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Mikrostrukturelle Charakterisierung, Modellentwicklung und Simulation poröser Elektroden für Lithiumionenzellen

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Book Series: Schriften des Instituts für Werkstoffe der Elektrotechnik, Karlsruher Institut für Technologie / Institut für Werkstoffe der Elektrotechnik ISSN: 18681603 ISBN: 9783731502050 Year: Volume: 26 Pages: VII, 218 p. DOI: 10.5445/KSP/1000040284 Language: GERMAN
Publisher: KIT Scientific Publishing
Subject: Science (General)
Added to DOAB on : 2019-07-30 20:01:57
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Electrode microstructures of a high energy and a high power lithium-ion cell were analyzed in 3D using tomographic methods. Calculation of structural parameters enabled a quantitative comparison of the electrodes. To simulate their electrochemical behavior a finite element model was developed which, for the first time, includes a real particle size distribution. This allowed for an identification of the limiting mechanisms during charging and discharging in the electrodes of both cells.

Der Decal-Prozess zur Herstellung katalysatorbeschichteter Membranen für PEM-Brennstoffzellen

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Book Series: Schriftenreihe des Instituts für Angewandte Materialien, Karlsruher Institut für Technologie ISSN: 21929963 ISBN: 9783731503347 Year: Volume: 47 Pages: XXIX, 329 p. DOI: 10.5445/KSP/1000045306 Language: GERMAN
Publisher: KIT Scientific Publishing
Subject: Technology (General)
Added to DOAB on : 2019-07-30 20:02:02
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This work is a comprehensive analysis of the decal process for production of catalyst coated membranes. Both the process window for the transfer of electrodes from decal foil onto membrane and the effects of the parameters of ink and transfer process on structure and function including process reproducibility shall be investigated. A major component of all those aspects is the selection, implementation and assessment of appropriate characterization methods.

Functional Materials Based on Metal Hydrides

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ISBN: 9783038972822 9783038972839 Year: Pages: 180 DOI: 10.3390/books978-3-03897-283-9 Language: English
Publisher: MDPI - Multidisciplinary Digital Publishing Institute
Subject: Chemistry (General)
Added to DOAB on : 2018-10-18 10:44:38
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Our extreme and growing energy consumption, based on fossil fuels, has significantly increased the levels of carbon dioxide in the atmosphere, which may lead to global and irreversible climate changes. We have plenty of renewable energy, e.g., sun and wind, but the fluctuations over time and geography call for a range of new ideas and, possibly, novel technologies. The most difficult challenge appears to be the development of the efficient and reliable storage of renewable energy. Hydrogen has long been considered as a potential means of energy storage; however, storage of hydrogen is also challenging. Therefore, a wide range of hydrogen-containing materials, with energy-related functions, has been discovered over the past few decades. The chemistry of hydrogen is very diverse, and so also are the new hydrides that have been discovered, not only in terms of structure and composition but also in terms of their properties. This has led to a wide range of new possible applications of metal hydrides that permeate beyond solid-state hydrogen storage. A variety of new hydrides, proposed as battery materials, has been discovered. These can exploit properties as fast ion conductors or as conversion-type electrodes with much higher potential energy capacities, compared to materials currently used in commercial batteries. Solar heat storage is also an area of great potential for metal hydrides, in principle offering orders of magnitude better storage performance than phase change materials. Recently, hydrides with optical and superconducting properties have also been investigated. This Special Issue of Inorganics, entitled “Functional Materials Based on Metal Hydrides”, is dedicated to the full range of emerging electronic, photonic, and energy-related, inorganic, hydrogen-containing materials.

Siloxane-Based Polymers

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ISBN: 9783038971252 / 9783038971269 Year: Pages: 188 DOI: 10.3390/books978-3-03897-126-9 Language: eng
Publisher: MDPI - Multidisciplinary Digital Publishing Institute
Subject: Technology (General) --- Chemical Engineering
Added to DOAB on : 2019-08-28 11:21:27
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This book, a collection of 12 original contributions and 4 reviews, provides a selection of the most recent advances in the preparation, characterization, and applications of polymeric nanocomposites comprising nanoparticles. The concept of nanoparticle-reinforced polymers came about three decades ago, following the outstanding discovery of fullerenes and carbon nanotubes. One of the main ideas behind this approach is to improve the matrix mechanical performance. The nanoparticles exhibit higher specific surface area, surface energy, and density compared to microparticles and, hence, lower nanofiller concentrations are needed to attain properties comparable to, or even better than, those obtained by conventional microfiller loadings, which facilitates processing and minimizes the increase in composite weight. The addition of nanoparticles into different polymer matrices opens up an important research area in the field of composite materials. Moreover, many different types of inorganic nanoparticles, such as quantum dots, metal oxides, and ceramic and metallic nanoparticles, have been incorporated into polymers for their application in a wide range of fields, ranging from medicine to photovoltaics, packaging, and structural applications.

Keywords

fabrication --- multielectrode array (MEA) --- PDMS --- PDMS etching --- plateau-shaped electrode --- recessed electrode --- spinal cord signal recording --- underexposure --- organosilane --- quartz microcrystal --- encapsulant --- refractive index --- thermal conductivity --- poly(dimethylsiloxanes) --- surface modification --- nanosilica --- diethyl carbonate --- carbon content --- morphology --- coatings --- fillers --- hybrid hydrogel --- MAPOSS --- mechanical properties --- swelling --- drug release --- dental resin --- methacryl POSS --- shrinkage --- hardness --- scratch resistance --- ceramizable silicone rubber --- borate --- halloysite --- composite --- ceramizable mechanism --- polysiloxanes --- mortar --- basalt fibre --- roughness --- surface free energy --- poly(ethylene glycol) (PEG) --- hydrophilic --- non-releasable --- polydimethylsiloxane --- coatings --- cross-linking --- surface --- amphiphilic --- anti-bioadhesion --- hyperbranched poly(methylhydrosiloxanes) --- hydrolytic polycondensation --- 29Si-NMR --- topology of polysiloxane chains --- polyhedral oligomeric silsesquioxanes --- high molecular weight --- nanoparticles --- PDMS --- sugar templating process --- 3D porous network --- thermal stability --- TG-FTIR --- X-ray (Micro-CT) microtomography --- sol-gel --- hybrids --- chlorogenic acid --- bioactivity --- FTIR --- TG --- polysiloxanes --- theranostics --- drug delivery --- nanomedicine --- PDMS --- silicon --- ultraviolet (UV) curable coatings --- low surface energy materials --- fluorinated siloxane resin

Nanoparticle-Reinforced Polymers

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ISBN: 9783039212835 / 9783039212842 Year: Pages: 334 DOI: 10.3390/books978-3-03921-284-2 Language: eng
Publisher: MDPI - Multidisciplinary Digital Publishing Institute
Subject: Science (General) --- Chemistry (General)
Added to DOAB on : 2019-08-28 11:21:27
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This book, a collection of 12 original contributions and 4 reviews, provides a selection of the most recent advances in the preparation, characterization, and applications of polymeric nanocomposites comprising nanoparticles. The concept of nanoparticle-reinforced polymers came about three decades ago, following the outstanding discovery of fullerenes and carbon nanotubes. One of the main ideas behind this approach is to improve the matrix mechanical performance. The nanoparticles exhibit higher specific surface area, surface energy, and density compared to microparticles and, hence, lower nanofiller concentrations are needed to attain properties comparable to, or even better than, those obtained by conventional microfiller loadings, which facilitates processing and minimizes the increase in composite weight. The addition of nanoparticles into different polymer matrices opens up an important research area in the field of composite materials. Moreover, many different types of inorganic nanoparticles, such as quantum dots, metal oxides, and ceramic and metallic nanoparticles, have been incorporated into polymers for their application in a wide range of fields, ranging from medicine to photovoltaics, packaging, and structural applications.

Keywords

chemical and physical interface --- surface modification of silica --- latex compounding method --- silica/NR composite --- thermoresponsive hyperbranched polymer --- gold nanoparticles --- in-situ synthesis --- colorimetric sensor --- silver ions --- Ag nanoparticles --- catalysis --- composite membrane --- separation --- SiO2 microspheres --- inorganic nanotubes --- PHBV --- nanomaterials --- morphology --- crystallization kinetics --- nanocomposite --- conductive polymer --- solar cell --- graphene --- graphene oxide --- power-conversion efficiency --- electrode --- active layer --- interfacial layer --- layered structures --- polymer-matrix composites --- mechanical properties --- gas barrier properties --- N-isopropylacrylamide --- N-isopropylmethacrylamide --- ratiometric temperature sensing --- FRET --- chain topology --- selective adsorption --- polymer-NP interface --- organic light-emitting diodes (OLEDs) --- PFO/MEH-PPV hybrids --- SiO2/TiO2 nanocomposite --- optoelectronic properties --- fluorescent assay --- fluorescence resonance energy transfer --- conjugated polymer nanoparticles --- gold nanoparticles --- melamine --- polymers --- composites --- carbon nanoparticles --- nano-hybrids --- nanocomposites --- sol–gel --- in situ synthesis --- metal oxides --- reduced graphene oxide --- graphene-like WS2 --- bismaleimide --- mechanical properties --- carrier transport --- polypropylene nanocomposite --- molecular chain motion --- electrical breakdown --- electric energy storage --- thermoplastic nanocomposite --- polyethylene --- power cable insulation --- electrical property --- structure-property relationship --- hybrid hydrogels --- nanoparticles --- nanosheets --- clays --- polymers --- adhesion --- n/a

Breastfeeding and Human Lactation

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ISBN: 9783038979302 / 9783038979319 Year: Pages: 450 DOI: 10.3390/books978-3-03897-931-9 Language: eng
Publisher: MDPI - Multidisciplinary Digital Publishing Institute
Subject: Science (General) --- Biology --- Nutrition and Food Sciences
Added to DOAB on : 2019-06-26 08:44:06
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Human lactation has evolved to produce a milk composition that is uniquely-designed for the human infant. Not only does human milk optimize infant growth and development, it also provides protection from infection and disease. More recently, the importance of human milk and breastfeeding in the programming of infant health has risen to the fore. Anchoring of infant feeding in the developmental origins of health and disease has led to a resurgence of research focused in this area. Milk composition is highly variable both between and within mothers. Indeed the distinct maternal human milk signature, including its own microbiome, is influenced by environmental factors, such as diet, health, body composition and geographic residence. An understanding of these changes will lead to unravelling the adaptation of milk to the environment and its impact on the infant. In terms of the promotion of breastfeeding, health economics and epidemiology is instrumental in shaping public health policy and identifying barriers to breastfeeding. Further, basic research is imperative in order to design evidence-based interventions to improve both breastfeeding duration and women’s breastfeeding experience.

Keywords

human milk --- breastfed infants --- body composition --- anthropometrics --- milk intake --- bioelectrical impedance spectroscopy --- ultrasound skinfolds --- maternal factors --- infant --- feeding --- preterm --- premature --- bottle --- human milk --- breastfeeding --- nipple shield --- infant feeding --- choline --- phosphocholine --- glycerophosphocholine --- lactation --- human milk --- infants --- adequate intake --- dietary recommendations --- Canada --- Cambodia --- breast milk --- galactogogues --- mothers of preterm infants --- breastfeeding --- attitudes --- knowledge --- midwifery --- formula supplementation --- justification of supplementation --- maternal wellbeing --- maternal distress --- post-partum distress --- breastfeeding support --- paternal role --- partner support --- infant --- Ireland --- passive immunity --- antibodies --- lactation --- peptidomics --- prematurity --- proteolysis --- breast milk --- preterm infant --- enteral nutrition --- lipids --- omega-3 fatty acids --- omega-6 fatty acids --- Docosahexaenoic acid --- Arachidonic acid --- long-chain polyunsaturated fatty acids --- pregnancy --- breast milk --- lactation --- maternal diet --- n-6 and n-3 polyunsaturated fatty acid --- docosahexaenoic acid --- zinc deficiency --- plasma zinc --- lactating women --- zinc supplementation --- Quito --- Ecuador --- Andean region --- GDM --- lactation --- thyroid --- triiodothyronine --- thyroxine --- thyroid antibodies --- breastfeeding --- knowledge --- practice --- barriers --- social support --- professional support --- raw breast milk --- cytomegalovirus --- milk-acquired infections --- preterm infant --- adipokines --- adiponectin --- leptin --- breastfeeding --- infant --- body composition --- bioelectrical impedance spectroscopy --- ultrasound skinfolds --- human milk --- lactation --- human lactation --- expressing --- milk synthesis --- fat synthesis --- human milk --- milk metabolites --- lactation --- milk metabolomics --- human milk --- breastfeeding --- lactation --- lipids --- lipidomics --- mass spectrometry --- chromatography --- NMR spectroscopy --- human milk --- sex-specificity --- infant growth --- early life nutrition --- postnatal outcomes --- breastfeeding --- breast milk --- human milk --- colostrum --- IgA --- HGF --- TGF-? --- growth factors --- geographical location --- human milk --- potassium --- sodium --- ICP-OES --- ion selective electrode --- lactoferrin --- human milk --- infection --- immunity --- antisecretory factor --- human milk --- breast milk --- breastfeeding --- inflammation --- lactoferrin --- candida --- human milk --- milk cells --- immune cells --- antimicrobial proteins --- human milk --- breastfeeding --- ethnicity --- composition --- diet --- responsive feeding --- breastfeeding --- breastmilk --- babywearing --- co-sleeping --- mother–infant interaction --- feeding cues --- maternal responsiveness --- mother–infant physical contact --- proximal care --- fatty acids --- long-chain polyunsaturated fatty acids --- endocannabinoids --- infant health --- breast milk --- casein --- whey --- protein --- breastfeeding --- infant --- body composition --- bioelectrical impedance spectroscopy --- ultrasound skinfolds --- human milk --- calculated daily intakes --- lactation --- human milk --- metabolites --- microbiome --- mode of delivery --- caesarean section --- proton nuclear magnetic resonance --- breastfeeding --- human milk composition --- body composition --- maternal diet --- infant growth --- appetite regulation --- N-acylethanolamines --- OEA --- SEA --- PEA --- breastfeeding --- human milk composition --- obesity --- Breastfeeding --- human lactation --- lactation --- human milk --- breast milk --- milk composition

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