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Lead-halide scalar couplings in <sup>207</sup>Pb NMR of APbX<sub>3</sub> perovskites (A = Cs, methylammonium, formamidinium; X = Cl, Br, I)
Aebli, M., Piveteau, L., Nazarenko, O., Benin, B. M., Krieg, F., Verel, R., & Kovalenko, M. V. (2020). Lead-halide scalar couplings in 207Pb NMR of APbX3 perovskites (A = Cs, methylammonium, formamidinium; X = Cl, Br, I). Scientific Reports, 10(1), 8229 (9 pp.). https://doi.org/10.1038/s41598-020-65071-4
Bulk and nanocrystalline cesium lead-halide perovskites as seen by halide magnetic resonance
Piveteau, L., Aebli, M., Yazdani, N., Millen, M., Korosec, L., Krieg, F., … Kovalenko, M. V. (2020). Bulk and nanocrystalline cesium lead-halide perovskites as seen by halide magnetic resonance. ACS Central Science, 6(7), 1138-1149. https://doi.org/10.1021/acscentsci.0c00587
Colloidal-ALD-grown core/shell CdSe/CdS nanoplatelets as seen by DNP enhanced PASS-PIETA NMR spectroscopy
Piveteau, L., Dirin, D. N., Gordon, C. P., Walder, B. J., Ong, T. C., Emsley, L., … Kovalenko, M. V. (2020). Colloidal-ALD-grown core/shell CdSe/CdS nanoplatelets as seen by DNP enhanced PASS-PIETA NMR spectroscopy. Nano Letters, 20(5), 3003-3018. https://doi.org/10.1021/acs.nanolett.9b04870
Solid-state NMR and NQR spectroscopy of lead-halide perovskite materials
Piveteau, L., Morad, V., & Kovalenko, M. V. (2020). Solid-state NMR and NQR spectroscopy of lead-halide perovskite materials. Journal of the American Chemical Society, 142(46), 19413-19437. https://doi.org/10.1021/jacs.0c07338
Zeolite-templated carbon as the cathode for a high energy density dual-ion battery
Dubey, R. J. C., Nüssli, J., Piveteau, L., Kravchyk, K. V., Rossell, M. D., Campanini, M., … Stadie, N. P. (2019). Zeolite-templated carbon as the cathode for a high energy density dual-ion battery. ACS Applied Materials and Interfaces, 11(19), 17686-17696. https://doi.org/10.1021/acsami.9b03886
Colloidal bismuth Nanocrystals as a model anode material for rechargeable Mg-ion batteries: atomistic and mesoscale insights
Kravchyk, K. V., Piveteau, L., Caputo, R., He, M., Stadie, N. P., Bodnarchuk, M. I., … Kovalenko, M. V. (2018). Colloidal bismuth Nanocrystals as a model anode material for rechargeable Mg-ion batteries: atomistic and mesoscale insights. ACS Nano, 12(8), 8297-8307. https://doi.org/10.1021/acsnano.8b03572
High-energy-density dual-ion battery for stationary storage of electricity using concentrated potassium fluorosulfonylimide
Kravchyk, K. V., Bhauriyal, P., Piveteau, L., Guntlin, C. P., Pathak, B., & Kovalenko, M. V. (2018). High-energy-density dual-ion battery for stationary storage of electricity using concentrated potassium fluorosulfonylimide. Nature Communications, 9, 4469 (9 pp.). https://doi.org/10.1038/s41467-018-06923-6
Size-dependent fault-driven relaxation and faceting in zincblende CdSe colloidal quantum dots
Moscheni, D., Bertolotti, F., Piveteau, L., Protesescu, L., Dirin, D. N., Kovalenko, M. V., … Guagliardi, A. (2018). Size-dependent fault-driven relaxation and faceting in zincblende CdSe colloidal quantum dots. ACS Nano, 12(12), 12558-12570. https://doi.org/10.1021/acsnano.8b07092
Resolving the core and the surface of CdSe quantum dots and nanoplatelets using dynamic nuclear polarization enhanced PASS-PIETA NMR spectroscopy
Piveteau, L., Ong, T. C., Walder, B. J., Dirin, D. N., Moscheni, D., Schneider, B., … Kovalenko, M. V. (2018). Resolving the core and the surface of CdSe quantum dots and nanoplatelets using dynamic nuclear polarization enhanced PASS-PIETA NMR spectroscopy. ACS Central Science, 4(9), 1113-1125. https://doi.org/10.1021/acscentsci.8b00196
Efficient aluminum chloride-natural graphite battery
Kravchyk, K. V., Wang, S., Piveteau, L., & Kovalenko, M. V. (2017). Efficient aluminum chloride-natural graphite battery. Chemistry of Materials, 29(10), 4484-4492. https://doi.org/10.1021/acs.chemmater.7b01060
Synthesis and thermoelectric properties of noble metal ternary chalcogenide systems of Ag–Au–Se in the forms of alloyed nanoparticles and colloidal nanoheterostructures
Dalmases, M., Ibáñez, M., Torruella, P., Fernàndez-Altable, V., López-Conesa, L., Cadavid, D., … Figuerola, A. (2016). Synthesis and thermoelectric properties of noble metal ternary chalcogenide systems of Ag–Au–Se in the forms of alloyed nanoparticles and colloidal nanoheterostructures. Chemistry of Materials, 28(19), 7017-7028. https://doi.org/10.1021/acs.chemmater.6b02845
High-performance thermoelectric nanocomposites from nanocrystal building blocks
Ibáñez, M., Luo, Z., Genç, A., Piveteau, L., Ortega, S., Cadavid, D., … Cabot, A. (2016). High-performance thermoelectric nanocomposites from nanocrystal building blocks. Nature Communications, 7, 10766 (7 pp.). https://doi.org/10.1038/ncomms10766
Double gate PbS quantum dot field-effect transistors for tuneable electrical characteristics
Shulga, A. G., Piveteau, L., Bisri, S. Z., Kovalenko, M. V., & Loi, M. A. (2016). Double gate PbS quantum dot field-effect transistors for tuneable electrical characteristics. Advanced Electronic Materials, 2(4), 1500467 (8 pp.). https://doi.org/10.1002/aelm.201500467
Host–guest chemistry for tuning colloidal solubility, self-organization and photoconductivity of inorganic-capped nanocrystals
Bodnarchuk, M. I., Yakunin, S., Piveteau, L., & Kovalenko, M. V. (2015). Host–guest chemistry for tuning colloidal solubility, self-organization and photoconductivity of inorganic-capped nanocrystals. Nature Communications, 6, 10142 (8 pp.). https://doi.org/10.1038/ncomms10142
Increasing photon absorption and stability of PbS quantum dot solar cells using a ZnO interlayer
Lai, L. H., Speirs, M. J., Chang, F. K., Piveteau, L., Kovalenko, M. V., Chen, J. S., … Loi, M. A. (2015). Increasing photon absorption and stability of PbS quantum dot solar cells using a ZnO interlayer. Applied Physics Letters, 107(18), 183901 (4 pp.). https://doi.org/10.1063/1.4934946
Structure of colloidal quantum dots from dynamic nuclear polarization surface enhanced NMR spectroscopy
Piveteau, L., Ong, T. C., Rossini, A. J., Emsley, L., Copéret, C., & Kovalenko, M. V. (2015). Structure of colloidal quantum dots from dynamic nuclear polarization surface enhanced NMR spectroscopy. Journal of the American Chemical Society, 137(43), 13964-13971. https://doi.org/10.1021/jacs.5b09248