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研究领域

Prof. Powell's research interests in solid state materials chemistry focus on functional materials with technologically useful properties. Major themes include materials for energy applications, novel electronic and magnetic materials, low-dimensional solids and porous semiconductors. The work benefits from a wide range of in-house characterization and measurement equipment, whilst many of our investigations are underpinned by neutron scattering at central facilities.

近期论文

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Co3M2S2 (M = Sn, In) Shandites as Tellurium-Free Thermoelectrics, J. Corps, P. Vaqueiro and A.V. Powell, J. Mater. Chem. A, 1, 6553, (2013). Fabrication and Evaluation of a Skutterudite-Based Thermoelectric Module for High Temperature Applications, J. García-Cañadas, A.V. Powell, A. Kaltzoglou, P. Vaqueiro and G. Min, J. Electron. Mater., 42, 1369, (2013). Crystal Design Approaches to the Synthesis of Co-Crystals of Paracetamol, V.K Srirambhatla, A. Kraft, S. Watt and A.V. Powell,Crystal Growth & Design, 12, 4870, (2012). Structural Effects on the Electronic Properties of TlCu7-S4 Investigated by Diffraction-Resistance Measurements, T.E. Engin, S. Hull and A.V. Powell, Z. Anorg. Allg. Chem, 638, 2565, (2012). Solvothermal Synthesis of a Bimetallic Thiometallate Containing Germanium in Two Oxidation States. A.V. Powell and R. Mackay, J. Solid State Chem., 184, 3144, (2011) Recent Developments in Nanostructured Materials for High-Performance Thermoelectrics; P. Vaqueiro and A.V. Powell, J. Mater. Chem., 20, 9577, (2010). Ternary Erbium Chromium Sulfides: Structural Relationships and Magnetic Properties; P. Vaqueiro, I. Szkoda, R. Sanchez and A.V. Powell, Inorg. Chem., 48, 1284, (2009).

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