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Journal of catalysis, ISSN 0021-9517, 2011, Volume 281, Issue 1, pp. 177 - 187
MIL-101 | Proton conductivity | Flexibility | MIL-53 | Metal–organic frameworks | Esterification | Metal-organic frameworks | Engineering | Physical Sciences | Engineering, Chemical | Chemistry | Technology | Chemistry, Physical | Science & Technology | Theory of reactions, general kinetics. Catalysis. Nomenclature, chemical documentation, computer chemistry | Porous materials | Exact sciences and technology | General and physical chemistry | Catalysis | Colloidal state and disperse state | Sulfates | Electric properties | Protons | Conductivity | Catalysts | Polymers
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Advanced materials (Weinheim), ISSN 0935-9648, 09/2017, Volume 29, Issue 34, pp. 1701804 - n/a
near infrared | water stable | luminescence | metal–organic frameworks | proton conductivity | Materials Science | Materials Science, Multidisciplinary | Physics, Condensed Matter | Science & Technology - Other Topics | Chemistry, Physical | Physics | Science & Technology | Physics, Applied | Physical Sciences | Chemistry | Nanoscience & Nanotechnology | Technology | Chemistry, Multidisciplinary | Rare earth metals | Electrical conductivity | Oxalates | Oxalic acid | Electric properties | Relative humidity | Near infrared radiation | Ammonia | Electrical resistivity | Luminescence | Optical communication | Conductors | Solid electrolytes | Metal-organic frameworks | Water stability | Molten salt electrolytes
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Small (Weinheim an der Bergstrasse, Germany), ISSN 1613-6810, 12/2020, Volume 16, Issue 50, p. n/a
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Journal of power sources, ISSN 0378-7753, 2009, Volume 189, Issue 2, pp. 994 - 998
Perfluorosulfonate ionomer | Proton exchange membrane fuel cell | Four-electrode method | Ionic conductivity | Thin film | Physical Sciences | Chemistry | Materials Science | Technology | Materials Science, Multidisciplinary | Electrochemistry | Chemistry, Physical | Energy & Fuels | Science & Technology | Equipments for energy generation and conversion: thermal, electrical, mechanical energy, etc | Applied sciences | Energy. Thermal use of fuels | Energy | Fuel cells | Exact sciences and technology
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Chemistry of materials, ISSN 0897-4756, 12/2012, Volume 24, Issue 24, pp. 4641 - 4646
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Angewandte Chemie (International ed.), ISSN 1433-7851, 07/2018, Volume 57, Issue 28, pp. 8416 - 8420
polyoxotungstate | self-assembly | proton conduction | porous materials | polyoxometalates | Physical Sciences | Chemistry | Chemistry, Multidisciplinary | Science & Technology | Bismuth | Cerium | Electric properties | Crystal growth | Spectroscopy | Crystal lattices | Metals | Conductivity | X-ray diffraction | Materials science | Tungstates | Molecular chains | Metal oxides | Organic chemistry | Anions | Electrochemistry | Clusters | Bismuth compounds | Electrochemical impedance spectroscopy | Low temperature
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European polymer journal, ISSN 0014-3057, 05/2020, Volume 131, p. 109691
Proton conductivity | Copolymer microstructure | Poly(benzimidazole) | Medium/high temperature proton exchange membrane fuel cell | Vinyl imidazole/vinyl phosphonic acid copolymer | Acid-base blend membranes | Polymer Science | Physical Sciences | Science & Technology | Protons | Phosphoric acid | Membranes | Free radicals | Molecular structure | Molecular interactions | Doping | Phosphonic acids | Conductivity | Copolymerization | High temperature | Copolymers | Free radical polymerization | Acids | Maximum power density | Fuel cells | Imidazole
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A DNA‐Threaded ZIF‐8 Membrane with High Proton Conductivity and Low Methanol Permeability
Advanced materials (Weinheim), ISSN 0935-9648, 01/2018, Volume 30, Issue 2, pp. 1705155 - n/a
DNA‐threaded DNA@ZIF‐8 membranes | high proton conductivity | low methanol permeability | fast proton transportation | DNA-threaded DNA@ZIF-8 membranes | Materials Science | Materials Science, Multidisciplinary | Physics, Condensed Matter | Science & Technology - Other Topics | Chemistry, Physical | Physics | Science & Technology | Physics, Applied | Physical Sciences | Chemistry | Nanoscience & Nanotechnology | Technology | Chemistry, Multidisciplinary | Permeability | Hydrogen | Fuel cells | DNA | Methanol | Electric properties | Protons | Membranes | Water chemistry | Transportation networks | Conductivity | Biomolecules | Metal-organic frameworks | Proton exchange membrane fuel cells | Deoxyribonucleic acid--DNA
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Angewandte Chemie (International ed.), ISSN 1433-7851, 08/2018, Volume 57, Issue 34, pp. 10894 - 10898
membranes | fuel cells | covalent organic frameworks | proton conductivity | nanostructures | Physical Sciences | Chemistry | Chemistry, Multidisciplinary | Science & Technology | Polymers | Fuel cells | Electric properties | Protons | Electrolytic cells | Membranes | Toluene | Porous materials | Conductivity | Fuel technology | Crystallinity | Proton exchange membrane fuel cells | Sulfonic acid | Crystal structure
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Angewandte Chemie (International ed.), ISSN 1433-7851, 04/2015, Volume 54, Issue 17, pp. 5142 - 5146
postsynthetic oxidation | proton‐conducting materials | sulfonic acid groups | metal–organic frameworks | thiol groups | proton-conducting materials | metal-organic frameworks | Physical Sciences | Chemistry | Chemistry, Multidisciplinary | Science & Technology | Oxidation-reduction reaction | Thiols | Electric properties | Relative humidity | Backbone | Covalence | Stability | Equivalence | Electrolytes | Oxidation | Sulfonic acid | Decoration
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Journal of membrane science, ISSN 0376-7388, 03/2019, Volume 573, pp. 439 - 447
Blending modification | Direct methanol fuel cells | Composite Nafion membrane | Sulfonated poly (arylene ether ketone)s | Methanol crossover | Engineering | Physical Sciences | Engineering, Chemical | Polymer Science | Technology | Science & Technology | Ketones | Transmission electron microscopes | Fuel cell industry | Analysis | Fuel cells | Fluorine compounds | Permeability | Electric properties | Methanol
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