@inproceedings{ReisgenSchoeneSchleseretal.2009, author = {Reisgen, Uwe and Schoene, Jens and Schleser, Markus and Gries, Thomas and Glowania, Michael}, title = {Impregnated textile reinforcements for concrete applications}, series = {European Coatings Congress : N{\"u}rnberg, Germany, 30.3. - 1.4. 2009}, booktitle = {European Coatings Congress : N{\"u}rnberg, Germany, 30.3. - 1.4. 2009}, pages = {7 S.}, year = {2009}, language = {en} } @inproceedings{RabnerShacham2006, author = {Rabner, Arthur and Shacham, Yosi}, title = {A concept for a sensitive micro total analysis system for high throughput fluorescence imaging}, url = {http://nbn-resolving.de/urn:nbn:de:hbz:a96-opus-1456}, year = {2006}, abstract = {This paper discusses possible methods for on-chip fluorescent imaging for integrated bio-sensors. The integration of optical and electro-optical accessories, according to suggested methods, can improve the performance of fluorescence imaging. It can boost the signal to background ratio by a few orders of magnitudes in comparison to conventional discrete setups. The methods that are present in this paper are oriented towards building reproducible arrays for high-throughput micro total analysis systems (µTAS). The first method relates to side illumination of the fluorescent material placed into microcompartments of the lab-on-chip. Its significance is in high utilization of excitation energy for low concentration of fluorescent material. The utilization of a transparent µLED chip, for the second method, allows the placement of the excitation light sources on the same optical axis with emission detector, such that the excitation and emission rays are directed controversly. The third method presents a spatial filtering of the excitation background.}, subject = {Biosensor}, language = {en} } @masterthesis{Rabe2023, type = {Bachelor Thesis}, author = {Rabe, Leonie Maria}, title = {Wohlf{\"u}hlen in den eigenen vier W{\"a}nden : ein Produkt, welches die Wohn- und Lebensqualit{\"a}t steigert.}, publisher = {FH Aachen}, address = {Aachen}, school = {Fachhochschule Aachen}, pages = {125 Seiten}, year = {2023}, abstract = {Viele Menschen f{\"u}hlen sich in ihren eigenen vier W{\"a}nden nicht wohl. Sie sind gestresst und k{\"o}nnen nicht entspannen. Ziel dieser Arbeit ist es, ein Produkt zu erschaffen, welches in seinen Funktionen und seinem Design daf{\"u}r sorgt, dass die Nutzer:innen sich zu Hause wohler f{\"u}hlen. Es soll alle Funktionen vereinen, die daf{\"u}r sorgen, dass der Alltagsstress besser bew{\"a}ltigt werden kann und man in seinem Zuhause entspannen kann und den Moment mehr genießt. Entstanden ist Iwa, ein Produkt, welches zum einen als Luftreiniger arbeitet und die Raumluft filtert und im Zusammenspiel mit Licht und Musik die Raumatmosph{\"a}re verbessert und so Stress mindert. Das Design soll genau wie die Funktionen beruhigend, entspannend und erdend wirken. Es ist angelehnt am Zen-Design. So bietet Iwa einen großen Mehrwert. Die Funktionen sorgen im Zusammenspiel mit dem Design f{\"u}r eine verbesserte Wohn- und Lebensqualit{\"a}t.}, language = {de} } @masterthesis{Puzich2022, type = {Bachelor Thesis}, author = {Puzich, Simon}, title = {komuniiio : Generationenaustausch \& Engagement neu gedacht}, publisher = {FH Aachen}, address = {Aachen}, school = {Fachhochschule Aachen}, pages = {259 Seiten}, year = {2022}, abstract = {Aktuelle Ehren{\"a}mter und M{\"o}glichkeiten des Austauschs sind in alten Strukturen festgefahren und erfahren wenig Aufmerksamkeit. Die Potenziale von {\"a}lteren Generationen werden zu selten gesch{\"a}tzt und ausgesch{\"o}pft. Dazu werden Sie in vielen neuen Dingen und Anwendungen nicht als Nutzer:innengruppe beachtet und somit Schritt f{\"u}r Schritt ausgegrenzt. Der Ansatz dieser Arbeit war es, eine gesellschaftlich f{\"o}rdernde digitale Oberfl{\"a}che f{\"u}r den Generationenaustausch zwischen jung und alt zu schaffen - unabh{\"a}ngig von Vereinsstrukturen oder Organisationen. Vereinen wir das Bewusstsein der Alten mit der Neugier und Innovationskraft der Jungen, um eine Zukunft zu schaffen, in der es sich lohnt, jung zu sein, als auch alt zu werden.}, language = {de} } @article{PreissLinderWendtetal.2011, author = {Preiß, C. and Linder, Peter and Wendt, K. and Krystek, M. and Digel, Ilya and Gossmann, Matthias and Temiz Artmann, Ayseg{\"u}l and Porst, Dariusz and Kayser, Peter and Bassam, Rasha and Artmann, Gerhard}, title = {Engineering technology for plant physiology and plant stress research}, year = {2011}, abstract = {Plant physiology and plant stress: Plant physiology will be much more important for human mankind because of yield and cultivation limits of crops determined by their resistance to stress. To assess and counteract various stress factors it is necessary to conduct plant research to gain information and results on plant physiology.}, subject = {Pflanzenphysiologie}, language = {en} } @inproceedings{PoghossianSchumacherKloocketal.2006, author = {Poghossian, Arshak and Schumacher, Kerstin and Kloock, Joachim P. and Rosenkranz, Christian and Schultze, Joachim W. and M{\"u}ller-Veggian, Mattea and Sch{\"o}ning, Michael Josef}, title = {Functional testing and characterisation of ISFETs on wafer level by means of a micro-droplet cell}, url = {http://nbn-resolving.de/urn:nbn:de:hbz:a96-opus-1259}, year = {2006}, abstract = {A wafer-level functionality testing and characterisation system for ISFETs (ionsensitive field-effect transistor) is realised by means of integration of a specifically designed capillary electrochemical micro-droplet cell into a commercial wafer prober-station. The developed system allows the identification and selection of "good" ISFETs at the earliest stage and to avoid expensive bonding, encapsulation and packaging processes for nonfunctioning ISFETs and thus, to decrease costs, which are wasted for bad dies. The developed system is also feasible for wafer-level characterisation of ISFETs in terms of sensitivity, hysteresis and response time. Additionally, the system might be also utilised for wafer-level testing of further electrochemical sensors.}, subject = {Biosensor}, language = {en} } @inproceedings{Plenz2006, author = {Plenz, Michael}, title = {Baurevision und Unternehmensberatung, T{\"a}tigkeit als {\"o}ffentlich bestellter und vereidigter Sachverst{\"a}ndiger}, year = {2006}, abstract = {In: Alfha.net / Sektion Bauingenieurwesen: 1. [Erster] Erfahrungsaustausch : Absolventen des Fachbereichs Bauingenieurwesens berichten. 13. Oktober 2006. S. 19-20. Zusammenfassung des Vortrags: Prozessanalyse und Revision beim Umbau des Flughafens Hamburg, Beratung von Bauunternehmen, Sachverst{\"a}ndigent{\"a}tigkeit}, subject = {{\"O}ffentlich bestellter Sachverst{\"a}ndiger}, language = {de} } @inproceedings{Platzbecker2009, author = {Platzbecker, Frank}, title = {R{\"u}ckbau von drei Indewehren bei Eschweiler/Weisweiler - Renaturierung unter schwierigen Bedingungen}, year = {2009}, abstract = {Dipl.-Ing. Frank Platzbecker - Ingenieurb{\"u}ro H. Berg \& Partner GmbH, Aachen. 17 Folien (S. 92-108). Beitrag zum 2. Aachener Softwaretag in der Wasserwirtschaft <2, 2009, Aachen>. Praxisbericht zum R{\"u}ckbau von drei Wehren an der Inde in Eschweiler-Weisweiler.}, subject = {Renaturierung <{\"O}kologie>}, language = {de} } @inproceedings{PlatenPoghossianSchoening2006, author = {Platen, Johannes and Poghossian, Arshak and Sch{\"o}ning, Michael Josef}, title = {Microstructured Nanostructures - nanostructuring by means of conventional photolithography and layer-expansion technique}, url = {http://nbn-resolving.de/urn:nbn:de:hbz:a96-opus-1477}, year = {2006}, abstract = {A new and simple method for nanostructuring using conventional photolithography and layer expansion or pattern-size reduction technique is presented, which can further be applied for the fabrication of different nanostructures and nano-devices. The method is based on the conversion of a photolithographically patterned metal layer to a metal-oxide mask with improved pattern-size resolution using thermal oxidation. With this technique, the pattern size can be scaled down to several nanometer dimensions. The proposed method is experimentally demonstrated by preparing nanostructures with different configurations and layouts, like circles, rectangles, trapezoids, "fluidic-channel"-, "cantilever"- and meander-type structures.}, subject = {Biosensor}, language = {en} } @inproceedings{PijanowskaRemiszewskaPederzollietal.2006, author = {Pijanowska, Dorota G. and Remiszewska, Elzbieta and Pederzolli, Cecilia and Lunelli, Lorenzo and Vendano, Michele and Canteri, Roberto and Dudzinski, Konrad and Kruk, Jerzy and Torbicz, Wladyslaw}, title = {Surface modification for microreactor fabrication}, url = {http://nbn-resolving.de/urn:nbn:de:hbz:a96-opus-1480}, year = {2006}, abstract = {In this paper, methods of surface modification of different supports, i.e. glass and polymeric beads for enzyme immobilisation are described. The developed method of enzyme immobilisation is based on Schiff's base formation between the amino groups on the enzyme surface and the aldehyde groups on the chemically modified surface of the supports. The surface of silicon modified by APTS and GOPS with immobilised enzyme was characterised by atomic force microscopy (AFM), time-of-flight secondary ion mass spectroscopy (ToF-SIMS) and infrared spectroscopy (FTIR). The supports with immobilised enzyme (urease) were also tested in combination with microreactors fabricated in silicon and Perspex, operating in a flow-through system. For microreactors filled with urease immobilised on glass beads (Sigma) and on polymeric beads (PAN), a very high and stable signal (pH change) was obtained. The developed method of urease immobilisation can be stated to be very effective.}, subject = {Biosensor}, language = {en} }