Advanced Materials Research Group

Publications

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LEI, L., ZHANG, S. D., YANG, S. W., LI, X. M., YU, Y., WEI, Q. Z., NI, Z. C. and LI, M., 2018. Influence of hole transport material/metal contact interface on perovskite solar cells: Nanotechnology Nanotechnology. 29(25), 13

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LI, L. H., LI, M. and SINCLAIR, D. C., 2018. The influence of excess K2O on the electrical properties of (K,Na)(1/2)Bi1/2TiO3 ceramics: Applied Physics Letters Applied Physics Letters. 112(18), 5

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TANG, N., YOU, H. H., LI, M., CHEN, G. Z. and ZHANG, L., 2018. Cross-linked Ni(OH)(2)/CuCo2S4/Ni networks as binder-free electrodes for high performance supercapatteries: Nanoscale Nanoscale. 10(44), 20526-20532

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PILI, S., ROUGHT, P., KOLOKOLOV, D. I., LIN, L. F., DA SILVA, I., CHEN, Y. Q., MARSH, C., SILVERWOOD, I. P., SAKAI, V. G., LI, M., TITMAN, J. J., KNIGHT, L., DAEMEN, L. L., RAMIREZ-CUESTA, A. J., TANG, C. C., STEPANOV, A. G., YANG, S. H. and SCHRODER, M., 2018. Enhancement of Proton Conductivity in Nonporous Metal-Organic Frameworks: The Role of Framework Proton Density and Humidity: Chemistry of Materials Chemistry of Materials. 30(21), 7593-7602

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MATTHEW WITMAN, SANLIANG LING, PETER BOYD, SENJA BARTHEL, MACIEJ HARANCZYK, BEN SLATER and BEREND SMIT, 2018. Cutting Materials in Half: A Graph Theory Approach for Generating Crystal Surfaces and Its Prediction of 2D Zeolites ACS Central Science. 4(2), 235–245

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HIMANSHU GOEL, SANLIANG LING, BREANNA NICOLE ELLIS, ANNA TACONI, BEN SLATER and NEERAJ RAI, 2018. Predicting vapor liquid equilibria using density functional theory: A case study of argon The Journal of Chemical Physics. 148, 224501

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DANIELS, L. M., LING, S., SAVVIN, S. N., PITCHER, M. J., DYER, M. S., CLARIDGE, J. B., SLATER, B., CORÀ, F., ALARIA, J. and ROSSEINSKY, M. J., 2018. A and B site doping of a phonon-glass perovskite oxide thermoelectric J. Mater. Chem. A. 6, 15640-15652

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GOEL, HIMANSHU, LING, SANLIANG, ELLIS, BREANNA NICOLE, TACONI, ANNA, SLATER, BEN and RAI, NEERAJ, 2018. Predicting vapor liquid equilibria using density functional theory: A case study of argon JOURNAL OF CHEMICAL PHYSICS. 148(22),

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SÓJKA, L., TANG, Z., FURNISS, D., SAKR, H., BEREŚ-PAWLIK, E., SEDDON, A. B., BENSON, T. M. and SUJECKI, S., 2017. Numerical and experimental investigation of mid-infrared laser action in resonantly pumped Pr3+ doped chalcogenide fibre: Optical and Quantum Electronics Optical and Quantum Electronics. 49(1),

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ROMANOVA, E., KUZYUTKINA, Y., SHIRYAEV, V., ABDEL-MONEIM, N., FURNISS, D., BENSON, T., SEDDON, A. and GUIZARD, S., 2017. Measurement of non-linear optical coefficients of chalcogenide glasses near the fundamental absorption band edge: Journal of Non-Crystalline Solids Journal of Non-Crystalline Solids.

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SAKR, H., TANG, Z., FURNISS, D., SOJKA, L., SUJECKI, S., BENSON, T. M. and SEDDON, A. B., 2017. Promising emission behavior in Pr3+/In selenide-chalcogenide-glass small-core step index fiber (SIF): Optical Materials Optical Materials. 67, 98-107

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SOJKA, L., TANG, Z., FURNISS, D., SAKR, H., FANG, Y., BERES-PAWLIK, E., BENSON, T. M., SEDDON, A. B. and SUJECKI, S., 2017. Mid-infrared emission in Tb3+-doped selenide glass fiber: Journal of the Optical Society of America B: Optical Physics Journal of the Optical Society of America B: Optical Physics. 34(3), A70-A79

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FANG, Y., JAYASURIYA, D., FURNISS, D., TANG, Z. Q., SOJKA, Ł, MARKOS, C., SUJECKI, S., SEDDON, A. B. and BENSON, T. M., 2017. Determining the refractive index dispersion and thickness of hot-pressed chalcogenide thin films from an improved Swanepoel method: Optical and Quantum Electronics Optical and Quantum Electronics. 49(7),

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STRUTYNSKI, C., MOUAWAD, O., PICOT-CLÉMENTE, J., FROIDEVAUX, P., DÉSÉVÉDAVY, F., GADRET, G., JULES, J. C., KIBLER, B. and SMEKTALA, F., 2017. Optical aging observation in suspended core tellurite microstructured fibers under atmospheric conditions: Optical Fiber Technology Optical Fiber Technology. 38, 154-159

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DONG, N., CHEN, Y., WEI, N., WANG, G., WANG, R., SHEN, X., DAI, S. and NIE, Q., 2017. Optical and structural properties of Ge-Ga-Te amorphous thin films fabricated by magnetron sputtering: Infrared Physics and Technology Infrared Physics and Technology. 86, 181-186
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Advanced Materials Research Group

Faculty of Engineering
The University of Nottingham
University Park
Nottingham, NG7 2RD



email:AdvMaterials@nottingham.ac.uk