseases of the skin. The unique chemistry of phyllosilicates allows them to support the wound environment and encourage healing. Their physicochemical properties can also be utilised to develop modified drug-release formulations and also enables their incorporation into polymer matrices for the development of advanced wound care materials. By developing novel antibacterial phyllosilicate-polymer composite materials it should be possible to support wound healin
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Mahzamani, Faeez. "Studies of Polyacrylate Based Nanoparticle Emulsions." Scholar Commons, 2017. https://scholarcommons.usf.edu/etd/7422.

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Self-stabilizing polyacrylate nanoparticle emulsions were previously investigated in the Turos laboratory, and provided a new model for delivering antibiotics via encapsulation or covalent binding of the desired bioactive compound within the polymer nanoparticles. The method used the in water, free radical emulsion polymerization of butyl acrylate/styrene mixture to form the polymer chain stabilized with a surfactant. Current research in this dissertation further explores the versatility of related nanoparticle emulsion systems. Chapter 2 provides an overview of the loading
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Udumula, Venkata Reddy. "Synthesis, RNA Binding and Antibacterial Studies of 2-DOS Mimetics AND Development of Polymer Supported Nanoparticle Catalysts for Nitroarene and Azide Reduction." BYU ScholarsArchive, 2015. https://scholarsarchive.byu.edu/etd/6031.

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Project I 2-Deoxystreptamine (2-DOS), the most conserved central scaffold of aminoglycosides, is known to specifically recognize the 5'-GU-'3 sequence step through highly conserved hydrogen bonds and electrostatic interactions within and without the context of aminoglycosides (Figure 1a). We proposed that a novel monomeric unnatural amino acid building block using 2-DOS as a template would allow us to develop RNA binding molecules with higher affinity and selectivity than those currently available. Conjugating two or more of the monomeric building blocks by an amide bond would introduce extra
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Taranamai, Phruedsaporn. "Study of Polymer/Silver-Zeolite Composites For Anti-Microbial Applications." Thesis, Le Mans, 2019. http://www.theses.fr/2019LEMA1021.

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L’objectif de ce travail est de préparer des polymères composites antimicrobiens, utilisant de l’acide polylactique (PLA) et/ou du caoutchouc naturel époxydé et incluant des particules d’argent insérées dans des matrices zéolites (AgZ), agissant en tant que composé actif. Un des verrous contrôlant l’activité antibactérienne des matériaux synthétisés est relié à l’étude de l’absorption de l’eau. En effet la mise en œuvre de composites PLA antibactériens rencontre le problème du caractère faiblement hydrophile de PLA, induisant une faible efficacité antimicrobienne. Ainsi afin d’amplifier l’acti
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