Antibacterial surface design–Contact kill R Kaur, S Liu Progress in Surface Science 91 (3), 136-153, 2016 | 295 | 2016 |
Durable and regenerable biocidal polymers: acyclic N-halamine cotton cellulose S Liu, G Sun Industrial & engineering chemistry research 45 (19), 6477-6482, 2006 | 164 | 2006 |
Radical graft functional modification of cellulose with allyl monomers: Chemistry and structure characterization S Liu, G Sun Carbohydrate polymers 71 (4), 614-625, 2008 | 114 | 2008 |
A new tool to attack biofilms: driving magnetic iron-oxide nanoparticles to disrupt the matrix J Li, R Nickel, J Wu, F Lin, J van Lierop, S Liu Nanoscale 11 (14), 6905-6915, 2019 | 88 | 2019 |
New Biocide with Both N‐Chloramine and Quaternary Ammonium Moieties Exerts Enhanced Bactericidal Activity L Li, T Pu, G Zhanel, N Zhao, W Ens, S Liu Advanced healthcare materials 1 (5), 609-620, 2012 | 80 | 2012 |
New Refreshable N-Halamine Polymeric Biocides: N-Chlorination of Acyclic Amide Grafted Cellulose S Liu, G Sun Industrial & Engineering Chemistry Research 48 (2), 613-618, 2009 | 79 | 2009 |
Thermoplastic semi-IPN of polypropylene (PP) and polymeric N-halamine for efficient and durable antibacterial activity N Zhao, S Liu European Polymer Journal 47 (8), 1654-1663, 2011 | 56 | 2011 |
Functional modification of poly (ethylene terephthalate) with an allyl monomer: Chemistry and structure characterization S Liu, G Sun Polymer 49 (24), 5225-5232, 2008 | 56 | 2008 |
Controlled in situ formation of polyacrylamide hydrogel on PET surface via SI-ARGET-ATRP for wound dressings SN Pour, SV Ghugare, R Wiens, K Gough, S Liu Applied Surface Science 349, 695-704, 2015 | 53 | 2015 |
Surface interpenetrating networks of poly (ethylene terephthalate) and polyamides for effective biocidal properties S Liu, N Zhao, S Rudenja Macromolecular Chemistry and Physics 211 (3), 286-296, 2010 | 53 | 2010 |
Smart and biostable polyurethanes for long-term implants S Kim, S Liu ACS Biomaterials Science & Engineering 4 (5), 1479-1490, 2018 | 51 | 2018 |
Salinomycin-loaded Nanofibers for Glioblastoma Therapy M Norouzi, Z Abdali, S Liu, DW Miller Scientific reports 8 (1), 9377, 2018 | 46 | 2018 |
Reversibly pH-responsive polyurethane membranes for on-demand intravaginal drug delivery S Kim, Y Chen, EA Ho, S Liu Acta Biomaterialia 47, 100-112, 2017 | 45 | 2017 |
Versatile surface biofunctionalization of poly (ethylene terephthalate) by interpenetrating polymerization of a butynyl monomer followed by “Click Chemistry” L Li, N Zhao, S Liu Polymer 53 (1), 67-78, 2012 | 44 | 2012 |
Effects of a microencapsulated formula of organic acids and essential oils on nutrient absorption, immunity, gut barrier function, and abundance of enterotoxigenic Escherichia … J Choi, L Wang, S Liu, P Lu, X Zhao, H Liu, L Lahaye, E Santin, S Liu, ... Journal of Animal Science 98 (9), skaa259, 2020 | 43 | 2020 |
Highly sensitive bacteria-responsive membranes consisting of core–shell polyurethane polyvinylpyrrolidone electrospun nanofibers for in situ detection of bacterial infections S Currie, FJ Shariatzadeh, H Singh, S Logsetty, S Liu ACS Applied Materials & Interfaces 12 (41), 45859-45872, 2020 | 41 | 2020 |
Design and development of pH-responsive polyurethane membranes for intravaginal release of nanomedicines S Kim, YL Traore, EA Ho, M Shafiq, SH Kim, S Liu Acta biomaterialia 82, 12-23, 2018 | 41 | 2018 |
Rate of contamination of hospital privacy curtains in a burns/plastic ward: A longitudinal study K Shek, R Patidar, Z Kohja, S Liu, JP Gawaziuk, M Gawthrop, A Kumar, ... American journal of infection control 46 (9), 1019-1021, 2018 | 41 | 2018 |
Bacteria-Responsive Single and Core–Shell Nanofibrous Membranes Based on Polycaprolactone/Poly (ethylene succinate) for On-Demand Release of Biocides Z Abdali, S Logsetty, S Liu ACS Omega 4 (2), 4063-4070, 2019 | 40 | 2019 |
Regenerability of antibacterial activity of interpenetrating polymeric N‐halamine and poly (ethylene terephthalate) N Zhao, GG Zhanel, S Liu Journal of Applied Polymer Science 120 (1), 611-622, 2011 | 40 | 2011 |