Dual-function antibacterial surfaces for biomedical applications Q Yu, Z Wu, H Chen Acta biomaterialia 16, 1-13, 2015 | 436 | 2015 |
Responsive and synergistic antibacterial coatings: fighting against bacteria in a smart and effective way T Wei, Q Yu, H Chen Advanced healthcare materials 8 (3), 1801381, 2019 | 393 | 2019 |
Anti-fouling bioactive surfaces Q Yu, Y Zhang, H Wang, J Brash, H Chen Acta biomaterialia 7 (4), 1550-1557, 2011 | 366 | 2011 |
Smart antibacterial surfaces with switchable bacteria-killing and bacteria-releasing capabilities T Wei, Z Tang, Q Yu, H Chen ACS applied materials & interfaces 9 (43), 37511-37523, 2017 | 348 | 2017 |
Nanopatterned smart polymer surfaces for controlled attachment, killing, and release of bacteria Q Yu, J Cho, P Shivapooja, LK Ista, GP López ACS applied materials & interfaces 5 (19), 9295-9304, 2013 | 265 | 2013 |
Construction of nanomaterials with targeting phototherapy properties to inhibit resistant bacteria and biofilm infections Y Wang, Y Jin, W Chen, J Wang, H Chen, L Sun, X Li, J Ji, Q Yu, L Shen, ... Chemical Engineering Journal 358, 74-90, 2019 | 191 | 2019 |
Polyimide/cellulose acetate core/shell electrospun fibrous membranes for oil-water separation W Ma, Z Guo, J Zhao, Q Yu, F Wang, J Han, H Pan, J Yao, Q Zhang, ... Separation and Purification Technology 177, 71-85, 2017 | 165 | 2017 |
A smart antibacterial surface for the on‐demand killing and releasing of bacteria T Wei, Q Yu, W Zhan, H Chen Advanced healthcare materials 5 (4), 449-456, 2016 | 145 | 2016 |
Protein Adsorption and Cell Adhesion/Detachment Behavior on Dual-Responsive Silicon Surfaces Modified with Poly(N-isopropylacrylamide)-block-polystyrene … Q Yu, Y Zhang, H Chen, F Zhou, Z Wu, H Huang, JL Brash Langmuir 26 (11), 8582-8588, 2010 | 128 | 2010 |
Smart biointerface with photoswitched functions between bactericidal activity and bacteria-releasing ability T Wei, W Zhan, Q Yu, H Chen ACS Applied Materials & Interfaces 9 (31), 25767-25774, 2017 | 127 | 2017 |
Photothermal bactericidal surfaces: killing bacteria using light instead of biocides Y Zou, Y Zhang, Q Yu, H Chen Biomaterials science 9 (1), 10-22, 2021 | 126 | 2021 |
Smart, photothermally activated, antibacterial surfaces with thermally triggered bacteria-releasing properties Y Wang, T Wei, Y Qu, Y Zhou, Y Zheng, C Huang, Y Zhang, Q Yu, H Chen ACS applied materials & interfaces 12 (19), 21283-21291, 2019 | 126 | 2019 |
Multifunctional and regenerable antibacterial surfaces fabricated by a universal strategy T Wei, W Zhan, L Cao, C Hu, Y Qu, Q Yu, H Chen ACS applied materials & interfaces 8 (44), 30048-30057, 2016 | 122 | 2016 |
Surface modified with a host defense peptide-mimicking β-peptide polymer kills bacteria on contact with high efficacy Y Qian, F Qi, Q Chen, Q Zhang, Z Qiao, S Zhang, T Wei, Q Yu, S Yu, ... ACS applied materials & interfaces 10 (18), 15395-15400, 2018 | 118 | 2018 |
Nanopatterned antimicrobial enzymatic surfaces combining biocidal and fouling release properties Q Yu, LK Ista, GP López Nanoscale 6 (9), 4750-4757, 2014 | 113 | 2014 |
Protein adsorption on poly (N-isopropylacrylamide)-modified silicon surfaces: effects of grafted layer thickness and protein size Q Yu, Y Zhang, H Chen, Z Wu, H Huang, C Cheng Colloids and Surfaces B: Biointerfaces 76 (2), 468-474, 2010 | 110 | 2010 |
Dual-function antibacterial surfaces to resist and kill bacteria: Painting a picture with two brushes simultaneously Y Zou, Y Zhang, Q Yu, H Chen Journal of Materials Science & Technology 70, 24-38, 2021 | 107 | 2021 |
Surface modification to control protein/surface interactions L Yuan, Q Yu, D Li, H Chen Macromolecular bioscience 11 (8), 1031-1040, 2011 | 87 | 2011 |
High antibacterial efficiency of pDMAEMA modified silicon nanowire arrays H Wang, L Wang, P Zhang, L Yuan, Q Yu, H Chen Colloids and Surfaces B: Biointerfaces 83 (2), 355-359, 2011 | 85 | 2011 |
Practical preparation of infection-resistant biomedical surfaces from antimicrobial β-peptide polymers F Qi, Y Qian, N Shao, R Zhou, S Zhang, Z Lu, M Zhou, J Xie, T Wei, Q Yu, ... ACS applied materials & interfaces 11 (21), 18907-18913, 2019 | 83 | 2019 |