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Chemical Communications (Cambridge, England)|July 18, 2012
Chemical speciation of nanoparticles surrounding metal-on-metal hipsAngela E Goode, James M Perkins, Ann Sandison, et al.Biomaterials|March 18, 2014
Aqueous cationic, anionic and non-ionic multi-walled carbon nanotubes, functionalised with minimal framework damage, for biomedical applicationShu Chen, Sheng Hu, Elizabeth F Smith, et al.Environmental Science & Technology|October 29, 2013
High-resolution analytical electron microscopy reveals cell culture media-induced changes to the chemistry of silver nanowiresShu Chen, Ioannis G Theodorou, Angela E Goode, et al.Journal of Microscopy|January 22, 2015
Avoiding artefacts during electron microscopy of silver nanomaterials exposed to biological environmentsS Chen, A E Goode, J N Skepper, et al.Biomaterials|August 24, 2015
High resolution and dynamic imaging of biopersistence and bioreactivity of extra and intracellular MWNTs exposed to microglial cellsAngela E Goode, Daniel A Gonzalez Carter, Michael Motskin, et al.Analytical Chemistry|July 17, 2019
Label-Free Time-of-Flight Secondary Ion Mass Spectrometry Imaging of Sulfur-Producing Enzymes inside Microglia Cells following Exposure to Silver NanowiresBey Fen Leo, Sarah Fearn, Daniel Gonzalez-Cater, et al.Cell|June 2, 1995
Identification of a nuclear receptor that is activated by farnesol metabolitesB M Forman, E Goode, J Chen, et al.Scientific Reports|March 3, 2017
Silver nanoparticles reduce brain inflammation and related neurotoxicity through induction of H2S-synthesizing enzymesDaniel A Gonzalez-Carter, Bey Fen Leo, Pakatip Ruenraroengsak, et al.Physical Review Letters|May 1, 2012
K→(ππ)(I=2) decay amplitude from lattice QCDT Blum, P A Boyle, N H Christ, et al.Nanoscale|August 24, 2013
Sulfidation of silver nanowires inside human alveolar epithelial cells: a potential detoxification mechanismShu Chen, Angela E Goode, Sinbad Sweeney, et al.Pageof 7