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  • 1
    UID:
    b3kat_BV046344453
    Format: 133 Seiten , Illustrationen, Diagramme , 21 cm x 29.7 cm, 425 g
    ISBN: 9783831647279 , 3831647275
    Series Statement: acatech DISKUSSION
    Additional Edition: Erscheint auch als Online-Ausgabe https://www.acatech.de/publikation/materialforschung-impulsgeber-natur/
    Language: German
    Subjects: Engineering
    RVK:
    Keywords: Werkstoffforschung ; Intelligenter Werkstoff ; Bionik ; Biomaterial ; Biotechnologie ; Nachhaltigkeit ; Aufsatzsammlung
    URL: Volltext  (kostenfrei)
    Author information: Fratzl, Peter 1958-
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  • 2
    UID:
    kobvindex_KHB0030787
    Format: 134 Seiten : zahlreiche Illustrationen, graphische Darstellungen ; 30 cm , 21 cm x 29.7 cm, 425 g
    ISBN: 978-3-8316-4727-9 , 3-8316-4727-5
    Series Statement: acatech DISKUSSION
    Language: German
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  • 3
    UID:
    gbv_168590145X
    Format: [10], 135 Seiten , Illustrationen, Diagramme
    Note: Dissertation Universität Potsdam 2017
    Language: German
    Keywords: Hochschulschrift
    Author information: Böker, Alexander 1973-
    Author information: Schmidt, Martin 19XX-
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  • 4
    UID:
    edochu_18452_24232
    Format: 1 Online-Ressource (7 Seiten)
    Content: Collagen mimetic peptides (CMPs), which imitate various structural or functional features of natural collagen, constitute advanced models illuminating the folding aspects of the collagen triple helix (CTH) motif. In this study, the CMPs of repeating Gly–Pro–Pro (GPP) triplets are tethered to an organic scaffold based on a tris(2-aminoethyl) amine (TREN) derivative (TREN-(suc-OH)3). These three templated peptide strands are further expanded via native chemical ligation to increase the number of GPP triplets and lead to a TREN-(suc-GPPGPPG(Ψ)SPGPP-CPP[GPP]4)3 construct. The incorporation of an ester switch segment, G(Ψ)S, as a positional O-acyl isopeptide (DEPSI) defect into the peptide strands allows the pH-controlled acceleration of CTH formation. The strand assembly process is monitored by circular dichroism (CD) spectroscopy. The results of pH jump experiments and thermal denaturation studies provide new insights into the contributions of structural DEPSI defects to the template-guided self-assembly of the CTH motif. While the organic scaffold drives the CTH formation, the switch defects act as temporary opponents and slow down the folding. CD spectroscopy data confirm that the switch defects contribute to the formation of a more stable CTH motif by enhancing the structural dynamics at the early stage of the folding process.
    Content: Peer Reviewed
    In: Weinheim : Wiley-VCH, 21,7
    Language: English
    URL: Volltext  (kostenfrei)
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  • 5
    UID:
    almahu_9949206761902882
    Format: 1 online resource (XXX, 781 p.)
    ISBN: 3-11-056963-9
    Content: Externally tunable properties allow for new applications of magnetic hybrid materials containing magnetic micro- and nanoparticles in sensors and actuators in technical and medical applications. By means of easy to generate and control magnetic fields, changes of the internal particle arrangements and the macroscopic properties can be achieved. This monograph delivers the latest insights into multi-scale modelling, experimental characterization, manufacturing and application of those magnetic hybrid materials.
    Note: Description based upon print version of record. , Frontmatter -- , Preface -- , Contents -- , List of contributing authors -- , 1 Magneto-mechanical coupling of single domain particles in soft matter systems -- , 2 Hybrid magnetic elastomers prepared on the basis of a SIEL-grade resin and their magnetic and rheological properties -- , 3 Magnetic hybrid materials in liquid crystals -- , 4 Synthesis of magnetic ferrogels: a tool-box approach for finely tuned magnetic- and temperature-dependent properties -- , 5 Studies about the design of magnetic bionanocomposite -- , 6 Hybrid nanomaterials of biomolecule corona coated magnetic nanoparticles and their interaction with biological systems -- , 7 Functionalization of biopolymer fibers with magnetic nanoparticles -- , 8 Multifunctionality by dispersion of magnetic nanoparticles in anisotropic matrices -- , 9 Magnetic measurement methods to probe nanoparticle-matrix interactions -- , 10 Magnetic characterization of magnetoactive elastomers containing magnetic hard particles using first-order reversal curve analysis -- , 11 Microscopic understanding of particlematrix interaction in magnetic hybrid materials by element-specific spectroscopy -- , 12 Magnetic particle imaging of particle dynamics in complex matrix systems -- , 13 Rotational dynamics of magnetic nanoparticles in different matrix systems -- , 14 Dielectric behaviour of magnetic hybrid materials -- , 15 Magneto-mechanical properties of elastic hybrid composites -- , 16 Magnetic torque-driven deformation of Ni-nanorod/hydrogel nanocomposites -- , 17 The microstructure of magnetorheological materials characterized by means of computed X-ray microtomography -- , 18 Magnetic field controlled behavior of magnetic gels studied using particle-based simulations -- , 19 Magnetostriction in elastomers with mixtures of magnetically hard and soft microparticles: effects of nonlinear magnetization and matrix rigidity -- , 20 Internal structures and mechanical properties of magnetic gels and suspensions -- , 21 Symmetry aspects in the macroscopic dynamics of magnetorheological gels and general liquid crystalline magnetic elastomers -- , 22 Modeling and theoretical description of magnetic hybrid materials-bridging from meso- to macro-scales -- , 23 Structure and rheology of soft hybrid systems of magnetic nanoparticles in liquid-crystalline matrices: results from particle-resolved computer simulations -- , 24 Multiscale modeling and simulation of magneto-active elastomers based on experimental data -- , 25 Multiphysics modeling of porous ferrogels at finite strains -- , 26 Magnetoactive elastomers for magnetically tunable vibrating sensor systems -- , 27 Actuators based on a controlled particlematrix interaction in magnetic hybrid materials for applications in locomotion and manipulation systems -- , 28 Magnetic hybrid materials interact with biological matrices -- , 29 SPIONs and magnetic hybrid materials: Synthesis, toxicology and biomedical applications -- , Index , In English.
    Additional Edition: ISBN 3-11-056877-2
    Language: English
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  • 6
    UID:
    kobvindex_HPB1280944101
    Format: 1 online resource (XXX, 781 p.)
    ISBN: 9783110569636 , 3110569639
    Content: Externally tunable properties allow for new applications of magnetic hybrid materials containing magnetic micro- and nanoparticles in sensors and actuators in technical and medical applications. By means of easy to generate and control magnetic fields, changes of the internal particle arrangements and the macroscopic properties can be achieved. This monograph delivers the latest insights into multi-scale modelling, experimental characterization, manufacturing and application of those magnetic hybrid materials.
    Note: Frontmatter -- , Preface -- , Contents -- , List of contributing authors -- , 1 Magneto-mechanical coupling of single domain particles in soft matter systems -- , 2 Hybrid magnetic elastomers prepared on the basis of a SIEL-grade resin and their magnetic and rheological properties -- , 3 Magnetic hybrid materials in liquid crystals -- , 4 Synthesis of magnetic ferrogels: a tool-box approach for finely tuned magnetic- and temperature-dependent properties -- , 5 Studies about the design of magnetic bionanocomposite -- , 6 Hybrid nanomaterials of biomolecule corona coated magnetic nanoparticles and their interaction with biological systems -- , 7 Functionalization of biopolymer fibers with magnetic nanoparticles -- , 8 Multifunctionality by dispersion of magnetic nanoparticles in anisotropic matrices -- , 9 Magnetic measurement methods to probe nanoparticle-matrix interactions -- , 10 Magnetic characterization of magnetoactive elastomers containing magnetic hard particles using first-order reversal curve analysis -- , 11 Microscopic understanding of particlematrix interaction in magnetic hybrid materials by element-specific spectroscopy -- , 12 Magnetic particle imaging of particle dynamics in complex matrix systems -- , 13 Rotational dynamics of magnetic nanoparticles in different matrix systems -- , 14 Dielectric behaviour of magnetic hybrid materials -- , 15 Magneto-mechanical properties of elastic hybrid composites -- , 16 Magnetic torque-driven deformation of Ni-nanorod/hydrogel nanocomposites -- , 17 The microstructure of magnetorheological materials characterized by means of computed X-ray microtomography -- , 18 Magnetic field controlled behavior of magnetic gels studied using particle-based simulations -- , 19 Magnetostriction in elastomers with mixtures of magnetically hard and soft microparticles: effects of nonlinear magnetization and matrix rigidity -- , 20 Internal structures and mechanical properties of magnetic gels and suspensions -- , 21 Symmetry aspects in the macroscopic dynamics of magnetorheological gels and general liquid crystalline magnetic elastomers -- , 22 Modeling and theoretical description of magnetic hybrid materials--bridging from meso- to macro-scales -- , 23 Structure and rheology of soft hybrid systems of magnetic nanoparticles in liquid-crystalline matrices: results from particle-resolved computer simulations -- , 24 Multiscale modeling and simulation of magneto-active elastomers based on experimental data -- , 25 Multiphysics modeling of porous ferrogels at finite strains -- , 26 Magnetoactive elastomers for magnetically tunable vibrating sensor systems -- , 27 Actuators based on a controlled particlematrix interaction in magnetic hybrid materials for applications in locomotion and manipulation systems -- , 28 Magnetic hybrid materials interact with biological matrices -- , 29 SPIONs and magnetic hybrid materials: Synthesis, toxicology and biomedical applications -- , Index , In English.
    Additional Edition: 9783110568837
    Additional Edition: 9783110568776
    Language: English
    Keywords: Electronic books.
    URL: Cover
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  • 7
    UID:
    edoccha_9960045441502883
    Format: 1 online resource (XXX, 781 p.)
    ISBN: 3-11-056963-9
    Content: Externally tunable properties allow for new applications of magnetic hybrid materials containing magnetic micro- and nanoparticles in sensors and actuators in technical and medical applications. By means of easy to generate and control magnetic fields, changes of the internal particle arrangements and the macroscopic properties can be achieved. This monograph delivers the latest insights into multi-scale modelling, experimental characterization, manufacturing and application of those magnetic hybrid materials.
    Note: Description based upon print version of record. , Frontmatter -- , Preface -- , Contents -- , List of contributing authors -- , 1 Magneto-mechanical coupling of single domain particles in soft matter systems -- , 2 Hybrid magnetic elastomers prepared on the basis of a SIEL-grade resin and their magnetic and rheological properties -- , 3 Magnetic hybrid materials in liquid crystals -- , 4 Synthesis of magnetic ferrogels: a tool-box approach for finely tuned magnetic- and temperature-dependent properties -- , 5 Studies about the design of magnetic bionanocomposite -- , 6 Hybrid nanomaterials of biomolecule corona coated magnetic nanoparticles and their interaction with biological systems -- , 7 Functionalization of biopolymer fibers with magnetic nanoparticles -- , 8 Multifunctionality by dispersion of magnetic nanoparticles in anisotropic matrices -- , 9 Magnetic measurement methods to probe nanoparticle-matrix interactions -- , 10 Magnetic characterization of magnetoactive elastomers containing magnetic hard particles using first-order reversal curve analysis -- , 11 Microscopic understanding of particlematrix interaction in magnetic hybrid materials by element-specific spectroscopy -- , 12 Magnetic particle imaging of particle dynamics in complex matrix systems -- , 13 Rotational dynamics of magnetic nanoparticles in different matrix systems -- , 14 Dielectric behaviour of magnetic hybrid materials -- , 15 Magneto-mechanical properties of elastic hybrid composites -- , 16 Magnetic torque-driven deformation of Ni-nanorod/hydrogel nanocomposites -- , 17 The microstructure of magnetorheological materials characterized by means of computed X-ray microtomography -- , 18 Magnetic field controlled behavior of magnetic gels studied using particle-based simulations -- , 19 Magnetostriction in elastomers with mixtures of magnetically hard and soft microparticles: effects of nonlinear magnetization and matrix rigidity -- , 20 Internal structures and mechanical properties of magnetic gels and suspensions -- , 21 Symmetry aspects in the macroscopic dynamics of magnetorheological gels and general liquid crystalline magnetic elastomers -- , 22 Modeling and theoretical description of magnetic hybrid materials-bridging from meso- to macro-scales -- , 23 Structure and rheology of soft hybrid systems of magnetic nanoparticles in liquid-crystalline matrices: results from particle-resolved computer simulations -- , 24 Multiscale modeling and simulation of magneto-active elastomers based on experimental data -- , 25 Multiphysics modeling of porous ferrogels at finite strains -- , 26 Magnetoactive elastomers for magnetically tunable vibrating sensor systems -- , 27 Actuators based on a controlled particlematrix interaction in magnetic hybrid materials for applications in locomotion and manipulation systems -- , 28 Magnetic hybrid materials interact with biological matrices -- , 29 SPIONs and magnetic hybrid materials: Synthesis, toxicology and biomedical applications -- , Index , In English.
    Additional Edition: ISBN 3-11-056877-2
    Language: English
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  • 8
    UID:
    edocfu_9960045441502883
    Format: 1 online resource (XXX, 781 p.)
    ISBN: 3-11-056963-9
    Content: Externally tunable properties allow for new applications of magnetic hybrid materials containing magnetic micro- and nanoparticles in sensors and actuators in technical and medical applications. By means of easy to generate and control magnetic fields, changes of the internal particle arrangements and the macroscopic properties can be achieved. This monograph delivers the latest insights into multi-scale modelling, experimental characterization, manufacturing and application of those magnetic hybrid materials.
    Note: Description based upon print version of record. , Frontmatter -- , Preface -- , Contents -- , List of contributing authors -- , 1 Magneto-mechanical coupling of single domain particles in soft matter systems -- , 2 Hybrid magnetic elastomers prepared on the basis of a SIEL-grade resin and their magnetic and rheological properties -- , 3 Magnetic hybrid materials in liquid crystals -- , 4 Synthesis of magnetic ferrogels: a tool-box approach for finely tuned magnetic- and temperature-dependent properties -- , 5 Studies about the design of magnetic bionanocomposite -- , 6 Hybrid nanomaterials of biomolecule corona coated magnetic nanoparticles and their interaction with biological systems -- , 7 Functionalization of biopolymer fibers with magnetic nanoparticles -- , 8 Multifunctionality by dispersion of magnetic nanoparticles in anisotropic matrices -- , 9 Magnetic measurement methods to probe nanoparticle-matrix interactions -- , 10 Magnetic characterization of magnetoactive elastomers containing magnetic hard particles using first-order reversal curve analysis -- , 11 Microscopic understanding of particlematrix interaction in magnetic hybrid materials by element-specific spectroscopy -- , 12 Magnetic particle imaging of particle dynamics in complex matrix systems -- , 13 Rotational dynamics of magnetic nanoparticles in different matrix systems -- , 14 Dielectric behaviour of magnetic hybrid materials -- , 15 Magneto-mechanical properties of elastic hybrid composites -- , 16 Magnetic torque-driven deformation of Ni-nanorod/hydrogel nanocomposites -- , 17 The microstructure of magnetorheological materials characterized by means of computed X-ray microtomography -- , 18 Magnetic field controlled behavior of magnetic gels studied using particle-based simulations -- , 19 Magnetostriction in elastomers with mixtures of magnetically hard and soft microparticles: effects of nonlinear magnetization and matrix rigidity -- , 20 Internal structures and mechanical properties of magnetic gels and suspensions -- , 21 Symmetry aspects in the macroscopic dynamics of magnetorheological gels and general liquid crystalline magnetic elastomers -- , 22 Modeling and theoretical description of magnetic hybrid materials-bridging from meso- to macro-scales -- , 23 Structure and rheology of soft hybrid systems of magnetic nanoparticles in liquid-crystalline matrices: results from particle-resolved computer simulations -- , 24 Multiscale modeling and simulation of magneto-active elastomers based on experimental data -- , 25 Multiphysics modeling of porous ferrogels at finite strains -- , 26 Magnetoactive elastomers for magnetically tunable vibrating sensor systems -- , 27 Actuators based on a controlled particlematrix interaction in magnetic hybrid materials for applications in locomotion and manipulation systems -- , 28 Magnetic hybrid materials interact with biological matrices -- , 29 SPIONs and magnetic hybrid materials: Synthesis, toxicology and biomedical applications -- , Index , In English.
    Additional Edition: ISBN 3-11-056877-2
    Language: English
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  • 9
    UID:
    almafu_BV012307674
    Format: 133 S. : Ill., graph. Darst.
    Note: Regensburg, Univ., Diss. T. Scheibel, 1998 , Regensburg, Univ., Diss., 1998
    Language: German
    Subjects: Biology
    RVK:
    Keywords: Saccharomyces cerevisiae ; Hitzeschock-Proteine ; Hochschulschrift
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  • 10
    UID:
    kobvindex_ZLB34369612
    Format: 138 Seiten , Illustrationen , 21 cm
    ISBN: 9783831647279
    Series Statement: Empfehlungen des Nationalen MINT-Forums
    Content: Materialien und Werkstoffe spielen in fast allen Technikbereichen und Produkten eine entscheidende Rolle. Demografische Entwicklung, knapper werdende Ressourcen sowie Klimawandel erfordern eine nachhaltigere Wirtschaftsweise - mit den sich ändernden Anforderungen steigt auch die zu beherrschende Komplexität in den Material- und Werkstoffwissenschaften. Besonders die Biologisierung der Materialforschung - das heißt, sich von der Natur inspirieren zu lassen, wie biologische Ressourcen, Prinzipien und Verfahren genutzt werden können, birgt große Innovationspotenziale für den Forschungs- und Wirtschaftsstandort Deutschland. Die acatech Diskussion zeigt anhand von Beispielen die Vielfalt und große Bandbreite an möglichen Struktur-, Funktions- und Syntheseprinzipien auf, mit denen die Natur die Materialforschung bereits inspiriert und in Zukunft noch weiter voranbringen wird. In verschiedenen Anwendungsfeldern werden neue materialbasierte Innovationen an der Schnittstelle von Biologie und Technik exemplarisch dargestellt, die Gesellschaft und Wirtschaft gleichermaßen zugutekommen.
    Note: Deutsch
    Language: German
    Author information: Fratzl, Peter
    Author information: Möller, Martin
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