Suchergebnisse - "Fluorine substitution"
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1
Autoren: et al.
Quelle: ACS Energy Letters. 10:5584-5595
Schlagwörter: Chlorine compounds, Efficiency, Indium compounds, Nanostructured materials, Photovoltaic effects, Photovoltaics, Scanning electron microscopy, Self assembled monolayers, Solar cells, Transmission electron microscopy, American Chemical Society, Device performance, Fluorine substitution, Hole transport layers, Interfacial structures, Organic photovoltaics, Organics, Structure performance, Substituent effect, Surface coverages, Tin oxides, Physics, Fysik, Materials Science, Materialvetenskap
Dateibeschreibung: electronic
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2
Autoren: et al.
Quelle: Molecules, Vol 30, Iss 17, p 3561 (2025)
Schlagwörter: i-motif, NMR, non-canonical nucleic acids, XNA, fluorine substitution, Organic chemistry, QD241-441
Dateibeschreibung: electronic resource
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3
Autoren: et al.
Quelle: Advanced Science, Vol 12, Iss 1, Pp n/a-n/a (2025)
Schlagwörter: conductivity, energetic disorder, fluorine substitution, organic thermoelectrics, seebeck coefficient, Science
Dateibeschreibung: electronic resource
Relation: https://doaj.org/toc/2198-3844
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4
Autoren: et al.
Schlagwörter: Biophysics, Biochemistry, Sociology, Biological Sciences not elsewhere classified, Chemical Sciences not elsewhere classified, sup >+ sup, molecular dynamics simulations, also quite significant, widest electrochemical window, electrochemical stability window, including cyclic stability, methyl group shows, ec ), geminal, enhancing battery performance, methyl side provides, pc ), fluorination, fluorine substitution position, methyl group, electrochemical performance, thereby enhancing, fluorine substitutions, weakest performance, performance improvement, work emphasizes, various high, tuning fluorination, theoretical study, practical strategy
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5
Autoren: et al.
Quelle: Plerdsranoy, P, Dansirima, P, Jensen, T R & Utke, R 2023, 'Hydrogen sorption properties of Li–N–F–H pellets in laboratory and small tank scales', International Journal of Hydrogen Energy, vol. 48, no. 73, pp. 28435-28444. https://doi.org/10.1016/j.ijhydene.2023.03.462
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6
Autoren: et al.
Quelle: Advanced Materials. 34(12)
Schlagwörter: Affordable and Clean Energy, cathodes, cycling stability, disordered rocksalt, fluorine substitution, lattice stability, oxygen loss, Physical Sciences, Chemical Sciences, Engineering, Nanoscience & Nanotechnology
Dateibeschreibung: application/pdf
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7
Autoren: et al.
Quelle: Energy Storage Materials. 32
Schlagwörter: 40 Engineering (for-2020), 4016 Materials Engineering (for-2020), 34 Chemical Sciences (for-2020), 3406 Physical Chemistry (for-2020), Cation-disordered Li-Excess cathodes, Fluorine-substitution, Anionic redox, Cyclability, Voltage decay, 0904 Chemical Engineering (for), 0906 Electrical and Electronic Engineering (for)
Dateibeschreibung: application/pdf
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8
Autoren: et al.
Quelle: ACS Applied Materials and Interfaces. 15(32):38391-38402
Schlagwörter: solid electrolyte, fluorine substitution, Li2ZrCl6, lithium metal, battery
Dateibeschreibung: print
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9
Autoren: et al.
Weitere Verfasser: et al.
Schlagwörter: Scanning tunneling microscope, Cu phthalocyanine, Electronic states, Fluorine substitution, Fano effect
Relation: http://hdl.handle.net/2433/286210; Applied Surface Science; 643; 158700
Verfügbarkeit: http://hdl.handle.net/2433/286210
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10
Autoren: et al.
Schlagwörter: Biophysics, Biochemistry, Pharmacology, Biotechnology, Plant Biology, Space Science, Biological Sciences not elsewhere classified, Chemical Sciences not elsewhere classified, Physical Sciences not elsewhere classified, neuromorphic electronics owing, electrochemical transistors based, cyclopentadithiophene – benzothiadiazole, introducing fluorine units, fluorine substitution increases, extended volumetric capacitance, exceptionally large transconductance, fluorine substitution, volumetric capacitance, large transconductance, work suggests, polymer backbones, performance oect, important figures, fluorination strategy, fluorinated polymers, enormous potential, effective distance, conjugated polymers, biosignal amplifiers, backbone planarity
Verfügbarkeit: https://doi.org/10.1021/acsami.2c16979.s001
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11
Autoren: et al.
Quelle: Electrochemistry, Vol 91, Iss 3, Pp 037002-037002 (2023)
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12
Autoren: et al.
Quelle: Meng, Y, Wu, J, Guo, X, Su, W, Zhu, L, Fang, J, Zhang, Z G, Liu, F, Zhang, M, Russell, T P & Li, Y 2019, ' 11.2% Efficiency all-polymer solar cells with high open-circuit voltage ', Science China Chemistry . https://doi.org/10.1007/s11426-019-9466-6
Schlagwörter: wide bandgap polymer, 02 engineering and technology, all-polymer solar cells, fluorine substitution, 0210 nano-technology, 01 natural sciences, 7. Clean energy, polymer acceptor, power conversion efficiency, 0104 chemical sciences
Zugangs-URL: https://link.springer.com/article/10.1007/s11426-019-9466-6
https://sciengine.com/doi/10.1007/s11426-019-9466-6
https://engine.scichina.com/publisher/scp/journal/SCC/62/7/10.1007/s11426-019-9466-6?slug=fulltext
http://www.scopus.com/inward/record.url?scp=85064071028&partnerID=8YFLogxK
https://vbn.aau.dk/da/publications/4522936b-0292-4b78-bd2b-85342f2806f4
https://doi.org/10.1007/s11426-019-9466-6 -
13
Autoren: et al.
Quelle: Frontiers in Chemistry, Vol 10 (2022)
Schlagwörter: polymer solar cells, fluorine substitution, charge transport, charge recombination, power conversion efficiency, Chemistry, QD1-999
Dateibeschreibung: electronic resource
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14
Autoren: et al.
Quelle: Crystals, Vol 12, Iss 139, p 139 (2022)
Schlagwörter: hydroxyapatite, fluorine substitution, bone, simulated body fluids, chemical precipitation method, solid-state NMR, Crystallography, QD901-999
Relation: https://www.mdpi.com/2073-4352/12/2/139; https://doaj.org/toc/2073-4352; https://doaj.org/article/8b4900e4688746f1a3f9499edce6ed99
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15
Autoren: et al.
Quelle: Macromolecules. 52:281-291
Schlagwörter: Initiation efficiency, Light, Mass spectrometry, biology, Sulfonation, Esters, Efficiency, Extinction coefficients, Life sciences, 01 natural sciences, 3. Good health, 0104 chemical sciences, Time dependent density functional theory, Pulsed laser polymerization, Methyl methacrylates, Quantitative comparison, Density functional theory, Fluorine substitution, Electrospray mass spectrometry, Light absorption, ddc:570, Acrylic monomers
Dateibeschreibung: application/pdf
Zugangs-URL: https://eprints.qut.edu.au/132187/1/132187.pdf
https://eprints.qut.edu.au/132187/
http://ui.adsabs.harvard.edu/abs/2019MaMol..52..281J/abstract
https://pubs.acs.org/doi/abs/10.1021/acs.macromol.8b02404
https://publikationen.bibliothek.kit.edu/1000089222
http://pubs.acs.org/doi/10.1021/acs.macromol.8b02404
https://doi.org/10.1021/acs.macromol.8b02404 -
16
Autoren: et al.
Quelle: Materials Reports: Energy, Vol 1, Iss 4, Pp 100059- (2021)
Schlagwörter: Organic solar cells, Small molecular acceptors, Fluorine substitution, Highly crystalline acceptors, Nonfullerene polymer solar cells, Materials of engineering and construction. Mechanics of materials, TA401-492
Dateibeschreibung: electronic resource
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17
Autoren: et al.
Schlagwörter: Benzodithiophene, Benzothiadiazole, Fluorine substitution, Power conversion efficiency, Organic solar cell
Dateibeschreibung: application/pdf
Relation: TAŞKAYA ASLAN S., Cevher D., Bolayır E., Hizalan Ozsoy G., UDUM Y., YILDIRIM E., TOPPARE L. K. , ÇIRPAN A., "Synthesis of selenophene substituted benzodithiophene and fluorinated benzothiadiazole based conjugated polymers for organic solar cell applications", Electrochimica Acta, cilt.398, 2021; 85116093347; https://hdl.handle.net/11511/93767
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18
Autoren: et al.
Quelle: Crystals, Vol 11, Iss 873, p 873 (2021)
Schlagwörter: SnO 2 films, common-edge oxygen, common-point oxygen, fluorine substitution, oxygen regulation, electrical characteristics, Crystallography, QD901-999
Relation: https://www.mdpi.com/2073-4352/11/8/873; https://doaj.org/toc/2073-4352; https://doaj.org/article/ae2e722facd0448ca0ff08e5487090a3
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19
Autoren: et al.
Weitere Verfasser: et al.
Quelle: European Journal of Pharmaceutical Sciences. 109:209-216
Schlagwörter: Fluorine Radioisotopes, Microdialysis, Brain, Fluorine, Isoxazoles, 3. Good health, Rats, Sprague-Dawley, 03 medical and health sciences, 0302 clinical medicine, Piperidines, Positron-Emission Tomography, Acetylcholinesterase, Animals, Cholinesterase Inhibitors, Acetylcholinesterase inhibitor Fluorine substitution CP-118,954 Positron emission tomography In vivo microdialysis
Zugangs-URL: https://pubmed.ncbi.nlm.nih.gov/28818531
https://www.ncbi.nlm.nih.gov/pubmed/28818531
https://www.sciencedirect.com/science/article/pii/S0928098717304530
https://pubmed.ncbi.nlm.nih.gov/28818531/
https://snucm.elsevierpure.com/en/publications/the-position-of-fluorine -in-cp-118954-affects-ache-inhibition-pot
http://www.sciencedirect.com/science/article/pii/S0928098717304530
https://ricerca.uniba.it/handle/11586/211723 -
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Autoren: et al.
Weitere Verfasser: et al.
Quelle: Applied Surface Science. 643:158700
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