Polymer Blends Based on 1-Hexadecyl-3-methyl Imidazolium 1,3-Dimethyl 5-Sulfoisophthalate Ionic Liquid: Thermo-Mechanical, Surface Morphology and Antibacterial Properties
暂无分享,去创建一个
G. Recca | M. Mancuso | Loredana Ferreri | D. Zampino | C. Puglisi | F. Samperi | E. F. Mirabella | D. Carbone | Sandro Dattilo | A. Scamporrino | Tiziana Ferreri | Elisabetta Novello
[1] G. Granata,et al. A novel material based on an antibacterial choline-calixarene nanoassembly embedded in thin films , 2022, Journal of Materials Science.
[2] T. Richards,et al. Gaseous products from primary reactions of fast plastic pyrolysis , 2021 .
[3] G. Recca,et al. Thermo-mechanical, antimicrobial and biocompatible properties of PVC blends based on imidazolium ionic liquids. , 2021, Materials science & engineering. C, Materials for biological applications.
[4] M. Yan,et al. Hyperbranch-Crosslinked S-SEBS Block Copolymer Membranes for Desalination by Pervaporation , 2020, Membranes.
[5] A. Calarco,et al. Heterogenized Imidazolium-Based Ionic Liquids in Pebax®Rnew. Thermal, Gas Transport and Antimicrobial Properties , 2020, Polymers.
[6] V. Bugatti,et al. Ionic Liquid as Dispersing Agent of LDH-Carbon Nanotubes into a Biodegradable Vinyl Alcohol Polymer , 2020, Polymers.
[7] Kalim Deshmukh,et al. Mechanical analysis of polymers , 2020 .
[8] M. Mancuso,et al. Screening of antimicrobial activity of citrus essential oils against pathogenic bacteria and Candida strains , 2019, Flavour and Fragrance Journal.
[9] V. Ribeiro,et al. Use of Copper Microparticles in SEBS/PP Compounds. Part 1: Effects on Morphology, Thermal, Physical, Mechanical and Antibacterial Properties , 2019, Materials Research.
[10] Simona Manuguerra,et al. The antioxidant power of horseradish, Armoracia rusticana, underlies antimicrobial and antiradical effects, exerted in vitro , 2018, Natural product research.
[11] A. Luch,et al. Thermal Stability of Polymer Additives: Comparison of Decomposition Models Including Oxidative Pyrolysis , 2018, Journal of Vinyl and Additive Technology.
[12] David Ramírez,et al. Novel Alkylimidazolium Ionic Liquids as an Antibacterial Alternative to Pathogens of the Skin and Soft Tissue Infections , 2018, Molecules.
[13] E. Larson,et al. Antibiotic resistance: What is so special about multidrug-resistant Gram-negative bacteria? , 2017, GMS hygiene and infection control.
[14] Robert A. Weinstein,et al. The Epidemiology of Carbapenem-Resistant Enterobacteriaceae: The Impact and Evolution of a Global Menace , 2017, The Journal of infectious diseases.
[15] Bin Wang,et al. Structure-Antibacterial Activity Relationships of Imidazolium-Type Ionic Liquid Monomers, Poly(ionic liquids) and Poly(ionic liquid) Membranes: Effect of Alkyl Chain Length and Cations. , 2016, ACS applied materials & interfaces.
[16] Guyue Cheng,et al. Antimicrobial Drugs in Fighting against Antimicrobial Resistance , 2016, Front. Microbiol..
[17] B. George,et al. Mechanistic outlook on thermal degradation of 1,3-dialkyl imidazolium ionic liquids and organoclays , 2016 .
[18] J. Bardeau,et al. Efficient antimicrobial activity and reduced toxicity of 1-dodecyl-3-methylimidazolium tetrafluoroborate ionic liquid/β-cyclodextrin complex , 2016 .
[19] S. Handy. Ionic Liquids - Current State of the Art , 2015 .
[20] Sébastien Livi,et al. Polymers and Ionic Liquids: A Successful Wedding , 2015 .
[21] K. Fatyeyeva,et al. Antimicrobial Properties and Thermal Stability of Polycarbonate Modified with 1-Alkyl-3-methylimidazolium Tetrafluoroborate Ionic Liquids , 2014 .
[22] Abbul Bashar Khan,et al. Recent Advances in the Applications of Ionic Liquids in Protein Stability and Activity: A Review , 2014, Applied Biochemistry and Biotechnology.
[23] Muhammad Aqeel Ashraf,et al. Green Biocides, A Promising Technology: Current and Future Applications , 2013 .
[24] J. Drobny. Styrenic Block Copolymers , 2014 .
[25] Hong Wang,et al. Functional poly(ethylene terephthalate) materials prepared by condensation copolymerization with ionic liquids , 2013, Polymer Bulletin.
[26] C. Stevens,et al. Ionic liquid thermal stabilities: decomposition mechanisms and analysis tools. , 2013, Chemical Society reviews.
[27] Riwei Xu,et al. Novel hybrid copolymer by incorporating POSS into hard segments of thermoplastic elastomer SEBS via click coupling reaction , 2013 .
[28] N. Gathergood,et al. Antimicrobial toxicity studies of ionic liquids leading to a ‘hit’ MRSA selective antibacterial imidazolium salt , 2012 .
[29] D. Gioia,et al. Imidazolium poly(butylene terephthalate) ionomers with long-term antimicrobial activity , 2012 .
[30] J. Siby,et al. Antibiotic resistance a global threat , 2012 .
[31] M. Tunney,et al. Dual functional ionic liquids as plasticisers and antimicrobial agents for medical polymers , 2011 .
[32] R. Scaffaro,et al. PVC silver zeolite composites with antimicrobial properties , 2011, Journal of Materials Science.
[33] Sui Wang,et al. Study on ionic liquid [bmim]PF6 and [hmim]PF6 as plasticizer for PVC paste resin , 2011 .
[34] B. Allegranzi,et al. Burden of endemic health-care-associated infection in developing countries: systematic review and meta-analysis , 2011, The Lancet.
[35] B. Gilmore. Antimicrobial Ionic Liquids , 2011 .
[36] Jun Hu,et al. Surface modification and characterization of SEBS films obtained by in situ and ex situ oxidization with potassium permanganate , 2010 .
[37] T. Long,et al. Imidazole- and imidazolium-containing polymers for biology and material science applications , 2010 .
[38] W. Bruckard,et al. A review of factors that affect contact angle and implications for flotation practice. , 2009, Advances in colloid and interface science.
[39] S. Gorman,et al. Antibiofilm activities of 1-alkyl-3-methylimidazolium chloride ionic liquids , 2009 .
[40] M. Mulvey,et al. Antimicrobial resistance in hospitals: How concerned should we be? , 2009, Canadian Medical Association Journal.
[41] H. Ohtani,et al. Thermal Decomposition Behaviors of Imidazolium-type Ionic Liquids Studied by Pyrolysis-Gas Chromatography , 2008, Analytical sciences : the international journal of the Japan Society for Analytical Chemistry.
[42] J. S. Bradley,et al. The epidemic of antibiotic-resistant infections: a call to action for the medical community from the Infectious Diseases Society of America. , 2008, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[43] Mustafizur Rahman,et al. Ionic liquids: New generation stable plasticizers for poly(vinyl chloride) , 2006 .
[44] Joan F. Brennecke,et al. Thermophysical Properties of Imidazolium-Based Ionic Liquids , 2004 .
[45] I. Yoo,et al. Synthesis and antimicrobial properties of imidazolium and pyrrolidinonium salts. , 2004, Bioorganic & medicinal chemistry.
[46] Mustafizur Rahman,et al. Application of ionic liquids as low-volatility plasticizers for PMMA , 2003 .
[47] J. Gilman,et al. Thermal degradation studies of alkyl-imidazolium salts and their application in nanocomposites , 2004 .
[48] Linda J. Broadbelt,et al. Tertiary Resource Recovery from Waste Polymers via Pyrolysis: Neat and Binary Mixture Reactions of Polypropylene and Polystyrene , 2001 .
[49] Linda J. Broadbelt,et al. Detailed mechanistic modeling of polymer degradation : application to polystyrene , 2001 .
[50] Robin D. Rogers,et al. Characterization and comparison of hydrophilic and hydrophobic room temperature ionic liquids incorporating the imidazolium cation , 2001 .
[51] H. Ngo,et al. Thermal properties of imidazolium ionic liquids , 2000 .
[52] M. Edge,et al. Degradation and stabilisation of styrene–ethylene–butadiene–styrene (SEBS) block copolymer , 2000 .
[53] A. Bhowmick,et al. Phase modification of SEBS block copolymer by different additives and its effect on morphology, mechanical and dynamic mechanical properties , 1998 .
[54] Linda J. Broadbelt,et al. Recovery of high-valued products from styrene-based polymers through coprocessing: Experiments and mechanistic modeling , 1998 .
[55] C. Galán,et al. Thermal and mechanical properties of poly (styrene-b-ethylene-co-butylene-b-styrene) triblock copolymers , 1997 .
[56] Giorgio Montaudo,et al. Evolution of aromatics in the thermal degradation of poly(vinyl chloride): A mechanistic study , 1991 .
[57] A. Bauer,et al. Antibiotic susceptibility testing by a standardized single disk method. , 1966, American journal of clinical pathology.