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Colloidal Cu<sub>2</sub>ZnSn(SSe)<sub>4</sub> (CZTSSe) nanocrystals: shape and crystal phase control to form dots, arrows, ellipsoids, and rods
Singh, S., Liu, P., Singh, A., Coughlan, C., Wang, J., Lusi, M., & Ryan, K. M. (2015). Colloidal Cu2ZnSn(SSe)4 (CZTSSe) nanocrystals: shape and crystal phase control to form dots, arrows, ellipsoids, and rods. Chemistry of Materials, 27(13), 4742-4748. https://doi.org/10.1021/acs.chemmater.5b01399
High strain in (K,Na)NbO<SUB>3</SUB>-based lead-free piezoelectric fibers
Bortolani, F., del Campo, A., Fernandez, J. F., Clemens, F., & Rubio-Marcos, F. (2014). High strain in (K,Na)NbO3-based lead-free piezoelectric fibers. Chemistry of Materials, 26(12), 3838-3848. https://doi.org/10.1021/cm501538x
Observation of oxygen vacancy filling under water vapor in ceramic proton conductors in situ with ambient pressure XPS
Chen, Q., El Gabaly, F., Aksoy Akgul, F., Liu, Z., Mun, B. S., Yamaguchi, S., & Braun, A. (2013). Observation of oxygen vacancy filling under water vapor in ceramic proton conductors in situ with ambient pressure XPS. Chemistry of Materials, 25(23), 4690-4696. https://doi.org/10.1021/cm401977p
Electronic origin of conductivity changes and isothermal expansion of Ta- and Ti-substituted La<SUB>1/2</SUB>Sr<SUB>1/2</SUB>Fe-oxide in oxidative and reducing atmosphere
Braun, A., Erat, S., Bayraktar, D., Harvey, A., & Graule, T. (2012). Electronic origin of conductivity changes and isothermal expansion of Ta- and Ti-substituted La1/2Sr1/2Fe-oxide in oxidative and reducing atmosphere. Chemistry of Materials, 24(8), 1529-1535. https://doi.org/10.1021/cm300423m
Observation of substrate orientation-dependent oxygen defect filling in thin WO<SUB>3−<I>δ</I></SUB>/TiO<SUB>2</SUB> pulsed laser-deposited films with in situ XPS at high oxygen pressure and temperature
Braun, A., Akgul, F. A., Chen, Q., Erat, S., Huang, T. W., Jabeen, N., … Zhang, X. (2012). Observation of substrate orientation-dependent oxygen defect filling in thin WO3−δ/TiO2 pulsed laser-deposited films with in situ XPS at high oxygen pressure and temperature. Chemistry of Materials, 24(17), 3473-3480. https://doi.org/10.1021/cm301829y
Hydrothermal treatment of a hematite film leads to highly oriented faceted nanostructures with enhanced photocurrents
Bora, D. K., Braun, A., Erni, R., Fortunato, G., Graule, T., & Constable, E. C. (2011). Hydrothermal treatment of a hematite film leads to highly oriented faceted nanostructures with enhanced photocurrents. Chemistry of Materials, 23(8), 2051-2061. https://doi.org/10.1021/cm102826n