Suchergebnisse - "Nanostructures [MeSH]"
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1
Autoren: et al.
Quelle: Proceedings of the National Academy of Sciences of the United States of America. 122(36)
Schlagwörter: 3403 Macromolecular and Materials Chemistry (for-2020), 40 Engineering (for-2020), 34 Chemical Sciences (for-2020), Bioengineering (rcdc), Heart Disease (rcdc), Cardiovascular (rcdc), Stem Cell Research (rcdc), Biotechnology (rcdc), 7 Affordable and Clean Energy (sdg), Myocytes, Cardiac (mesh), Animals (mesh), Nanostructures (mesh), Peptides (mesh), Energy Transfer (mesh), Biocompatible Materials (mesh), Light (mesh), photostimulation, cardiac tissue engineering, self-assembly, peptide nanostructures, biomaterials, Myocytes, Cardiac (mesh), Animals (mesh), Peptides (mesh), Biocompatible Materials (mesh), Energy Transfer (mesh), Light (mesh), Nanostructures (mesh), biomaterials, cardiac tissue engineering, peptide nanostructures, photostimulation, self-assembly, Myocytes, Cardiac (mesh), Animals (mesh), Nanostructures (mesh), Peptides (mesh), Energy Transfer (mesh), Biocompatible Materials (mesh), Light (mesh)
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2
Autoren: et al.
Quelle: Macromolecular Rapid Communications. 46(1)
Schlagwörter: 3403 Macromolecular and Materials Chemistry (for-2020), 34 Chemical Sciences (for-2020), Bioengineering (rcdc), Cryoelectron Microscopy (mesh), Nanostructures (mesh), Polymers (mesh), Molecular Dynamics Simulation (mesh), Microscopy, Electron, Transmission (mesh), Particle Size (mesh), cryogenic transmission electron microscopy, image simulation, molecular dynamics simulation, peptoid, single particle analysis, Polymers (mesh), Cryoelectron Microscopy (mesh), Microscopy, Electron, Transmission (mesh), Particle Size (mesh), Nanostructures (mesh), Molecular Dynamics Simulation (mesh), cryogenic transmission electron microscopy, image simulation, molecular dynamics simulation, peptoid, single particle analysis, Cryoelectron Microscopy (mesh), Nanostructures (mesh), Polymers (mesh), Molecular Dynamics Simulation (mesh), Microscopy, Electron, Transmission (mesh), Particle Size (mesh), MSD-General (c-lbnl-label), MSD-Soft Matter EM (c-lbnl-label), 03 Chemical Sciences (for), 09 Engineering (for), Polymers (science-metrix), 34 Chemical sciences (for-2020), 40 Engineering (for-2020)
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3
Autoren: et al.
Quelle: Nature. 627(8005)
Schlagwörter: 3101 Biochemistry and Cell Biology (for-2020), 40 Engineering (for-2020), 31 Biological Sciences (for-2020), Crystallography, X-Ray (mesh), Nanostructures (mesh), Proteins (mesh), Microscopy, Electron (mesh), Reproducibility of Results (mesh), Proteins (mesh), Microscopy, Electron (mesh), Crystallography, X-Ray (mesh), Reproducibility of Results (mesh), Nanostructures (mesh), Crystallography, X-Ray (mesh), Nanostructures (mesh), Proteins (mesh), Microscopy, Electron (mesh), Reproducibility of Results (mesh), General Science & Technology (science-metrix)
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4
Autoren: et al.
Quelle: Advanced Materials. 36(21)
Schlagwörter: 3403 Macromolecular and Materials Chemistry (for-2020), 40 Engineering (for-2020), 34 Chemical Sciences (for-2020), Biotechnology (rcdc), Heart Disease (rcdc), Cardiovascular (rcdc), Cardiovascular (hrcs-hc), Myocytes, Cardiac (mesh), Peptides (mesh), Anisotropy (mesh), Animals (mesh), Nanostructures (mesh), Thiophenes (mesh), Surface Properties (mesh), cardiac tissue engineering, optoelectronics, peptides, self-assembly, tissue anisotropy, Myocytes, Cardiac (mesh), Animals (mesh), Thiophenes (mesh), Peptides (mesh), Anisotropy (mesh), Surface Properties (mesh), Nanostructures (mesh), cardiac tissue engineering, optoelectronics, peptides, self‐assembly, tissue anisotropy, Myocytes, Cardiac (mesh), Peptides (mesh), Anisotropy (mesh), Animals (mesh), Nanostructures (mesh), Thiophenes (mesh), Surface Properties (mesh), 02 Physical Sciences (for), 03 Chemical Sciences (for), 09 Engineering (for), Nanoscience & Nanotechnology (science-metrix), 34 Chemical sciences (for-2020), 40 Engineering (for-2020), 51 Physical sciences (for-2020)
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5
Autoren: et al.
Quelle: Lab on a Chip. 23(15)
Schlagwörter: 3401 Analytical Chemistry (for-2020), 34 Chemical Sciences (for-2020), 3406 Physical Chemistry (for-2020), Biotechnology (rcdc), Bioengineering (rcdc), Mass Spectrometry (mesh), Glycoside Hydrolases (mesh), Nanostructures (mesh), Lab-On-A-Chip Devices (mesh), Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization (mesh), Glycoside Hydrolases (mesh), Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization (mesh), Nanostructures (mesh), Mass Spectrometry (mesh), Lab-On-A-Chip Devices (mesh), Mass Spectrometry (mesh), Glycoside Hydrolases (mesh), Nanostructures (mesh), Lab-On-A-Chip Devices (mesh), Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization (mesh), 03 Chemical Sciences (for), 09 Engineering (for), Analytical Chemistry (science-metrix), 34 Chemical sciences (for-2020), 40 Engineering (for-2020)
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6
Autoren: et al.
Quelle: Nature. 611(7936)
Schlagwörter: 4605 Data Management and Data Science (for-2020), 46 Information and Computing Sciences (for-2020), 31 Biological Sciences (for-2020), 3106 Industrial Biotechnology (for-2020), Bioengineering (rcdc), 4.1 Discovery and preclinical testing of markers and technologies (hrcs-rac), Humans (mesh), Biosensing Techniques (mesh), Electric Conductivity (mesh), Endocrine Disruptors (mesh), Escherichia coli (mesh), Nanostructures (mesh), Time Factors (mesh), Environmental Pollutants (mesh), Synthetic Biology (mesh), Electron Transport (mesh), Thiosulfates (mesh), Water Pollutants (mesh), Humans (mesh), Escherichia coli (mesh), Thiosulfates (mesh), Environmental Pollutants (mesh), Water Pollutants (mesh), Biosensing Techniques (mesh), Electron Transport (mesh), Electric Conductivity (mesh), Time Factors (mesh), Nanostructures (mesh), Endocrine Disruptors (mesh), Synthetic Biology (mesh), Humans (mesh), Biosensing Techniques (mesh), Electric Conductivity (mesh), Endocrine Disruptors (mesh), Escherichia coli (mesh), Nanostructures (mesh), Time Factors (mesh), Environmental Pollutants (mesh), Synthetic Biology (mesh), Electron Transport (mesh), Thiosulfates (mesh), Water Pollutants (mesh), General Science & Technology (science-metrix)
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7
Autoren: et al.
Quelle: Environ Sci Pollut Res Int
Hasan, G G, Laouini, S E, Osman, A I, Bouafia, A, Althamthami, M, Meneceur, S, Kir, I, Mohammed, H, Lumbers, B & Rooney, D W 2024, 'Nanostructured Mn@NiO composite for addressing multi-pollutant challenges in petroleum-contaminated water', Environmental Science and Pollution Research. https://doi.org/10.1007/s11356-024-34012-3Schlagwörter: 02 engineering and technology, 01 natural sciences, 7. Clean energy, Catalysis, Nanocomposites, Water Purification, 12. Responsible consumption, Nickel, Metals, Heavy, name=SDG 13 - Climate Action, Manganese, name=SDG 15 - Life on Land, Degradation mechanism, Manganese/chemistry [MeSH], Petroleum [MeSH], Nanocomposite, Nickel/chemistry [MeSH], Nanocomposites/chemistry [MeSH], Organic contaminants, Petroleum water treatment, Catalysis [MeSH], Green synthesized, Water Purification/methods [MeSH], Nanostructures [MeSH], Research Article, Water Pollutants, Chemical/chemistry [MeSH], Metals, Heavy/chemistry [MeSH], Pharmaceutical product, 6. Clean water, Nanostructures, 0104 chemical sciences, Petroleum, 13. Climate action, 0210 nano-technology, Water Pollutants, Chemical
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8
Autoren: et al.
Quelle: Analytical Biochemistry. 662
Schlagwörter: 3401 Analytical Chemistry (for-2020), 34 Chemical Sciences (for-2020), Biotechnology (rcdc), Gas Chromatography-Mass Spectrometry (mesh), Mass Spectrometry (mesh), Nanostructures (mesh), Glucose (mesh), Ethanol (mesh), Ethanol (mesh), Glucose (mesh), Nanostructures (mesh), Mass Spectrometry (mesh), Gas Chromatography-Mass Spectrometry (mesh), Gas Chromatography-Mass Spectrometry (mesh), Mass Spectrometry (mesh), Nanostructures (mesh), Glucose (mesh), Ethanol (mesh), 0301 Analytical Chemistry (for), 0399 Other Chemical Sciences (for), 0601 Biochemistry and Cell Biology (for), Biochemistry & Molecular Biology (science-metrix), 3101 Biochemistry and cell biology (for-2020), 3401 Analytical chemistry (for-2020)
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9
Autoren: et al.
Quelle: ACS Chemical Biology. 9(9)
Schlagwörter: 3401 Analytical Chemistry (for-2020), 31 Biological Sciences (for-2020), 34 Chemical Sciences (for-2020), Biotechnology (rcdc), Generic health relevance (hrcs-hc), Biomass (mesh), Biotechnology (mesh), Cellulases (mesh), Chromatography, High Pressure Liquid (mesh), DNA (mesh), Glucans (mesh), High-Throughput Screening Assays (mesh), Hydrogen-Ion Concentration (mesh), Hydrolysis (mesh), Imidazoles (mesh), Ionic Liquids (mesh), Mass Spectrometry (mesh), Nanostructures (mesh), Phylogeny (mesh), Substrate Specificity (mesh), Temperature (mesh), Workflow (mesh), Imidazoles (mesh), Glucans (mesh), Cellulases (mesh), DNA (mesh), Chromatography, High Pressure Liquid (mesh), Biotechnology (mesh), Biomass (mesh), Temperature (mesh), Phylogeny (mesh), Substrate Specificity (mesh), Hydrolysis (mesh), Hydrogen-Ion Concentration (mesh), Nanostructures (mesh), Mass Spectrometry (mesh), Ionic Liquids (mesh), High-Throughput Screening Assays (mesh), Workflow (mesh), Biomass (mesh), Biotechnology (mesh), Cellulases (mesh), Chromatography, High Pressure Liquid (mesh), DNA (mesh), Glucans (mesh), High-Throughput Screening Assays (mesh), Hydrogen-Ion Concentration (mesh), Hydrolysis (mesh), Imidazoles (mesh), Ionic Liquids (mesh), Mass Spectrometry (mesh), Nanostructures (mesh), Phylogeny (mesh), Substrate Specificity (mesh), Temperature (mesh), Workflow (mesh), 03 Chemical Sciences (for), 06 Biological Sciences (for), Organic Chemistry (science-metrix), 31 Biological sciences (for-2020), 34 Chemical sciences (for-2020)
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10
Autoren: et al.
Quelle: Nucleic Acids Research. 50(3)
Schlagwörter: 31 Biological Sciences (for-2020), Gene Therapy (rcdc), Bioengineering (rcdc), Biotechnology (rcdc), Nanotechnology (rcdc), Genetics (rcdc), 1.1 Normal biological development and functioning (hrcs-rac), Active Transport, Cell Nucleus (mesh), CRISPR-Cas Systems (mesh), DNA (mesh), Gene Editing (mesh), Gene Transfer Techniques (mesh), Genome (mesh), Humans (mesh), Nanostructures (mesh), Humans (mesh), DNA (mesh), Gene Transfer Techniques (mesh), Active Transport, Cell Nucleus (mesh), Genome (mesh), Nanostructures (mesh), CRISPR-Cas Systems (mesh), Gene Editing (mesh), Active Transport, Cell Nucleus (mesh), CRISPR-Cas Systems (mesh), DNA (mesh), Gene Editing (mesh), Gene Transfer Techniques (mesh), Genome (mesh), Humans (mesh), Nanostructures (mesh), 05 Environmental Sciences (for), 06 Biological Sciences (for), 08 Information and Computing Sciences (for), Developmental Biology (science-metrix), 31 Biological sciences (for-2020), 34 Chemical sciences (for-2020), 41 Environmental sciences (for-2020)
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11
Autoren: et al.
Quelle: Nature Communications. 13(1)
Schlagwörter: 3403 Macromolecular and Materials Chemistry (for-2020), 34 Chemical Sciences (for-2020), 40 Engineering (for-2020), 51 Physical Sciences (for-2020), 4016 Materials Engineering (for-2020), 4018 Nanotechnology (for-2020), Bioengineering (rcdc), Nanotechnology (rcdc), Cadmium (mesh), Crystallization (mesh), Microscopy, Electron, Transmission (mesh), Nanoparticles (mesh), Nanostructures (mesh), Cadmium (mesh), Microscopy, Electron, Transmission (mesh), Crystallization (mesh), Nanostructures (mesh), Nanoparticles (mesh), Cadmium (mesh), Crystallization (mesh), Microscopy, Electron, Transmission (mesh), Nanoparticles (mesh), Nanostructures (mesh), MSD-General (c-lbnl-label), MSD-In-situ TEM (c-lbnl-label)
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12
Autoren: et al.
Quelle: Translational Vision Science & Technology. 10(12)
Schlagwörter: 3206 Medical Biotechnology (for-2020), 32 Biomedical and Clinical Sciences (for-2020), 3212 Ophthalmology and Optometry (for-2020), Nanotechnology (rcdc), Eye Disease and Disorders of Vision (rcdc), Wound Healing and Care (rcdc), Bioengineering (rcdc), 2.1 Biological and endogenous factors (hrcs-rac), Animals (mesh), Ferric Compounds (mesh), Fibroblasts (mesh), Myofibroblasts (mesh), Nanostructures (mesh), Oxides (mesh), Rabbits (mesh), engineered nanomaterial, KFM transformation, keratocyte, corneal stroma, corneal wound healing, nanotoxicity, Fibroblasts (mesh), Animals (mesh), Rabbits (mesh), Oxides (mesh), Ferric Compounds (mesh), Nanostructures (mesh), Myofibroblasts (mesh), Animals (mesh), Ferric Compounds (mesh), Fibroblasts (mesh), Myofibroblasts (mesh), Nanostructures (mesh), Oxides (mesh), Rabbits (mesh), 0903 Biomedical Engineering (for), 1113 Opthalmology and Optometry (for), 3212 Ophthalmology and optometry (for-2020)
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13
Autoren: et al.
Quelle: Molecular Imaging and Biology. 22(3)
Schlagwörter: 3206 Medical Biotechnology (for-2020), 32 Biomedical and Clinical Sciences (for-2020), Biomedical Imaging (rcdc), Bioengineering (rcdc), Nanotechnology (rcdc), Animals (mesh), Cell Line (mesh), Disease Models, Animal (mesh), Emulsions (mesh), Female (mesh), Ferric Compounds (mesh), Fluorine-19 Magnetic Resonance Imaging (mesh), Fluorocarbons (mesh), Inflammation (mesh), Macrophages (mesh), Magnetic Resonance Imaging (mesh), Mice (mesh), Mice, Inbred C57BL (mesh), Nanostructures (mesh), Polymers (mesh), MRI, Fluorine-19, Iron, Chelate, Perfluorocarbon, Nanoemulsion, Macrophage, Inflammation, In vivo, Cell Line (mesh), Macrophages (mesh), Animals (mesh), Mice, Inbred C57BL (mesh), Mice (mesh), Disease Models, Animal (mesh), Inflammation (mesh), Ferric Compounds (mesh), Fluorocarbons (mesh), Polymers (mesh), Emulsions (mesh), Magnetic Resonance Imaging (mesh), Nanostructures (mesh), Female (mesh), Fluorine-19 Magnetic Resonance Imaging (mesh), Chelate, Fluorine-19, In vivo, Inflammation, Iron, MRI, Macrophage, Nanoemulsion, Perfluorocarbon, Animals (mesh), Cell Line (mesh), Disease Models, Animal (mesh), Emulsions (mesh), Female (mesh), Ferric Compounds (mesh), Fluorine-19 Magnetic Resonance Imaging (mesh), Fluorocarbons (mesh), Inflammation (mesh), Macrophages (mesh), Magnetic Resonance Imaging (mesh), Mice (mesh), Mice, Inbred C57BL (mesh), Nanostructures (mesh), Polymers (mesh), 0606 Physiology (for), 1103 Clinical Sciences (for), Nuclear Medicine & Medical Imaging (science-metrix), 3202 Clinical sciences (for-2020)
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14
Autoren: et al.
Quelle: Analytical and Bioanalytical Chemistry. 412(11)
Schlagwörter: 3404 Medicinal and Biomolecular Chemistry (for-2020), 34 Chemical Sciences (for-2020), Genetics (rcdc), Biotechnology (rcdc), Circulating MicroRNA (mesh), Cobalt (mesh), Humans (mesh), MicroRNAs (mesh), Nanostructures (mesh), Nucleic Acid Amplification Techniques (mesh), Oxides (mesh), Exponential amplification reaction, EXPAR, Isothermal amplification, CoOOH nanoflakes, MicroRNA, Detection, Serum, Cancer, Humans (mesh), Oxides (mesh), Cobalt (mesh), MicroRNAs (mesh), Nucleic Acid Amplification Techniques (mesh), Nanostructures (mesh), Circulating MicroRNA (mesh), Cancer, CoOOH nanoflakes, Detection, EXPAR, Exponential amplification reaction, Isothermal amplification, MicroRNA, Serum, Circulating MicroRNA (mesh), Cobalt (mesh), Humans (mesh), MicroRNAs (mesh), Nanostructures (mesh), Nucleic Acid Amplification Techniques (mesh), Oxides (mesh), 03 Chemical Sciences (for), 06 Biological Sciences (for), 09 Engineering (for), Analytical Chemistry (science-metrix), 31 Biological sciences (for-2020), 34 Chemical sciences (for-2020), 40 Engineering (for-2020)
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15
Autoren: et al.
Quelle: Soft Matter. 15(23)
Schlagwörter: 3403 Macromolecular and Materials Chemistry (for-2020), 34 Chemical Sciences (for-2020), Glycine (mesh), Microscopy, Electron (mesh), Nanostructures (mesh), Peptides (mesh), Glycine (mesh), Peptides (mesh), Microscopy, Electron (mesh), Nanostructures (mesh), Glycine (mesh), Microscopy, Electron (mesh), Nanostructures (mesh), Peptides (mesh), MSD-Soft Matter EM (c-lbnl-label), MSD-General (c-lbnl-label), 02 Physical Sciences (for), 03 Chemical Sciences (for), 09 Engineering (for), Chemical Physics (science-metrix), 34 Chemical sciences (for-2020), 40 Engineering (for-2020), 51 Physical sciences (for-2020)
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16
Autoren: et al.
Quelle: Proceedings of the National Academy of Sciences of the United States of America. 116(45)
Schlagwörter: 3403 Macromolecular and Materials Chemistry (for-2020), 34 Chemical Sciences (for-2020), Generic health relevance (hrcs-hc), Cryoelectron Microscopy (mesh), Molecular Dynamics Simulation (mesh), Nanostructures (mesh), Peptoids (mesh), Polymers (mesh), peptoid polymers, cryo-TEM, supramolecular assembly, polymer amphiphiles, nanosheets, Polymers (mesh), Peptoids (mesh), Cryoelectron Microscopy (mesh), Nanostructures (mesh), Molecular Dynamics Simulation (mesh), cryo-TEM, nanosheets, peptoid polymers, polymer amphiphiles, supramolecular assembly, Cryoelectron Microscopy (mesh), Molecular Dynamics Simulation (mesh), Nanostructures (mesh), Peptoids (mesh), Polymers (mesh), MSD-Soft Matter EM (c-lbnl-label), MSD-General (c-lbnl-label)
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17
Autoren:
Quelle: Analytical and Bioanalytical Chemistry. 410(24)
Schlagwörter: 40 Engineering (for-2020), 4018 Nanotechnology (for-2020), Bioengineering (rcdc), Nanotechnology (rcdc), Biotechnology (rcdc), Generic health relevance (hrcs-hc), Animals (mesh), Biochemistry (mesh), High-Throughput Screening Assays (mesh), Humans (mesh), Nanostructures (mesh), Nanotechnology (mesh), Toxicity Tests (mesh), Engineered nanomaterials, Predictive toxicological paradigm, Analytical technique and bioanalytical assays, High-throughput screening, Nanostructure-activity relationships, Animals (mesh), Humans (mesh), Toxicity Tests (mesh), Biochemistry (mesh), Nanotechnology (mesh), Nanostructures (mesh), High-Throughput Screening Assays (mesh), Analytical technique and bioanalytical assays, Engineered nanomaterials, High-throughput screening, Nanostructure-activity relationships, Predictive toxicological paradigm, Animals (mesh), Biochemistry (mesh), High-Throughput Screening Assays (mesh), Humans (mesh), Nanostructures (mesh), Nanotechnology (mesh), Toxicity Tests (mesh), 03 Chemical Sciences (for), 06 Biological Sciences (for), 09 Engineering (for), Analytical Chemistry (science-metrix), 31 Biological sciences (for-2020), 34 Chemical sciences (for-2020), 40 Engineering (for-2020)
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18
Autoren: et al.
Quelle: Nature Nanotechnology. 13(6)
Schlagwörter: 40 Engineering (for-2020), 4016 Materials Engineering (for-2020), Animals (mesh), Biomimetic Materials (mesh), Biosensing Techniques (mesh), Butterflies (mesh), Equipment Design (mesh), Intraocular Pressure (mesh), Light (mesh), Membranes, Artificial (mesh), Nanostructures (mesh), Phase Transition (mesh), Photons (mesh), Polymethyl Methacrylate (mesh), Polystyrenes (mesh), Prostheses and Implants (mesh), Rabbits (mesh), Silicon Compounds (mesh), Tonometry, Ocular (mesh), Animals (mesh), Rabbits (mesh), Butterflies (mesh), Silicon Compounds (mesh), Polymethyl Methacrylate (mesh), Polystyrenes (mesh), Membranes, Artificial (mesh), Tonometry, Ocular (mesh), Equipment Design (mesh), Biosensing Techniques (mesh), Prostheses and Implants (mesh), Intraocular Pressure (mesh), Phase Transition (mesh), Photons (mesh), Light (mesh), Biomimetic Materials (mesh), Nanostructures (mesh), Animals (mesh), Biomimetic Materials (mesh), Biosensing Techniques (mesh), Butterflies (mesh), Equipment Design (mesh), Intraocular Pressure (mesh), Light (mesh), Membranes, Artificial (mesh), Nanostructures (mesh), Phase Transition (mesh), Photons (mesh), Polymethyl Methacrylate (mesh), Polystyrenes (mesh), Prostheses and Implants (mesh), Rabbits (mesh), Silicon Compounds (mesh), Tonometry, Ocular (mesh), Nanoscience & Nanotechnology (science-metrix)
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19
Autoren: et al.
Quelle: Proceedings of the National Academy of Sciences of the United States of America. 115(22)
Schlagwörter: 3403 Macromolecular and Materials Chemistry (for-2020), 34 Chemical Sciences (for-2020), Biomimetic Materials (mesh), Molecular Dynamics Simulation (mesh), Nanostructures (mesh), Peptoids (mesh), Polymers (mesh), Protein Structure, Secondary (mesh), peptoid secondary structure, biomimetic sequence-specific polymers, cis-amide, 2D supramolecular assembly, Polymers (mesh), Peptoids (mesh), Protein Structure, Secondary (mesh), Biomimetic Materials (mesh), Nanostructures (mesh), Molecular Dynamics Simulation (mesh), 2D supramolecular assembly, biomimetic sequence-specific polymers, cis-amide, peptoid secondary structure, Biomimetic Materials (mesh), Molecular Dynamics Simulation (mesh), Nanostructures (mesh), Peptoids (mesh), Polymers (mesh), Protein Structure, Secondary (mesh)
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20
Autoren: et al.
Quelle: Nature Communications. 9(1)
Schlagwörter: 34 Chemical Sciences (for-2020), 51 Physical Sciences (for-2020), 5104 Condensed Matter Physics (for-2020), Circular Dichroism (mesh), Isomerism (mesh), Liquid Crystals (mesh), Microscopy, Atomic Force (mesh), Models, Chemical (mesh), Models, Molecular (mesh), Molecular Conformation (mesh), Molecular Structure (mesh), Nanostructures (mesh), Phase Transition (mesh), X-Ray Diffraction (mesh), Microscopy, Atomic Force (mesh), X-Ray Diffraction (mesh), Circular Dichroism (mesh), Molecular Structure (mesh), Molecular Conformation (mesh), Isomerism (mesh), Phase Transition (mesh), Models, Chemical (mesh), Models, Molecular (mesh), Nanostructures (mesh), Liquid Crystals (mesh), Circular Dichroism (mesh), Isomerism (mesh), Liquid Crystals (mesh), Microscopy, Atomic Force (mesh), Models, Chemical (mesh), Models, Molecular (mesh), Molecular Conformation (mesh), Molecular Structure (mesh), Nanostructures (mesh), Phase Transition (mesh), X-Ray Diffraction (mesh)
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