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Interaction of the NO 3 p π (C2Π) Rydberg state with RG (RG = Ne, Kr, and Xe): Potential energy surfaces and spectroscopy (2015)
Journal Article
Ershova, O. V., Klos, J., Besley, N. A., & Wright, T. G. (2015). Interaction of the NO 3 p π (C2Π) Rydberg state with RG (RG = Ne, Kr, and Xe): Potential energy surfaces and spectroscopy. Journal of Chemical Physics, 142(3), 034311. https://doi.org/10.1063/1.4905563

© 2015 AIP Publishing LLC. We present new potential energy surfaces for the interaction of NO(C2Π) with each of Ne, Kr, and Xe. The potential energy surfaces have been calculated using second order Møller-Plesset perturbation theory, exploiting a pro... Read More about Interaction of the NO 3 p π (C2Π) Rydberg state with RG (RG = Ne, Kr, and Xe): Potential energy surfaces and spectroscopy.

Seven-membered ring scaffolds for drug discovery: Access to functionalised azepanes and oxepanes through diazocarbonyl chemistry (2015)
Journal Article
Nortcliffe, A., & Moody, C. J. (2015). Seven-membered ring scaffolds for drug discovery: Access to functionalised azepanes and oxepanes through diazocarbonyl chemistry. Bioorganic and Medicinal Chemistry, 23(11), 2730-2735. https://doi.org/10.1016/j.bmc.2015.01.010

© 2015 Elsevier Ltd. All rights reserved. Functionalised azepane and oxepane scaffolds were prepared using diazocarbonyl chemistry and elaborated to show their potential use in library synthesis. Key dicarbonyl containing seven-membered rings were fu... Read More about Seven-membered ring scaffolds for drug discovery: Access to functionalised azepanes and oxepanes through diazocarbonyl chemistry.

Synthesis of spiroindanes by palladium-catalyzed oxidative annulations of non- or weakly activated 1,3-dienes involving C–H functionalization (2015)
Journal Article
Khan, I., Chidipudi, S. R., & Lam, H. W. (2015). Synthesis of spiroindanes by palladium-catalyzed oxidative annulations of non- or weakly activated 1,3-dienes involving C–H functionalization. Chemical Communications, 51, https://doi.org/10.1039/C4CC09496D

The synthesis of spiroindanes by the palladium-catalyzed oxidative annulation of non- or weakly activated 1,3-dienes with 2-aryl cyclic 1,3-dicarbonyl compounds is described. Examples of the dearomatizing oxidative annulation of 1,3-dienes with 1-ary... Read More about Synthesis of spiroindanes by palladium-catalyzed oxidative annulations of non- or weakly activated 1,3-dienes involving C–H functionalization.

Palladium nanoparticles in catalytic carbon nanoreactors: the effect of confinement on Suzuki-Miyaura reactions (2015)
Journal Article
Cornelio, B., Saunders, A., Solomonsz, W., Laronze-Cochard, M., Fontana, A., Sapi, J., …Rance, G. A. (in press). Palladium nanoparticles in catalytic carbon nanoreactors: the effect of confinement on Suzuki-Miyaura reactions. Journal of Materials Chemistry, 3, https://doi.org/10.1039/C4TA06953F

We explore the construction and performance of a range of catalytic nanoreactors based on palladium nanoparticles encapsulated in hollow graphitised nanofibres. The optimum catalytic material, with small palladium nanoparticles located almost exclusi... Read More about Palladium nanoparticles in catalytic carbon nanoreactors: the effect of confinement on Suzuki-Miyaura reactions.

Supramolecular binding and separation of hydrocarbons within a functionalised porous metal-organic framework (2015)
Journal Article
Yang, S., Ramirez-Cuesta, A. J., Newby, R., Garcia-Sakai, V., Manual, P., Callear, S. K., …Schröder, M. (2015). Supramolecular binding and separation of hydrocarbons within a functionalised porous metal-organic framework. Nature Chemistry, 7, https://doi.org/10.1038/nchem.2114

Supramolecular interactions are fundamental to host-guest binding in chemical and biological processes. Direct visualisation of such supramolecular interactions within host-guest systems is extremely challenging but crucial for the understanding of t... Read More about Supramolecular binding and separation of hydrocarbons within a functionalised porous metal-organic framework.

Ligand-Induced Control of Photoconductive Gain and Doping in a Hybrid Graphene–Quantum Dot Transistor (2015)
Journal Article
Turyanska, L., Makarovsky, O., Svatek, S. A., Beton, P. H., Mellor, C. J., Patanè, A., …Wilson, N. R. (2015). Ligand-Induced Control of Photoconductive Gain and Doping in a Hybrid Graphene–Quantum Dot Transistor. Advanced Electronic Materials, 1(7), 1500062. https://doi.org/10.1002/aelm.201500062

In graphene devices decorated with a layer of near-infrared colloidal PbS quantum dots (QDs), the choice of the QD capping ligands and the integrity of the QD layer have a strong influence on the doping, carrier mobility, and photoresponse. By using... Read More about Ligand-Induced Control of Photoconductive Gain and Doping in a Hybrid Graphene–Quantum Dot Transistor.