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  • 1
    UID:
    b3kat_BV044031832
    Format: xvi, 256 Seiten , Illustrationen, Diagramme (teilweise farbig)
    ISBN: 9783527332083 , 3527332081
    Additional Edition: Erscheint auch als Online-Ausgabe ISBN 978-3-527-64819-1
    Additional Edition: Erscheint auch als Online-Ausgabe ISBN 978-3-527-64818-4
    Additional Edition: Erscheint auch als Online-Ausgabe ISBN 978-3-527-64817-7
    Additional Edition: Erscheint auch als Online-Ausgabe ISBN 978-3-527-64816-0
    Language: English
    Subjects: Chemistry/Pharmacy , Physics
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    Keywords: Graphen ; Kohlenstoffwerkstoff ; Chemische Synthese ; Aufsatzsammlung
    Author information: Müllen, Klaus 1947-
    Author information: Antonietti, Markus 1960-
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  • 2
    UID:
    gbv_1869664930
    Format: 351 Seiten , Illustrationen, Diagramme
    Content: Solar photocatalysis is the one of leading concepts of research in the current paradigm of sustainable chemical industry. For actual practical implementation of sunlight-driven catalytic processes in organic synthesis, a cheap, efficient, versatile and robust heterogeneous catalyst is necessary. Carbon nitrides are a class of organic semiconductors who are known to fulfill these requirements. First, current state of solar photocatalysis in economy, industry and lab research is overviewed, outlining EU project funding, prospective synthetic and reforming bulk processes, small scale solar organic chemistry, and existing reactor designs and prototypes, concluding feasibility of the approach. Then, the photocatalytic aerobic cleavage of oximes to corresponding aldehydes and ketones by anionic poly(heptazine imide) carbon nitride is discussed. The reaction provides a feasible method of deprotection and formation of carbonyl compounds from nitrosation products and serves as a convenient model to study chromoselectivity and photophysics of ...
    Note: Dissertation Universität Potsdam 2023
    Additional Edition: Erscheint auch als Online-Ausgabe Galushchinskiy, Alexey Carbon nitride Potsdam, 2023
    Language: English
    Keywords: Hochschulschrift
    Author information: Reiser, Oliver 1962-
    Author information: Schmidt, Bernd 1967-
    Author information: Antonietti, Markus 1960-
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  • 3
    UID:
    gbv_859340430
    Format: VII, 126 Blätter , Illustrationen, Diagramme
    Content: The main focus of the present thesis was to investigate the stabilization ability of poly(ionic liquid)s (PILs) in several examples as well as develop novel chemical structures and synthetic routes of PILs. The performed research can be specifically divided into three parts that include synthesis and application of hybrid material composed of PIL and cellulose nanofibers (CNFs), thiazolium-containing PILs, and main-chain imidazolium-type PILs. In the first chapter, a vinylimidazolium-type IL was polymerized in water in the presence of CNFs resulting in the in situ electrostatic grafting of polymeric chains onto the surface of CNFs. The synthesized hybrid material merged advantages of its two components, that is, superior mechanical strength of CNFs and anion dependent solution properties of PILs. In contrast to unmodified CNFs, the hybrid could be stabilized and processed in organic solvents enabling its application as reinforcing agent for porous polyelectrolyte membranes. In the second part, PILs and ionic polymers containing two types of thiazolium repeating units were synthesized. Such polymers displayed counterion dependent thermal stability and solubility in organic solvents of various dielectric constants. This new class of PILs was tested as stabilizers and phase transfer agents for carbon nanotubes in aqueous and organic media, and as binder materials to disperse electroactive powders and carbon additives in solid electrode in lithium-ion batteries. The incorporation of S and N atoms into the polymeric structures make such PILs also potential precursors for S, N - co-doped carbons. In the last chapter, reactants originating from biomass were successfully harnessed to synthesize main-chain imidazolium-type PILs. An imidazolium-type diester IL obtained via a modified Debus-Radziszewski reaction underwent transesterification with diol in a polycondensation reaction. This yielded a polyester-type PIL which CO2 sorption properties were investigated. In the next step, the modified Debus-Radziszewski reaction was further applied to synthesize main-chain PILs according to a convenient, one-step protocol, using water as a green solvent and simple organic molecules as reagents. Depending on the structure of the employed diamine, the synthesized PILs after anion exchange showed superior thermal stability with unusually high carbonization yields. Overall, the outcome of these studies will actively contribute to the current research on PILs by introducing novel PIL chemical structures, improved synthetic routes, and new examples of stabilized materials. The synthesis of main-chain imidazolium-type PILs by a modified Debus-Radziszewski reaction is of a special interest for the future work on porous ionic liquid networks as well as colloidal PIL nanoparticles.
    Note: Dissertation Universität Potsdam, Mathematisch-Naturwissenschaftliche Fakultät 2015
    Additional Edition: Erscheint auch als Online-Ausgabe Grygiel, Konrad, 1988 - Poly(ionic liquid) stabilizers and new synthetic approaches Potsdam, 2015
    Language: English
    Keywords: Ionische Flüssigkeit ; Polymere ; Polymerisation ; Hochschulschrift
    Author information: Antonietti, Markus 1960-
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  • 4
    UID:
    gbv_1684163080
    Format: 119, clxxiv Seiten , Illustrationen, Diagramme
    Content: The motivation of this work was to investigate the self-assembly of a block copolymer species that attended little attraction before, double hydrophilic block copolymers (DHBCs). DHBCs consist of two linear hydrophilic polymer blocks. The self-assembly of DHBCs towards suprastructures such as particles and vesicles is determined via a strong difference in hydrophilicity between the corresponding blocks leading to a microphase separation due to immiscibility. The benefits of DHBCs and the corresponding particles and vesicles, such as biocompatibility, high permeability towards water and hydrophilic compounds as well as the large amount of possible functionalizations that can be addressed to the block copolymers make the application of DHBC based structures a viable choice in biomedicine. In order to assess a route towards self-assembled structures from DHBCs that display the potential to act as cargos for future applications, several block copolymers containing two hydrophilic polymer blocks were synthesized. [...]
    Note: Dissertation Universität Potsdam 2017
    Additional Edition: Erscheint auch als Online-Ausgabe Willersinn, Jochen Self-Assembly of double hydrophilic block copolymers Potsdam, 2017
    Language: English
    Keywords: Blockcopolymere ; Hydrophile Verbindungen ; Selbstorganisation ; Biokompatibilität ; Hochschulschrift
    Author information: Antonietti, Markus 1960-
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  • 5
    UID:
    gbv_88203670X
    Format: 139 Blätter , Diagramme, Illustrationen
    Content: In the interest of producing functional catalysts from sustainable building-blocks, 1, 3-dicarboxylate imidazolium salts derived from amino acids were successfully modified to be suitable as N-Heterocyclic carbene (NHC) ligands within metal complexes. Complexes of Ag(I), Pd(II), and Ir(I) were successfully produced using known procedures using ligands derived from glycine, alanine, β-alanine and phenylalanine. The complexes were characterized in solid state using X-Ray crystallography, which allowed for the steric and electronic comparison of these ligands to well-known NHC ligands within analogous metal complexes. The palladium complexes were tested as catalysts for aqueous-phase Suzuki-Miyaura cross-coupling. Water-solubility could be induced via ester hydrolysis of the N-bound groups in the presence of base. The mono-NHC–Pd complexes were seen to be highly active in the coupling of aryl bromides with phenylboronic acid; the active catalyst of which was determined to be mostly Pd(0) nanoparticles. Kinetic studies determined that…
    Note: Dissertation Universität Potsdam 2016
    Additional Edition: Erscheint auch als Online-Ausgabe Steeples, Elliot Amino acid-derived imidazolium salts Potsdam, 2017
    Language: English
    Keywords: Heterocyclische Carbene ; Imidazoliumsalze ; Hochschulschrift
    Author information: Antonietti, Markus 1960-
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  • 6
    UID:
    gbv_1742366813
    Format: iv, 154 Seiten , Illustrationen, Diagramme
    Content: In recent years people have realised non-renewability of our modern society which relays on spending huge amounts of energy mostly produced from fosil fuels, such as oil and coal, and the shift towards more sustainable energy sources has started. However, sustainable sources of energy, such as wind-, solar- and hydro-energy, produce primarily electrical energy and can not just be poured in canister like many fosil fuels, creating necessity for rechragable batteries. However, modern Li-ion batteries are made from toxic heavy metals and sustainable alternatives are needed. Here we show that naturally abundant catecholic and guaiacyl groups can be utilised to replace heavy metals in Li-ion batteries. Foremost vanillin, a naturally occurring food additive that can be sustainably synthesised from industrial biowaste, lignin, was utilised to synthesise materials that showed extraordinary performance as cathodes in Li-ion batteries. Furthermore, behaviour of catecholic and guiacyl groups in Li-ion system was compared, confirming usability ...
    Note: Dissertation Universität Potsdam 2020
    Additional Edition: Erscheint auch als Online-Ausgabe Ilic, Ivan Design of sustainable cathodes for Li-ion batteries Potsdam, 2020
    Language: English
    Keywords: Lithium-Ionen-Akkumulator ; Kathode ; Benzaldehydderivate ; Metallorganische Polymere ; Hochschulschrift
    Author information: Taubert, Andreas 1972-
    Author information: Antonietti, Markus 1960-
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  • 7
    UID:
    gbv_1740208676
    Format: II, 118 Seiten , Illustrationen, Diagramme
    Content: Completely water-based systems are of interest for the development of novel material for various reasons: On one hand, they provide benign environment for biological systems and on the other hand they facilitate effective molecular transport in a membrane-free environment. In order to investigate the general potential of aqueous two-phase systems (ATPSs) for biomaterials and compartmentalized systems, various solid particles were applied to stabilize all-aqueous emulsion droplets. The target ATPS to be investigated should be prepared via mixing of two aqueous solutions of water-soluble polymers, which turn biphasic when exceeding a critical polymer concentration. Hydrophilic polymers with a wide range of molar mass such as dextran/poly(ethylene glycol) (PEG) can therefore be applied. Solid particles adsorbed at the interfaces can be exceptionally efficient stabilizers forming so-called Pickering emulsions, and nanoparticles can bridge the correlation length of polymer solutions and are thereby the best option for water-in-water ...
    Note: Dissertation Universität Potsdam 2020
    Additional Edition: Erscheint auch als Online-Ausgabe Zhang, Jianrui Completely water-based emulsions as compartmentalized systems via pickering stabilization Potsdam, 2020
    Language: English
    Keywords: Zweiphasensystem ; Wässrige Lösung ; Flüssig-Flüssig-System ; Entmischung ; Hochschulschrift
    Author information: Antonietti, Markus 1960-
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  • 8
    UID:
    gbv_1689853670
    Format: 146 Seiten , Illustrationen, Diagramme
    Content: The central motivation of the thesis was to provide possible solutions and concepts to improve the performance (e.g. activity and selectivity) of electrochemical N2 reduction reaction (NRR). Given that porous carbon-based materials usually exhibit a broad range of structural properties, they could be promising NRR catalysts. Therefore, the advanced design of novel porous carbon-based materials and the investigation of their application in electrocatalytic NRR including the particular reaction mechanisms are the most crucial points to be addressed. In this regard, three main topics were investigated. All of them are related to the functionalization of porous carbon for electrochemical NRR or other electrocatalytic reactions. In chapter 3, a novel C-TixOy/C nanocomposite has been described that has been obtained via simple pyrolysis of MIL-125(Ti). A novel mode for N2 activation is achieved by doping carbon atoms from nearby porous carbon into the anion lattice of TixOy. By comparing the NRR performance of M-Ts and by carrying out DFT calculations, it is found that the existence of (O-)Ti-C bonds in C-doped TixOy can largely improve the ability to activate and reduce N2 as compared to unoccupied OVs in TiO2. [...]
    Note: Dissertation Universität Potsdam 2019
    Additional Edition: Erscheint auch als Online-Ausgabe Qin, Qing, 1993 - Chemical functionalization of porous carbon-based materials to enable novel modes for efficient electrochemical N2 fixation Potsdam, 2019
    Language: English
    Keywords: Elektrokatalyse ; Reduktion ; Distickstoff ; Kohlenstoffverbindungen ; Hochschulschrift
    Author information: Antonietti, Markus 1960-
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  • 9
    UID:
    gbv_1739021479
    Format: 1 Online-Ressource (275 Seiten, 14352 KB) , Illustrationen, Diagramme
    Content: Abstract. Catalysis is one of the most effective tools for the highly efficient assembly of complex molecular structures. Nevertheless, it is mainly represented by transition metal-based catalysts and typically is an energy consuming process. Therefore, photocatalysis utilizing solar energy is one of the appealing approaches to overcome these problems. A great alternative to classic transition metal-based photocatalysts, carbon nitrides, a group of organic polymeric semiconductors, have already shown their efficiency in water splitting, CO2 reduction, and organic pollutants degradation. However, these materials have also a great potential for the use in functionalization of complex organic molecules for synthetic needs as it was shown in recent years. This work addresses the challenge to develop efficient system for heterogeneous organic photocatalysis, employing cheap and environmentally benign photocatalysts – carbon nitrides. Herein, fundamental properties of semiconductors are studied from the organic chemistry standpoint; the ...
    Note: Dissertation Universität Potsdam 2020
    Additional Edition: Erscheint auch als Druck-Ausgabe Markushyna, Yevheniia Modern photoredox transformations applied to the needs of organic synthesis Potsdam, 2020
    Language: English
    Keywords: Fotokatalyse ; Carbonitride ; Hochschulschrift
    Author information: Marschall, Roland 1980-
    Author information: Schmidt, Bernd 1967-
    Author information: Antonietti, Markus 1960-
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  • 10
    UID:
    gbv_174020834X
    Format: 1 Online-Ressource (II, 118 Seiten, 6346 KB) , Illustrationen, Diagramme
    Content: Completely water-based systems are of interest for the development of novel material for various reasons: On one hand, they provide benign environment for biological systems and on the other hand they facilitate effective molecular transport in a membrane-free environment. In order to investigate the general potential of aqueous two-phase systems (ATPSs) for biomaterials and compartmentalized systems, various solid particles were applied to stabilize all-aqueous emulsion droplets. The target ATPS to be investigated should be prepared via mixing of two aqueous solutions of water-soluble polymers, which turn biphasic when exceeding a critical polymer concentration. Hydrophilic polymers with a wide range of molar mass such as dextran/poly(ethylene glycol) (PEG) can therefore be applied. Solid particles adsorbed at the interfaces can be exceptionally efficient stabilizers forming so-called Pickering emulsions, and nanoparticles can bridge the correlation length of polymer solutions and are thereby the best option for water-in-water ...
    Note: Dissertation Universität Potsdam 2020
    Additional Edition: Erscheint auch als Druck-Ausgabe Zhang, Jianrui Completely water-based emulsions as compartmentalized systems via pickering stabilization Potsdam, 2020
    Language: English
    Keywords: Zweiphasensystem ; Wässrige Lösung ; Flüssig-Flüssig-System ; Entmischung ; Hochschulschrift
    Author information: Antonietti, Markus 1960-
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