Paul C. J. Kamer

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2005-2017 Chemistry University of St Andrews, Saint Andrews, Scotland, United Kingdom 
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"Paul Kamer"
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Jarvis A, Obrecht L, Deuss P, et al. (2017) Enzyme activity by design: an artificial rhodium hydroformylase for linear aldehydes. Angewandte Chemie (International Ed. in English)
Doble MV, Ward AC, Deuss PJ, et al. (2014) Catalyst design in oxidation chemistry; from KMnO4 to artificial metalloenzymes. Bioorganic & Medicinal Chemistry. 22: 5657-77
Ropartz L, Meeuwenoord NJ, van der Marel GA, et al. (2007) Phosphine containing oligonucleotides for the development of metallodeoxyribozymes. Chemical Communications (Cambridge, England). 1556-8
Chen R, Bronger RP, Kamer PC, et al. (2004) Noncovalent anchoring of homogeneous catalysts to silica supports with well-defined binding sites. Journal of the American Chemical Society. 126: 14557-66
Slagt VF, Röder M, Kamer PC, et al. (2004) Supraphos: a supramolecular strategy to prepare bidentate ligands. Journal of the American Chemical Society. 126: 4056-7
Slagt VF, Kamer PC, van Leeuwen PW, et al. (2004) Encapsulation of transition metal catalysts by ligand-template directed assembly. Journal of the American Chemical Society. 126: 1526-36
Walczuk EB, Kamer PC, van Leeuwen PW. (2003) Dormant states of rhodium hydroformylation catalysts: carboalkoxyrhodium complex formed from enones in the alkene feed. Angewandte Chemie (International Ed. in English). 42: 4665-9
van Heerbeek R, Kamer PC, van Leeuwen PW, et al. (2002) Dendrimers as support for recoverable catalysts and reagents. Chemical Reviews. 102: 3717-56
Reek JN, de Groot D, Oosterom GE, et al. (2002) Core and periphery functionalized dendrimers for transition metal catalysis; a covalent and a non-covalent approach. Journal of Biotechnology. 90: 159-81
Oosterom GE, Reek JN, Kamer PC, et al. (2001) Transition Metal Catalysis Using Functionalized Dendrimers. Angewandte Chemie (International Ed. in English). 40: 1828-1849
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