Universität Stuttgart

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    Molekulardynamische Simulation zu Fragen der smektischen Translationsordnung in thermotropen Flüssigkristallen
    (2021) Häge, Christian; Gießelmann, Frank (Prof. Dr.)
    Es wurden zwei Fragestellungen zur smektischen Translationsordnung von Flüssigkristallen bearbeitet. Der erste Teil der Arbeit befasst sich mit dem Einfluss der molekularen Ladungsanordnung von ionischen Flüssigkristallen auf deren Phasenverhalten. Der zweite Teil der Arbeit untersucht unter welchen Voraussetzungen die Gleichungen zur Bestimmung von Translationsordnungsparametern angewendet werden können und welche Rolle die molekulare Elektronendichteverteilung des Mesogens dabei spielt.
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    Micellar lyotropic gels : the interplay between gel network and liquid-crystalline order
    (2021) Dieterich, Sonja; Gießelmann, Frank (Prof. Dr.)
    Surfactant based lyotropic liquid-crystalline (LLC) gels in the sense that genuine micellar LLC phases are immobilized by an interpenetrating gel network were practically unknown until 2016. This “blind spot” in the landscape of anisotropic gels has now been filled to a certain extent by the results of this dissertation. Following the rational design strategy to gel surfactant based LLC phases with the help of low molecular mass gelators (LMWGs), not only lamellar and hexagonal LLC gels, but also the very first example of micellar nematic gels were obtained. Furthermore, this work has led to first important insights into how the self assembly of the gel is directed and how the gel network and the LLC phase mutually influence each other in terms of structure and morphology
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    Chemical design and probing of novel molecular 2-qubit systems
    (2023) Schäfter, Dennis; Slageren, Joris van (Prof. Dr.)
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    Chiral metamaterials
    (2016) Eslami, Sahand; Fischer, Peer (Prof. Dr.)
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    Rheological studies, time dependency and orientation of nematic lyotropic liquid crystal gels
    (2025) Dombrowski, Max; Stubenrauch, Cosima (Prof. Dr.)
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    Monodisperse highly ordered and polydisperse biobased solid foams
    (2018) Andrieux, Sébastien; Stubenrauch, Cosima (Prof. Dr.)
    The aim of this work was the synthesis of monodisperse highly ordered biobased polymer foams and a comparison with their polydisperse counterparts. We used the biobased and biodegradable polymer chitosan, which we cross-linked with genipin. The polymer foams were synthesised via foam templating, i.e. via a liquid foam whose continuous phase contains a polymer and can be solidified. In order to obtain monodisperse highly ordered polymer foams, one first has to generate monodisperse highly ordered liquid foam templates. We did so by using microfluidics, which allows to produce monodisperse liquid foams with bubble sizes from 200 µm to 800 µm and polydispersities below 5%. The monodisperse foams were collected outside of the microfluidic channels and left to self-order under the influence of gravity and confinement. We studied the kinetics of the cross-linking reaction to find the optimal storage conditions during cross-linking. Once cross-linked we freeze-dried the gelled foams to obtain solid chitosan foams. We compared the morphological properties of the solid foams with those of the liquid templates in order to test the efficiency of the developed templating route. We observed how modifying the cross-linking and drying conditions can strongly affect the morphology of the solid foams. The main issue was to maintain the key properties of the liquid foam template throughout the solidification process, namely the bubble size distribution, the structural order and the density. We then compared the synthesised monodisperse polymer foams with their polydisperse counterparts. Although easy foaming methods exist for the generation of polydisperse foams, they do not allow the control over the polydispersity. We thus used microfluidics to generate liquid chitosan foams with tunable polydispersities from below 5% up to 26%. Microfluidics allows to match the average bubble size and density of the polydisperse liquid chitosan foam with those of the monodisperse counterpart. After solidifying the liquid templates we obtained solid foams with controlled polydispersities and studied the in uence of the polydispersity on the mechanical properties. However, we observed that not the polydispersity but the foam density was the main parameter at play. Moreover, the solid chitosan foams had weak mechanical properties with elastic moduli below 100 kPa. To overcome this issue, we incorporated cellulose nanofibres to the original chitosan solution and followed the developed route for foam templating. We had to adapt the microfluidic parameters to account for the viscosity changes brought about by the nanofibres. However, we managed to produce monodisperse liquid foams having the same bubble size, i.e. ~300 µm, but different amounts of cellulose nanofibres. The cellulose content had a strong influence on the solid foam morphology in general and on the pore connectivity in particular.
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    Probing molecular quantum bits
    (2021) Lenz, Samuel; Slageren, Joris van (Prof. Dr.)
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    Chirality effects in thermotropic and lyotropic nematic liquid crystals under confined geometries
    (2019) Dietrich, Clarissa; Giesselmann, Frank (Prof. Dr.)
    Chirality is a phenomenon in nature that appears across all disciplines of natural science, from biology to mathematics. The spontaneous formation of chiral structures in a system of achiral components is known as spontaneous mirror symmetry breaking and is by itself of fundamental interest leading also towards the question of the origin of homochirality in nature in general. In this work, we show that by means of the topology imposed by the confining geometry and by interfacial boundary conditions - in combination with the physical properties of a liquid crystal - spontaneous mirror symmetry broken structures can be obtained. They are analyzed, inter alia, with respect to the types of geometrical confinements used, e.g. how the confinement amplifies, induces, and influences the detection of chirality effects in order to facilitate the measurement of tiny amounts of chiral additives qualitatively and quantitatively.
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    Chirale lyotrop-lamellare Flüssigkristalle : Phasenverhalten neuer chiraler Amphiphile und Nachweis des elektroklinen Effektes
    (2019) Harjung, Marc D.; Gießelmann, Frank (Prof. Dr.)
    Ziel dieser Arbeit ist es, neue Erkenntnisse zur Bildung lyotroper SmC*-Phasen zu gewinnen und einen elektroklinen Effekt in chiral lamellaren Phasen nachzuweisen.
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    Tailor-made methacrylate-based polymer foams via emulsion and foamed emulsion templating
    (2020) Dabrowski, Miriam Lucia; Stubenrauch, Cosima (Prof. Dr.)
    Inspired by studies on tissue engineering, this PhD thesis aims at synthesizing and characterizing methacrylate-based polymer foams with tunable pore structures. To reach this goal, two templating routes, namely emulsion templating and foamed emulsion templating, were combined with microfluidics. Two different templating routes were chosen to get access to different pore sizes without changing the monomer. The monomer used was 1,4-butanediol dimethacrylate (1,4-BDDMA). The liquid templates and the solid polymer foams were characterized via light microscopy and scanning electron microscopy (SEM) to prove the “templating effect”.