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Kennedy has been at the forefront of macropolyhedral megaloborane chemistry for many years. His research interests are diverse, involving many different species of heteroboranes, metallaboranes, metallaheteroboranes and carboranes. A major theme is the exploration of the spectrum of intimacy between clusters: from discrete polyhedra connected by rigid organic tethers, to giant megaloboranes, generated through the seamless fusion of multiple clusters. The unusual cluster-geometries and hydride-like properties of the compounds synthesized in the Kennedy group make them ideal candidates for the investigation of unconventional intermolecular interactions, such as the dihydrogen bond. The Kennedy group also focuses on the novel structures obtained through the introduction of metals and heteroatoms into polyhedral boranes: these "disobedient skeletons", some described as "iso-nido" or "iso-closo", do not follow Wade's rules. These boron clusters may act as flexible scaffolds for catalytically active metals. Professor Kennedy is a leading authority on the reaction chemistry of metallaboranes. He has also been involved with the synthesis of relatively inert monocarborane derivatives as non-coordinating counter-anions for many industrial applications.
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Michael A. Beckett, Bernd Brellochs,Igor T. Chizhevsky, Ture Damhus, Karl-Heinz Hellwich,John D. Kennedy,Risto Laitinen, Warren H. Powell,Daniel Rabinovich,Clara Vinas,Andrey Yerin
PURE AND APPLIED CHEMISTRYno. 2 (2020): 355-381
Michael Beckett, Bernd Brellochs,Igor T. Chizhevsky,Ture Damhus,Karl-Heinz Hellwich,John D. Kennedy,Risto Laitinen, Warren H. Powell,Daniel Rabinovich,Clara Vinas,Andrey Yerin
Pure and Applied Chemistry (2018)
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