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All Outputs (98)

Dipyrido[1,2-a;3’,4;-d]imidazole systems (2010)
Journal Article
Cartwright, M., Convery, L., Kraynck, T., Sandford, G., Yufit, D., Howard, J., …Miller, D. (2010). Dipyrido[1,2-a;3’,4;-d]imidazole systems. Tetrahedron, 66(2), 519-529. https://doi.org/10.1016/j.tet.2009.11.036

A Continuous Flow Process Using a Sequence of Microreactors with In-line IR Analysis for the Preparation of N,N-Diethyl-4-(3-fluorophenylpiperidin-4-ylidenemethyl)benzamide as a Potent and Highly Selective delta-Opioid Receptor Agonist (2010)
Journal Article
Qian, Z., Baxendale, I. R., & Ley, S. V. (2010). A Continuous Flow Process Using a Sequence of Microreactors with In-line IR Analysis for the Preparation of N,N-Diethyl-4-(3-fluorophenylpiperidin-4-ylidenemethyl)benzamide as a Potent and Highly Selective delta-Opioid Receptor Agonist. Chemistry - A European Journal, 16(41), 12342-12348. https://doi.org/10.1002/chem.201002147

Role of Clay Minerals in Oil-Forming Reactions (2010)
Journal Article
Geatches, D. L., Clark, S. J., & Greenwell, H. C. (2010). Role of Clay Minerals in Oil-Forming Reactions. The Journal of Physical Chemistry A, 114(10), 3569-3575. https://doi.org/10.1021/jp9096869

Mineral-catalyzed decarboxylation reactions are important in both crude oil formation and, increasingly, biofuel production. In this study we examined decarboxylation reactions of a model fatty acid, propionic acid, C2H5COOH, to an alkane, C2H6, in a... Read More about Role of Clay Minerals in Oil-Forming Reactions.