20 resultados para Extraordinary republics


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The conversion of dissipated heat into electricity is the basic principle of thermoelectricity. In this context, half-Heusler (HH) compounds are promising thermoelectric (TE) materials for waste heat recovery. They meet all the requirements for commercial TE applications, ranging from good efficiencies via environmentally friendliness to being low cost materials. This work focused on the TE properties of Ti0.3Zr0.35Hf0.35NiSn-based HH materials. This compound undergoes an intrinsic phase separation into a Ti-poor and Ti-rich HH phase during a rapid solidification process. The resulting dendritic microstructure causes a drastic reduction of the thermal conductivity, leading to higher TE efficiencies in these materials. The TE properties and temperature dependence of the phase-separated Ti0.3Zr0.35Hf0.35NiSn compound were investigated. The TE properties can be adjusted depending on the annealing treatment. The extension of annealing time for 21 days at 1000 °C revealed a reduction of the thermal conductivity and thus an enhancement of the TE performance in this sample. An increase of annealing temperature caused a change of the phase fraction ratio in favor of the Ti-rich phase, leading to an improvement of the electronic properties. rnInspired by the TE properties of the Ti0.3Zr0.35Hf0.35NiSn HH compound, the performance of different n- and p-type materials, realized via site substitution with donor and acceptor elements was examined. The fabrication of a TE n- and p-type material pair based on one starting compound can guarantee similar TE and mechanical properties and is enormous beneficial for device engineering. As donor dopants V, Nb and Sb were tested. Depending on the lattice position small doping levels were sufficient to attain distinct improvement in their TE efficiency. Acceptor-induced doping with Sc, Y and Co caused a change in the transport behavior from n- to p- type conduction, revealing the highest Seebeck coefficients obtained in the MNiSn system. rnThen, the long-term stability of an exemplary n- and p-type HH compound was proven. Surprisingly, the dendritic microstructure can be maintained even after 500 cycles (1700 h) from 373 to 873 K. The TE performance of both n- and p-type materials showed no significant change under the long-term treatment, indicating the extraordinary temperature stability of these compounds. Furthermore both HH materials revealed similar temperature-dependence of their mechanical properties. This work demonstrates the excellent suitability of phase-separated HH materials for future TE applications in the moderate temperature range.rn

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Für alle fünf zentralasiatischen Teilrepubliken kam der Zusammenbruch der Sowjetunion im Jahr 1991 relativ plötzlich und eher unerwartet. Der Prozess der „Transformation“ beinhaltete für die neu entstandenen Staaten nun nicht nur die Umstellung politischer und wirtschaftlicher Systeme, sondern ebenso die Organisation von Erinnerung und die Konstruktion von Identität, bei der die staatliche Nationalisierungspolitik oft Paradebeispiele von invented traditions her-vorbrachte. rnIn Kasachstan, dem Land, das während der Sowjetzeit am stärksten russifiziert wurde und heute offiziell 120 Minderheiten zählt, stellt sich dabei die Frage, wie nationale Identitätsmus-ter konstruiert werden und wie Politik. Medien und Bevölkerung damit umgehen. Zwanzig Jahre nach der Unabhängigkeitserklärung des Landes und einer Phase, in der die Regierung mit einer Vielzahl von Maßnahmen versucht, den Identitätsfindungsprozess zu steuern, wurde im Rahmen dieser Arbeit erstmals eine empirische Studie zu der Frage durchgeführt, welche Bedeutungen bestimmte Identitätskonzepte für die lokale Bevölkerung haben. Während meh-rerer Forschungsaufenthalte von insgesamt vier Monaten in den Jahren 2010 und 2011 wurden in Hinblick auf die Fragestellung leitfadenorientierte Interviews und informelle Gespräche mit Teilen der kasachstanischen Bevölkerung geführt, teilnehmende Beobachtung, zwei Fragebo-genaktionen und eine Zeitungsanalyse durchgeführt sowie wissenschaftliche Studien und poli-tische Dokumente analysiert.rnDie Arbeit kommt zu dem Ergebnis, dass die Mehrheit der Befragten sich mehr oder weniger stark entweder über die Staatsbürgerschaft oder die ethnische Zugehörigkeit zur Titularnation mit dem Staat identifiziert. Auffällig ist die Bedeutung regionaler Identitäten für die Befrag-ten, die weder in der nationalen Identitätspolitik noch in der wissenschaftlichen Literatur von Wichtigkeit sind. Ethnische und religiöse Nivellierungen scheinen im Alltagsleben belanglos zu sein, aber in bestimmten anderen Kontexten eine entscheidende Rolle zu spielen. Starke Unterschiede in der Bedeutung verschiedener Identitätsmodelle lassen sich zwischen Stadt- und Landbevölkerung beziehungsweise zwischen sowjetisierten und nach der Wende repatri-ierten Kasachen ausmachen.rnEs ist anzunehmen, dass die Regierung der entscheidende Agent in der Identitätsfindung des Landes ist. Unter den Befragten zeigte sich, dass Identitätspolitik auf der pragmatischen Ebe-ne, beispielsweise in der Anerkennung von Russisch und Kasachisch als Staatssprachen, er-folgreicher ist als auf der emotionalen. rn

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The central objective of this work was to generate weakly coordinating cations of unprecedented molecular size providing an inherently stable hydrophobic shell around a central charge. It was hypothesized that divergent dendritic growth by means of thermal [4+2] Diels-Alder cycloaddition might represent a feasible synthetic method to circumvent steric constraints and enable a drastic increase in cation size.rnThis initial proposition could be verified: applying the divergent dendrimer synthesis to an ethynyl-functionalized tetraphenylphosphonium derivative afforded monodisperse cations with precisely nanoscopic dimensions for the first time. Furthermore, the versatile nature of the applied cascade reactions enabled a throughout flexible design and structural tuning of the desired target cations. The specific surface functionalization as well as the implementation of triazolyl-moieties within the dendrimer scaffold could be addressed by sophisticated variation of the employed building block units (see chapter 3). rnDue to the steric screening provided by their large, hydrophobic and shape-persistent polyphenylene shells, rigidly dendronized cations proved more weakly coordinating compared to their non-dendronized analogues. This hypothesis has been experimentally confirmed by means of dielectric spectroscopy (see chapter 4). It was demonstrated for a series of dendronized borate salts that the degree of ion dissociation increased with the size of the cations. The utilization of the very large phosphonium cations developed within this work almost achieved to separate the charge carriers about the Bjerrum length in solvents of low polarity, which was reflected by approaching near quantitative ion dissociation even at room temperature. In addition to effect the electrolyte behavior in solution, the steric enlargement of ions could be visualized by means of several crystal structure analyses. Thus an insight into lattice packing under the effect of extraordinary large cations could be gathered. rnAn essential theme of this work focused on the application of benzylphosphonium salts in the classical Wittig reaction, where the concept of dendronization served as synthetic means to introduce an exceptionally large polyphenylene substituent at the -position. The straightforward influence of this unprecedented bulky group on the Wittig stereochemistry was investigated by NMR-analysis of the resulting alkenes. Based on the obtained data a valuable explanation for the origin of the observed selectivity was brought in line with the up-to-date operating [2+2] cycloaddition mechanism. Furthermore, a reliable synthesis protocol for unsymmetrically substituted polyphenylene alkenes and stilbenes was established by the design of custom-built polyphenylene precursors (see chapter 5).rnFinally, fundamental experiments to functionalize a polymer chain with sterically shielded ionic groups either in the pending or internal position were outlined within this work. Thus, inherently hydrophobic polysalts shall be formed so that future research can invesigate their physical properties with regard to counter ion condensation and charge carrier mobility.rnIn summary, this work demonstrates how the principles of dendrimer chemistry can be applied to modify and specifically tailor the properties of salts. The numerously synthesized dendrimer-ions shown herein represent a versatile interface between classic organic and inorganic electrolytes, and defined macromolecular structures in the nanometer-scale. Furthermore the particular value of polyphenylene dendrimers in terms of a broad applicability was illustrated. This work accomplished in an interdisciplinary manner to give answer to various questions such as structural modification of ions, the resulting influence on the electrolyte behavior, as well as the stereochemical control of organic syntheses via polyphenylene phosphonium salts. rn

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In this thesis I present a new coarse-grained model suitable to investigate the phase behavior of rod-coil block copolymers on mesoscopic length scales. In this model the rods are represented by hard spherocylinders, whereas the coil block consists of interconnected beads. The interactions between the constituents are based on local densities. This facilitates an efficient Monte-Carlo sampling of the phase space. I verify the applicability of the model and the simulation approach by means of several examples. I treat pure rod systems and mixtures of rod and coil polymers. Then I append coils to the rods and investigate the role of the different model parameters. Furthermore, I compare different implementations of the model. I prove the capability of the rod-coil block copolymers in our model to exhibit typical micro-phase separated configurations as well as extraordinary phases, such as the wavy lamellar state, percolating structuresrnand clusters. Additionally, I demonstrate the metastability of the observed zigzag phase in our model. A central point of this thesis is the examination of the phase behavior of the rod-coil block copolymers in dependence of different chain lengths and interaction strengths between rods and coil. The observations of these studies are summarized in a phase diagram for rod-coil block copolymers. Furthermore, I validate a stabilization of the smectic phase with increasing coil fraction.rnIn the second part of this work I present a side project in which I derive a model permitting the simulation of tetrapods with and without grafted semiconducting block copolymers. The effect of these polymers is added in an implicit manner by effective interactions between the tetrapods. While the depletion interaction is described in an approximate manner within the Asakura-Oosawa model, the free energy penalty for the brush compression is calculated within the Alexander-de Gennes model. Recent experiments with CdSe tetrapods show that grafted tetrapods are clearly much better dispersed in the polymer matrix than bare tetrapods. My simulations confirm that bare tetrapods tend to aggregate in the matrix of excess polymers, while clustering is significantly reduced after grafting polymer chains to the tetrapods. Finally, I propose a possible extension enabling the simulation of a system with fluctuating volume and demonstrate its basic functionality. This study is originated in a cooperation with an experimental group with the goal to analyze the morphology of these systems in order to find the ideal morphology for hybrid solar cells.

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Gegenstand meiner Arbeit ist das Bettpaneel von Ugarit und seine komplexe Ikonographie, die Motive unterschiedlicher künstlerischer Traditionen des Alten Orients vereint. Das Bettpaneel bietet die einmalige Gelegenheit, das gesamte Bildprogramm eines Möbels zu untersuchen und die Entwicklung des levantinischen Kunsthandwerks der Späten Bronzezeit (2. Hälfte des 2. Jt.s v. Chr.) besser zu verstehen, besonders in Bezug auf Prestigegüter. Bereits 1952 ist das Bettpaneel im Königspalast von Ugarit entdeckt, jedoch bisher noch nicht monographisch abhandelt worden.rnEs wird gezeigt, dass das Bettpaneel von Ugarit ein hervorragendes Erzeugnis des lokalen Kunsthandwerks ist, gleichzeitig aber die kontinuierliche Übernahme fremder Motive bezeugt.rnWelche Vorbilder haben diese Rezeption begünstigt? Handelte es sich dabei um bewusste Anpassung an heimische Vorstellungen oder vielmehr um getreue Wiedergabe? Warum ließen sich die ugaritischen Handwerker von fremden Kunsttraditionen inspirieren? rnDank der detaillierten Untersuchung des Bettpaneels von Ugarit lassen sich diese wesentlichen Fragen über die Mechanismen der sozialen und kulturellen Interaktionen zwischen den Zivilisationen des Ostmittelmeergebiets im 2 Jt.s v. Chr. endgültig antworten.