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Dive into the research topics where Annegret Benke is active.

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Featured researches published by Annegret Benke.


Nanotechnology | 2011

PH- and salt-dependent molecular combing of DNA: experiments and phenomenological model

Annegret Benke; Michael Mertig; Wolfgang Pompe

λ-DNA as well as plasmids can be successfully deposited by molecular combing on hydrophobic surfaces, for pH values ranging from 4 to 10. On polydimethylsiloxane (PDMS) substrates, the deposited DNA molecules are overstretched by about 60-100%. There is a significant influence of sodium ions (NaCl) on the surface density of the deposited DNA, with a maximum near to 100 mM NaCl for a DNA solution (28 ng µl(-1)) at pH 8. The combing process can be described by a micromechanical model including: (i) the adsorption of free moving coiled DNA at the substrate; (ii) the stretching of the coiled DNA by the preceding meniscus; (iii) the relaxation of the deposited DNA to the final length. The sticky ends of λ-DNA cause an adhesion force in the range of about 400 pN which allows a stable overstretching of the DNA by the preceding meniscus. The exposing of hidden hydrophobic bonds of the overstretched DNA leads to a stable deposition on the hydrophobic substrate. The pH-dependent density of deposited DNA as well as the observed influence of sodium ions can be explained by their screening of the negatively charged DNA backbone and sticky ends, respectively. The final DNA length can be derived from a balance of the stored elastic energy of the overstretched molecules and the energy of adhesion.


Journal of Physical Chemistry C | 2012

Pyroelectrocatalytic Disinfection Using the Pyroelectric Effect of Nano- and Microcrystalline LiNbO3 and LiTaO3 Particles

Emanuel Gutmann; Annegret Benke; Katharina Gerth; Horst Böttcher; Erik Mehner; Christin Klein; Udo Krause-Buchholz; Ute Bergmann; Wolfgang Pompe; Dirk C. Meyer


Journal of Physical Chemistry C | 2015

Pyroelectrically Driven •OH Generation by Barium Titanate and Palladium Nanoparticles

Annegret Benke; Erik Mehner; Marco Rosenkranz; Evgenia Dmitrieva; Tilmann Leisegang; Hartmut Stöcker; Wolfgang Pompe; Dirk C. Meyer


Archive | 2006

Method for Integrating Functional Nanostructures Into Microelectric and Nanoelectric circuits

Annegret Benke; Gerald Eckstein; Oliver Jost; Michael Mertig; Daniel Sickert; Sebastian Taeger


Archive | 2011

Device for disinfection of e.g. motor car air conditioning apparatus, has heat source and cold source thermally coupled to pyroelectric active material, which is arranged in air stream channel of air conditioning apparatus

Annegret Benke; Michael Bledau; Emanuel Gutmann; Heido Herrmann; Wolfgang Pompe; Steffen Johne; Andreas Meyer


Archive | 2001

Verfahren und Vorrichtung zur Messung der Rezeptoraktivität an transfizierten Zellen

Annegret Benke; Jan Dr. Richter; Rainer Wahl; Bettina Winzer


Cold Regions Science and Technology | 2018

Icing Temperature Measurements of Water on Pyroelectric Single Crystals: Impact of Experimental Methods on the Degree of Supercooling

Phil Goldberg; Sabine M. Apelt; Dirk Spitzner; Richard Boucher; Erik Mehner; Hartmut Stöcker; Dirk C. Meyer; Annegret Benke; Ute Bergmann


Archive | 2011

Vorrichtung und Verfahren zur Desinfektion einer Klimaanlage

Annegret Benke; Michael Bledau; Emanuel Gutmann; Heido Herrmann; Wolfgang Pompe; Steffen Johne; Andreas Meyer


Archive | 2011

Vorrichtung und Verfahren zur Desinfektion einer Klimaanlage Apparatus and method for disinfecting air conditioning

Annegret Benke; Michael Bledau; Emanuel Gutmann; Heido Herrmann; Wolfgang Pompe; Steffen Johne; Andreas Meyer


Acta Crystallographica Section A | 2010

Impact of pyroelectric LiNbO3and LiTaO3on water, organic dyes andE. coli

Emanuel Gutmann; Annegret Benke; Katharina Gerth; Erik Mehner; Christin Klein; Udo Krause-Buchholz; Wolfgang Pompe; Dirk C. Meyer

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Wolfgang Pompe

Dresden University of Technology

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Emanuel Gutmann

Dresden University of Technology

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Dirk C. Meyer

Freiberg University of Mining and Technology

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Erik Mehner

Freiberg University of Mining and Technology

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Michael Mertig

Dresden University of Technology

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Bettina Winzer

Dresden University of Technology

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Jan Dr. Richter

Dresden University of Technology

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Rainer Wahl

Dresden University of Technology

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