Institutions of the University of Bayreuth
Chair Physical Chemistry I - Univ.-Prof. Dr. Stephan Förster

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Number of items at this level: 15.

B

Barelmann-Kahlbohm, Denise:
Räumlich definierte Homo- und Blockcopolymer Nanokomposite.
Bayreuth , 2015 . - XIII, 197 P.
( Doctoral thesis, 2015 , University of Bayreuth, Faculty of Biology, Chemistry and Earth Sciences)

E

Ehlert, Sascha P.:
Preparation of Fully Miscible Nanocomposites.
Bayreuth , 2015 . - V, 118 P.
( Doctoral thesis, 2015 , University of Bayreuth, Faculty of Biology, Chemistry and Earth Sciences)

F

Fürst, Carolin:
Kinetic Studies of Lyotropic Structure Formation with Microfluidics and Small Angle X-ray Scattering.
Bayreuth , 2017 . - X, 196 P.
( Doctoral thesis, 2016 , University of Bayreuth, Faculty of Biology, Chemistry and Earth Sciences)

H

Herbst, Maria:
Microfluidic and X-ray techniques for investigations of nanoparticle nucleation and growth.
Bayreuth , 2021 . - IX, 113 P.
( Doctoral thesis, 2020 , University of Bayreuth, Bayreuther Graduiertenschule für Mathematik und Naturwissenschaften - BayNAT)

Hofmann, Eddie:
Controlled fabrication of microfibers using microfluidic devices.
Bayreuth , 2020 . - X, 129 P.
( Doctoral thesis, 2020 , University of Bayreuth, Faculty of Biology, Chemistry and Earth Sciences)

M

Müller, Mareen B. ; Kuttner, Christian ; König, Tobias A. F. ; Tsukruk, Vladimir ; Förster, Stephan ; Karg, Matthias ; Fery, Andreas:
Plasmonic Library Based on Substrate-Supported Gradiential Plasmonic Arrays.
In: Acs Nano. Vol. 8 (August 2014) Issue 9 . - pp. 9410-9421.
ISSN 1936-086X
DOI der Verlagsversion: https://doi.org/10.1021/nn503493c

P

Pirner, Daniela:
Controlled Preparation of Nanoparticles and Polymer Core-Shell Structures for Use in Organogels and Nanocomposites.
Bayreuth , 2017 . - II, 187 P.
( Doctoral thesis, 2017 , University of Bayreuth, Bayreuther Graduiertenschule für Mathematik und Naturwissenschaften - BayNAT)

R

Ritter, Maria:
In-situ monitored growth of semiconductor nanoclusters and nanoparticles.
Bayreuth , 2018 . - XXIII, 222 P.
( Doctoral thesis, 2018 , University of Bayreuth, Bayreuther Graduiertenschule für Mathematik und Naturwissenschaften - BayNAT)

S

Schlenk, Mathias:
Flow of Anisotropic Colloids in Microfluidic Channels and Jets.
Bayreuth , 2018 . - VI, 173 P.
( Doctoral thesis, 2018 , University of Bayreuth, Bayreuther Graduiertenschule für Mathematik und Naturwissenschaften - BayNAT)

Seibt, Susanne I.:
In-situ Investigations of Molecular Self-Assembly Using Microfluidics.
Bayreuth , 2018 . - XVII, 252 P.
( Doctoral thesis, 2018 , University of Bayreuth, Bayreuther Graduiertenschule für Mathematik und Naturwissenschaften - BayNAT)

T

Trebbin, Martin:
Microfluidics at high-intensity X-ray sources: from microflow chips to microfluidic liquid jet systems.
Bayreuth , 2013 . - 261 P.
( Doctoral thesis, 2013 , University of Bayreuth, Faculty of Biology, Chemistry and Earth Sciences)

Taheri, Sara Mehdizadeh ; Rosenfeldt, Sabine ; Fischer, Steffen ; Bösecke, Peter ; Narayanan, Theyencheri ; Lindner, Peter ; Förster, Stephan:
Shear-induced macroscopic "Siamese" twins in soft colloidal crystals.
In: Soft Matter. Vol. 9 (2013) Issue 35 . - pp. 8464-8475.
ISSN 1744-683X
DOI der Verlagsversion: https://doi.org/10.1039/c3sm51075a

Taheri, Sara Mehdizadeh ; Fischer, Steffen ; Trebbin, Martin ; With, Sebastian ; Schröder, Jan ; Perlich, Jan ; Roth, Stephan V. ; Förster, Stephan:
Lyotropic phase behavior of polymer-coated iron oxide nanoparticles.
In: Soft Matter. Vol. 8 (2012) Issue 48 . - pp. 12124-12131.
ISSN 1744-683X
DOI der Verlagsversion: https://doi.org/10.1039/c2sm26777b

Thiele, Julian ; Seiffert, Sebastian:
Double emulsions with controlled morphology by microgel scaffolding.
In: Lab on a chip. Vol. 11 (2011) Issue 18 . - pp. 3188-3192.
ISSN 1473-0197
DOI der Verlagsversion: https://doi.org/10.1039/c1lc20242a

Thiele, Julian ; Windbergs, Maike ; Abate, Adam R. ; Trebbin, Martin ; Shum, Ho Cheung ; Foerster, Stephan ; Weitz, David A.:
Early development drug formulation on a chip: Fabrication of nanoparticles using a microfluidic spray dryer.
In: Lab on a chip. Vol. 11 (2011) Issue 14 . - pp. 2362-2368.
ISSN 1473-0197
DOI der Verlagsversion: https://doi.org/10.1039/c1lc20298g

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