@misc{OPUS4-10959, title = {2. {\"A}nderung der Richtlinie des Rektorats der FH Aachen f{\"u}r die Vergabe von Lehrveranstaltungspr{\"a}mien : vom 13. Dezember 2019}, organization = {FH Aachen}, pages = {2 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10960, title = {Richtlinie des Rektorats der FH Aachen f{\"u}r die Vergabe von Lehrveranstaltungspr{\"a}mien : vom 16. Juli 2012 - FH-Mitteilung Nr. 68/2012 in der Fassung der Bekanntmachung der {\"A}nderung vom 13. Dezember 2019 - FH-Mitteilung Nr. 130/2019 (Nichtamtliche lesbare Fassung)}, organization = {FH Aachen}, pages = {3 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10961, title = {Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang Nuclear Applications im Fachbereich Chemie und Biotechnologie an der Fachhochschule Aachen : vom 17. Dezember 2019}, organization = {FH Aachen}, pages = {7 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10962, title = {Ordnung zur Aufhebung der Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang „Information Systems Engineering" vom 22. Januar 2010 (FH-Mitteilung Nr. 5/2010), zuletzt ge{\"a}ndert durch {\"A}nderungsordnung vom 4. Februar 2013 (FH-Mitteilung Nr. 6/2013) : vom 20. Dezember 2019}, organization = {FH Aachen}, pages = {3 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10963, title = {Ordnung zur Aufhebung der Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang „Elektrotechnik" (zuvor „Nachrichtentechnik" und „Elektrotechnik und Informationstechnik") vom 22. Januar 2010 (FH-Mitteilung Nr. 7/2010), zuletzt ge{\"a}ndert durch {\"A}nderungsordnung vom 25. April 2016 (FH-Mitteilung Nr. 31/2016) : vom 20. Dezember 2019}, organization = {FH Aachen}, pages = {3 Seiten}, year = {2019}, language = {de} } @article{WingensMayPfaff2019, author = {Wingens, Niklas and May, J{\"o}rg and Pfaff, Raphael}, title = {Betrieblich-technische Innovationsans{\"a}tze zur Bremsprobe nach einer Prozess{\"a}nderung}, series = {Eisenbahntechnische Rundschau : ETR ; Zeitschrift f{\"u}r die gesamte Eisenbahntechnik}, journal = {Eisenbahntechnische Rundschau : ETR ; Zeitschrift f{\"u}r die gesamte Eisenbahntechnik}, number = {5}, publisher = {DVV Media Group}, address = {Hamburg}, issn = {0013-2845}, pages = {5}, year = {2019}, language = {de} } @article{OezsoyluKizildagSchoeningetal.2019, author = {{\"O}zsoylu, Dua and Kizildag, Sefa and Sch{\"o}ning, Michael Josef and Wagner, Torsten}, title = {Effect of plasma treatment on the sensor properties of a light-addressable potentiometric sensor (LAPS)}, series = {physica status solidi a : applications and materials sciences}, volume = {216}, journal = {physica status solidi a : applications and materials sciences}, number = {20}, publisher = {Wiley}, address = {Weinheim}, issn = {1862-6319}, doi = {10.1002/pssa.201900259}, pages = {8 Seiten}, year = {2019}, abstract = {A light-addressable potentiometric sensor (LAPS) is a field-effect-based (bio-) chemical sensor, in which a desired sensing area on the sensor surface can be defined by illumination. Light addressability can be used to visualize the concentration and spatial distribution of the target molecules, e.g., H+ ions. This unique feature has great potential for the label-free imaging of the metabolic activity of living organisms. The cultivation of those organisms needs specially tailored surface properties of the sensor. O2 plasma treatment is an attractive and promising tool for rapid surface engineering. However, the potential impacts of the technique are carefully investigated for the sensors that suffer from plasma-induced damage. Herein, a LAPS with a Ta2O5 pH-sensitive surface is successfully patterned by plasma treatment, and its effects are investigated by contact angle and scanning LAPS measurements. The plasma duration of 30 s (30 W) is found to be the threshold value, where excessive wettability begins. Furthermore, this treatment approach causes moderate plasma-induced damage, which can be reduced by thermal annealing (10 min at 300 °C). These findings provide a useful guideline to support future studies, where the LAPS surface is desired to be more hydrophilic by O2 plasma treatment.}, language = {en} }