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Planare resonante Temperatursensoren für die Hochtemperatur-Dünnschichtkalorimetrie.
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- Technisches Messen, 2018, v. 85, n. 1, p. 1, doi. 10.1515/teme-2017-0084
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- Article
Thin-film chemical expansion of ceria based solid solutions: laser vibrometry study.
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- Zeitschrift für Physikalische Chemie, 2022, v. 236, n. 6-8, p. 1013, doi. 10.1515/zpch-2021-3125
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- Article
Chemical expansion of CeO<sub>2−δ</sub> and Ce<sub>0.8</sub>Zr<sub>0.2</sub>O<sub>2−δ</sub> thin films determined by laser Doppler vibrometry at high temperatures and different oxygen partial pressures.
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- Journal of Materials Science, 2023, v. 58, n. 4, p. 1481, doi. 10.1007/s10853-022-07830-4
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Comparison of the electrical conductivity of bulk and film Ce<sub>1–x</sub>Zr<sub>x</sub>O<sub>2–δ</sub> in oxygen-depleted atmospheres at high temperatures.
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- Journal of Materials Science, 2021, v. 56, n. 30, p. 17191, doi. 10.1007/s10853-021-06348-5
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- Article
Preparation and Characterization of c-LiMn<sub>2</sub>O<sub>4</sub> Thin Films prepared by Pulsed Laser Deposition for Lithium-Ion Batteries.
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- Energy Technology, 2016, v. 4, n. 12, p. 1558, doi. 10.1002/ente.201600117
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- Article
Impact of electrode conductivity on mass sensitivity of piezoelectric resonators at high temperatures.
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- Journal of Sensors & Sensor Systems, 2022, v. 11, n. 2, p. 299, doi. 10.5194/jsss-11-299-2022
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- Article
In situ analysis of hydration and ionic conductivity of sulfonated poly(ether ether ketone) thin films using an interdigitated electrode array and a nanobalance.
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- Journal of Sensors & Sensor Systems, 2022, v. 11, n. 1, p. 51, doi. 10.5194/jsss-11-51-2022
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- Article
High-temperature stable piezoelectric transducers using epitaxially grown electrodes.
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- Journal of Sensors & Sensor Systems, 2020, v. 9, n. 1, p. 15, doi. 10.5194/jsss-9-15-2020
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- Article
Linking the Electrical Conductivity and Non-Stoichiometry of Thin Film Ce 1−x Zr x O 2−δ by a Resonant Nanobalance Approach.
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- Materials (1996-1944), 2021, v. 14, n. 4, p. 748, doi. 10.3390/ma14040748
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- Article
High-temperature thin-film calorimetry: a newly developed method applied to lithium ion battery materials.
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- Journal of Materials Science, 2013, v. 48, n. 19, p. 6585, doi. 10.1007/s10853-013-7455-x
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- Article