Advances in enzyme immobilisation D Brady, J Jordaan Biotechnology letters 31, 1639-1650, 2009 | 1058 | 2009 |
Bioaccumulation of metal cations by Saccharomyces cerevisiae D Brady, JR Duncan Applied Microbiology and Biotechnology 41, 149-154, 1994 | 453 | 1994 |
Broadening the scope of biocatalysis in sustainable organic synthesis RA Sheldon, D Brady ChemSusChem 12 (13), 2859-2881, 2019 | 276 | 2019 |
Biosorptton of heavy metal cations by non‐viable yeast biomass D Brady, A Stoll, JR Duncan Environmental Technology 15 (5), 429-438, 1994 | 254 | 1994 |
The limits to biocatalysis: pushing the envelope RA Sheldon, D Brady Chemical communications 54 (48), 6088-6104, 2018 | 252 | 2018 |
The Hitchhiker's guide to biocatalysis: recent advances in the use of enzymes in organic synthesis RA Sheldon, D Brady, ML Bode Chemical science 11 (10), 2587-2605, 2020 | 249 | 2020 |
New frontiers in enzyme immobilisation: robust biocatalysts for a circular bio-based economy RA Sheldon, A Basso, D Brady Chemical Society Reviews 50 (10), 5850-5862, 2021 | 226 | 2021 |
Chemical and enzymatic extraction of heavy metal binding polymers from isolated cell walls of Saccharomyces cerevisiae D Brady, AD Stoll, L Starke, JR Duncan Biotechnology and bioengineering 44 (3), 297-302, 1994 | 208 | 1994 |
Microbial nitrilases: versatile, spiral forming, industrial enzymes RN Thuku, D Brady, MJ Benedik, BT Sewell Journal of applied microbiology 106 (3), 703-727, 2009 | 187 | 2009 |
Characterisation of nitrilase and nitrile hydratase biocatalytic systems D Brady, A Beeton, J Zeevaart, C Kgaje, F Van Rantwijk, RA Sheldon Applied microbiology and biotechnology 64, 76-85, 2004 | 168 | 2004 |
Binding of heavy metals by the cell walls of Saccharomyces cerevisiae D Brady, JR Duncan Enzyme and Microbial Technology 16 (7), 633-638, 1994 | 126 | 1994 |
Practical methods for biocatalysis and biotransformations J Whittall, P Sutton J. Wiley 2, 235-240, 2012 | 117* | 2012 |
A novel family VIII carboxylesterase derived from a leachate metagenome library exhibits promiscuous β-lactamase activity on nitrocefin K Rashamuse, V Magomani, T Ronneburg, D Brady Applied microbiology and biotechnology 83, 491-500, 2009 | 96 | 2009 |
Green chemistry, biocatalysis, and the chemical industry of the future RA Sheldon, D Brady ChemSusChem 15 (9), e202102628, 2022 | 94 | 2022 |
Bioaccumulation of metals by Scenedesmus, Selenastrum and Chlorella algae PD Rose, D Brady, B Letebele, JR Duncan Water Sa 20 (3), 213-218, 1994 | 93 | 1994 |
Streamlining design, engineering, and applications of enzymes for sustainable biocatalysis RA Sheldon, D Brady ACS Sustainable Chemistry & Engineering 9 (24), 8032-8052, 2021 | 76 | 2021 |
Cation loss during accumulation of heavy metal cations by Saccharomyces cerevisiae D Brady, JR Duncan Biotechnology letters 16, 543-548, 1994 | 62 | 1994 |
Spherezymes: A novel structured self-immobilisation enzyme technology D Brady, J Jordaan, C Simpson, A Chetty, C Arumugam, FS Moolman Bmc Biotechnology 8, 1-11, 2008 | 61 | 2008 |
Characterisation of two bifunctional cellulase-xylanase enzymes isolated from a bovine rumen metagenome library KJ Rashamuse, DF Visser, F Hennessy, J Kemp, ... Curr. Microbiol 66, 145-51, 2013 | 56 | 2013 |
The use of hollow fiber cross‐flow microfiltration in bioaccumulation and continuous removal of heavy metals from solution by Saccharomyces cerevisiae D Brady, PD Rose, JR Duncan Biotechnology and bioengineering 44 (11), 1362-1366, 1994 | 56 | 1994 |