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S. An, R. Foest, K. Fricke, H. Riemer, M. Fröhlich, A. Quade, et al. Pretreatment of cutting tools by plasma electrolytic polishing (PEP) for enhanced adhesion of hard coatings. Surface and Coatings Technology. 405, 126504 (2021).
S. An, R. Foest, K. Fricke, H. Riemer, M. Fröhlich, A. Quade, et al. Pretreatment of cutting tools by plasma electrolytic polishing (PEP) for enhanced adhesion of hard coatings. Surface and Coatings Technology. 405, 126504 (2021).
S. An, R. Foest, K. Fricke, H. Riemer, M. Fröhlich, A. Quade, et al. Pretreatment of cutting tools by plasma electrolytic polishing (PEP) for enhanced adhesion of hard coatings. Surface and Coatings Technology. 405, 126504 (2021).
K. Ferse, P. Awakowicz, U. Beck, C. Brand, JP. Engelstädter, W. Fiedler, et al. Plasmatechnik 4.0: Stand der Technik, Entwicklungen und Erwartungen. Vakuum in Forschung und Praxis. 30, 34-39 (2018).
K. Ferse, P. Awakowicz, U. Beck, C. Brand, JP. Engelstädter, W. Fiedler, et al. Plasmatechnik 4.0: Stand der Technik, Entwicklungen und Erwartungen. Vakuum in Forschung und Praxis. 30, 34-39 (2018).
K. Ferse, P. Awakowicz, U. Beck, C. Brand, JP. Engelstädter, W. Fiedler, et al. Plasmatechnik 4.0: Stand der Technik, Entwicklungen und Erwartungen. Vakuum in Forschung und Praxis. 30, 34-39 (2018).
G. Schubert, M. Haass, T. Trottenberg, H. Fehske, H. Kersten Plasma Sheath Structures in Complex Electrode Geometries. Contributions to Plasma Physics. 52, 827-835 (2012).
M. Hübner, M. Fröhlich, H. Tawidian, M. Mikikian, J. Röpcke, H. Kersten On the Plasma Chemistry of an RF Discharge Containing Aluminium Tri-Isopropoxide Studied by FTIR Spectroscopy. Contributions to Plasma Physics. 54, 170-186 (2014).
D. Lopatik, S. Niemietz, M. Fröhlich, J. Röpcke, H. Kersten Plasma Chemical Study of a RF Discharge Containing Aluminum Tri-Isopropoxide Using MIR Absorption Spectroscopy Based on External-Cavity Quantum Cascade Lasers. Contributions to Plasma Physics. 52, 864-871 (2012).
O. Polonskyi, AM. Ahadi, T. Peter, K. Fujioka, JW. Abraham, E. Vasiliauskaite, et al. Plasma based formation and deposition of metal and metal oxide nanoparticles using a gas aggregation source. The European Physical Journal D. 72 (2018).
O. Polonskyi, AM. Ahadi, T. Peter, K. Fujioka, JW. Abraham, E. Vasiliauskaite, et al. Plasma based formation and deposition of metal and metal oxide nanoparticles using a gas aggregation source. The European Physical Journal D. 72 (2018).
R. Basner, F. Sigeneger, D. Loffhagen, G. Schubert, H. Fehske, H. Kersten Particles as probes for complex plasmas in front of biased surfaces. New Journal of Physics. 11, 013041 (2009).
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H.. Do, G. Thieme, M. Fröhlich, H. Kersten, R. Hippler Ion Molecule and Dust Particle Formation in Ar/CH4, Ar/C2H2 and Ar/C3H6 Radio-frequency Plasmas. Contributions to Plasma Physics. 45, 378-384 (2005).
T. Kewitz, M. Fröhlich, J. von Frieling, H. Kersten Investigation of a Commercial Atmospheric Pressure Plasma Jet by a Newly Designed Calorimetric Probe. IEEE Transactions on Plasma Science. 43, 1769-1773 (2015).
J. Drewes, S. Rehders, T. Strunskus, H. Kersten, F. Faupel, A. Vahl In-situ laser light scattering for temporally and locally resolved studies on nanoparticle trapping in a gas aggregation source. Particle & Particle Systems Characterization. 2200112 (2022).
T. Kewitz, C. Regula, M. Fröhlich, J. Ihde, H. Kersten Influence of the nozzle head geometry on the energy flux of an atmospheric pressure plasma jet. EPJ Techniques and Instrumentation. 8 (2021).
T. Wegner, A. Hinz, F. Faupel, T. Strunskus, H. Kersten, J. Meichsner Influence of nanoparticle formation on discharge properties in argon-acetylene capacitively coupled radio frequency plasmas. Applied Physics Letters. 108, 063108 (2016).
T. Trottenberg, F. Bansemer, S. Böttcher, D. Feili, H. Henkel, M. Hesse, et al. An in-flight plasma diagnostic package for spacecraft with electric propulsion. EPJ Techniques and Instrumentation. 8 (2021).
V. Postica, O. Lupan, A. Gapeeva, L. Hansen, R. Khaledialidusti, AK. Mishra, et al. Improved long-term stability and reduced humidity effect in gas sensing: SiO2 ultra-thin layered ZnO columnar films. Advanced Materials Technologies. , 2001137 (2021).