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Dive into the research topics where Hendrik Wulfmeier is active.

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Featured researches published by Hendrik Wulfmeier.


International Journal of Materials Research | 2017

Thin-film calorimetry: In-situ characterization of materials for lithium-ion batteries

Alexander Omelcenko; Hendrik Wulfmeier; Daniel Albrecht; Wassima El Mofid; Svetlozar Ivanov; Andreas Bund; Holger Fritze

Abstract Thin-film calorimetry allows for qualitative and quantitative in-situ analysis of thermodynamic properties of thin films and thin-film systems from room temperature up to 1000 °C. It is based on highly sensitive piezoelectric langasite resonators which serve simultaneously as planar temperature sensors and substrates for the films of interest. Generation or consumption of heat during phase transformations of the films cause deviations from the regular course of the resonance frequency. Thermodynamic data such as phase transformation temperatures and enthalpies are extracted from these deviations. Thin-film calorimetry on Sn and Al thin films is performed to prove the concept. The results demonstrate high reproducibility of the measurement approach and are in agreement with literature data obtained by established calorimetric techniques. The calibration of the system is done in different atmospheres by application of defined heat pulses via heating structures. The latter replace the films of interest and simulate phase transformations to provide detailed analysis of the heat transfer mechanisms occurring in the measurement system. Based on this analysis, a data evaluation concept is developed. Application-relevant studies are performed on thin films of the lithium-ion battery materials NMC(A), NCA, LMO, and MoS2. Their phase transformation temperatures and enthalpies are evaluated in oxidizing and reducing atmospheres. Furthermore, their thermodynamic stability ranges are presented. Finally, measurements on all-solid-state thin-film batteries during electrochemical cycling are performed. They demonstrate the suitability of the system for in-situ investigations.


Tm-technisches Messen | 2018

Planare resonante Temperatursensoren für die Hochtemperatur-Dünnschichtkalorimetrie

Alexander Omelcenko; Hendrik Wulfmeier; Holger Fritze

Zusammenfassung In der vorliegenden Arbeit werden Aufbau und Entwicklung eines neuen Messsystems zur Kalorimetrie an dünnen Schichten für den Temperaturbereich bis ca. 1000 ℃ vorgestellt. Im Folgenden werden das Messverfahren, die Hochtemperatur-Dünnschichtkalorimetrie (Thin-Film Calorimetry, TFC), sowie ein Modell zur Datenauswertung beschrieben. Die zentrale Komponente des Messsystems bilden hochtemperaturstabile piezoelektrische Resonatoren aus Langasit-Einkristallen (LGS, La3Ga5SiO14), die als planare Temperatursensoren betrieben werden. Auf diese werden die zu untersuchenden Aktivschichten abgeschieden. Zur Bestimmung der auf den Temperatursensoren aufgetragenen Schichtmasse wird der piezoelektrische Sensor aus Langasit selbst als Mikrowaage betrieben. Temperaturänderungen durch Wärmeabgabe oder -aufnahme, wie sie durch Phasenumwandlungen in den zu untersuchenden Schichten verursacht werden, beeinflussen die Resonanzfrequenz des Resonators. Gegenwärtig können auf diese Weise kleine Wärmemengen ab 1,2 mJ detektiert werden. Die detektierten Temperaturänderungen werden in Enthalpien umgerechnet.


Electrochimica Acta | 2013

Electrochemical behavior of anodically obtained titania nanotubes in organic carbonate and ionic liquid based Li ion containing electrolytes

Svetlozar Ivanov; Lin Cheng; Hendrik Wulfmeier; Daniel Albrecht; Holger Fritze; Andreas Bund


Journal of Materials Science | 2013

High-temperature thin-film calorimetry: a newly developed method applied to lithium ion battery materials

Hendrik Wulfmeier; Daniel Albrecht; Svetlozar Ivanov; Julian Fischer; S. Ulrich; Andreas Bund; Holger Fritze


MRS Proceedings | 2013

Synthesis of Different Molybdenum Disulfide Nanostructures and their Applicability in Lithium Ion Batteries with Ionic Liquid Electrolytes

Daniel Albrecht; Hendrik Wulfmeier; Svetlozar Ivanov; Andreas Bund; Holger Fritze


Journal of The Electrochemical Society | 2015

Thin-Film Calorimetry: Analytical Tool for In-Situ Characterization of Lithium Ion Batteries

Hendrik Wulfmeier; Daniel Albrecht; Julian Fischer; Svetlozar Ivanov; Andreas Bund; Sven Ulrich; Holger Fritze


MRS Proceedings | 2013

Thin Film Calorimetry - Device Development and Application to Lithium Ion Battery Materials

Hendrik Wulfmeier; Daniel Albrecht; Svetlozar Ivanov; Julian Fischer; Rolf Grieseler; Peter Schaaf; S. Ulrich; Andreas Bund; Holger Fritze


Journal of Applied Electrochemistry | 2013

Electrochemical performance of ionic liquid-molybdenum disulfide Li-ion batteries

Daniel Albrecht; Hendrik Wulfmeier; Svetlozar Ivanov; Andreas Bund; Holger Fritze


MRS Advances | 2016

Langasite-Type Resonant Sensors for Harsh Environments

Yuriy Suhak; Michal Schulz; Hendrik Wulfmeier; Ward L. Johnson; Andrei Sotnikov; Hagen Schmidt; Steffen Ganschow; Detlef Klimm; Holger Fritze


Energy technology | 2016

Preparation and Characterization of c-LiMn2O4Thin Films prepared by Pulsed Laser Deposition for Lithium-Ion Batteries

Daniel Albrecht; Hendrik Wulfmeier; Holger Fritze

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Holger Fritze

Clausthal University of Technology

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Daniel Albrecht

Clausthal University of Technology

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Andreas Bund

Technische Universität Ilmenau

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Svetlozar Ivanov

Technische Universität Ilmenau

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Julian Fischer

Karlsruhe Institute of Technology

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S. Ulrich

Karlsruhe Institute of Technology

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Lin Cheng

Technische Universität Ilmenau

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Wassima El Mofid

Technische Universität Ilmenau

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