A phenomenological model for the degradation of biodegradable polymers Y Wang, J Pan, X Han, C Sinka, L Ding Biomaterials 29 (23), 3393-3401, 2008 | 219 | 2008 |
A model for simultaneous crystallisation and biodegradation of biodegradable polymers X Han, J Pan Biomaterials 30 (3), 423-430, 2009 | 165 | 2009 |
A model for the sintering of spherical particles of different sizes by solid state diffusion J Pan, H Le, S Kucherenko, JA Yeomans Acta materialia 46 (13), 4671-4690, 1998 | 156 | 1998 |
Degradation mechanisms of bioresorbable polyesters. Part 1. Effects of random scission, end scission and autocatalysis A Gleadall, J Pan, MA Kruft, M Kellomäki Acta biomaterialia 10 (5), 2223-2232, 2014 | 154 | 2014 |
A molecular dynamics study of sintering between nanoparticles L Ding, RL Davidchack, J Pan Computational Materials Science 45 (2), 247-256, 2009 | 152 | 2009 |
A numerical technique for the analysis of coupled surface and grain-boundary diffusion J Pan, ACF Cocks Acta metallurgica et materialia 43 (4), 1395-1406, 1995 | 133 | 1995 |
Exhaled Mycobacterium tuberculosis output and detection of subclinical disease by face-mask sampling: prospective observational studies CM Williams, M Abdulwhhab, SS Birring, E De Kock, NJ Garton, ... The Lancet Infectious Diseases 20 (5), 607-617, 2020 | 125 | 2020 |
A model for hydrolytic degradation and erosion of biodegradable polymers K Sevim, J Pan Acta biomaterialia 66, 192-199, 2018 | 110 | 2018 |
Modeling microstructure evolution in engineering materials ACF Cocks, SPA Gill, J Pan Advances in applied mechanics 36, 81-162, 1998 | 108 | 1998 |
Modelling sintering at different length scales J Pan International Materials Reviews 48 (2), 69-85, 2003 | 105 | 2003 |
Finite element formulation of coupled grain-boundary and surface diffusion with grain-boundary migration J Pan, ACF Cocks, S Kucherenko Proceedings of the Royal Society of London. Series A: Mathematical, Physical …, 1997 | 88 | 1997 |
A simplified theory of crystallisation induced by polymer chain scissions for biodegradable polyesters A Gleadall, J Pan, H Atkinson Polymer Degradation and Stability 97 (9), 1616-1620, 2012 | 84 | 2012 |
Sintering of particles of different sizes HN Ch’ng, J Pan Acta Materialia 55 (3), 813-824, 2007 | 84 | 2007 |
Sintering kinetics of large pores J Pan, HN Ch’Ng, ACF Cocks Mechanics of materials 37 (6), 705-721, 2005 | 79 | 2005 |
Degradation mechanisms of bioresorbable polyesters. Part 2. Effects of initial molecular weight and residual monomer A Gleadall, J Pan, MA Kruft, M Kellomäki Acta biomaterialia 10 (5), 2233-2240, 2014 | 71 | 2014 |
Analysis of degradation data of poly (l-lactide–co-l, d-lactide) and poly (l-lactide) obtained at elevated and physiological temperatures using mathematical models X Han, J Pan, F Buchanan, N Weir, D Farrar Acta Biomaterialia 6 (10), 3882-3889, 2010 | 67 | 2010 |
Computer simulation of superplastic deformation J Pan, ACF Cocks Computational materials science 1 (2), 95-109, 1993 | 64 | 1993 |
Modelling degradation of bioresorbable polymeric medical devices J Pan Elsevier, 2014 | 60 | 2014 |
An entropy spring model for the Young’s modulus change of biodegradable polymers during biodegradation Y Wang, X Han, J Pan, C Sinka Journal of the mechanical behavior of biomedical materials 3 (1), 14-21, 2010 | 60 | 2010 |
Polymer chain scission, oligomer production and diffusion: A two-scale model for degradation of bioresorbable polyesters X Han, J Pan Acta Biomaterialia 7 (2), 538-547, 2011 | 59 | 2011 |