
Methyl 3-fluoro-4-(methyloxy)benzoate | CAS:369-30-2
Methyl 3-fluoro-4-(methyloxy)benzoate
- Name:Methyl 3-fluoro-4-(methyloxy)benzoate
- CAS:369-30-2
- Synonyms:Methyl 3-fluoro-4-methoxybenzoate
- Molecular Formula:C9H9FO3
- Molecular Weight:184.16
- EINESC:
Description
Properties
Melting point | 70-71 ºC |
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Boiling point | 264 ºC |
Flash point | 110 ºC |
Density | 1.184 |
Safety
没有数据 | 没有数据 |
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SDS
Source | SDS/MSDS Samples |
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没有数据 | 没有数据 |
Synthetic Route
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More
Articles
Peer-Reviewed Papers
Vanadium pentoxide phytotoxicity: effects of species selection and nutrient concentration.Paula G Smith et al.Archives of environmental contamination and toxicology, 64(1), 87-96 (2012-10-12)
Transition metal oxides for organic electronics: energetics, device physics and applications.Jens Meyer et al.Advanced materials (Deerfield Beach, Fla.), 24(40), 5408-5427 (2012-09-05)
Vaidyanathan, B. et al. Chemistry of Materials, 10, 3400-3400 (1998)
Synthesis and characterization of self-bridged silver vanadium oxide/CNTs composite and its enhanced lithium storage performance.Liying Liang et al.Nanoscale, 5(3), 1026-1033 (2012-12-21)
Template-free bottom-up synthesis of yolk-shell vanadium oxide as high performance cathode for lithium ion batteries.Hongchang Pang et al.Chemical communications (Cambridge, England), 49(15), 1536-1538 (2013-01-17)
Continuous one-pot synthesis of sandwich structured core-shell particles and transformation to yolk-shell particles.You Na Ko et al.Chemical communications (Cambridge, England), 49(37), 3884-3886 (2013-04-04)
TiO2-V2O5 nanocomposites as alternative energy storage substances for photocatalysts.Pailin Ngaotrakanwiwat et al.Journal of nanoscience and nanotechnology, 12(1), 828-833 (2012-04-25)
Preparation and characterization of mesoporous Ag/VO(x)-TiO2 employed for catalytic hydroxylation of benzene.Dan Xu et al.Journal of nanoscience and nanotechnology, 14(6), 4692-4699 (2014-04-18)
Low-temperature solution-processed hydrogen molybdenum and vanadium bronzes for an efficient hole-transport layer in organic electronics.Fengxian Xie et al.Advanced materials (Deerfield Beach, Fla.), 25(14), 2051-2055 (2013-02-07)
Substrate-assisted self-organization of radial β-AgVO₃ nanowire clusters for high rate rechargeable lithium batteries.Chunhua Han et al.Nano letters, 12(9), 4668-4673 (2012-08-07)
Poly(acrylic acid) modified lanthanide-doped GdVO4 hollow spheres for up-conversion cell imaging, MRI and pH-dependent drug release.Xiaojiao Kang et al.Nanoscale, 5(1), 253-261 (2012-11-17)
MWCNT/V2O5 core/shell sponge for high areal capacity and power density Li-ion cathodes.Xinyi Chen et al.ACS nano, 6(9), 7948-7955 (2012-08-09)
Molten salt synthesis and luminescent properties of YVO4:Ln (Ln = Eu3+, Dy3+) nanophosphors.Chenglu Liu et al.Journal of nanoscience and nanotechnology, 12(1), 151-158 (2012-04-25)
Interconnected V2O5 nanoporous network for high-performance supercapacitors.B Saravanakumar et al.ACS applied materials & interfaces, 4(9), 4484-4490 (2012-08-24)
Controlled synthesis of transition metal/conducting polymer nanocomposites.Zhen Liu et al.Nanotechnology, 23(33), 335603-335603 (2012-07-31)
Design of electrically driven hybrid vanadium dioxide (VO2) plasmonic switches.Brett A Kruger et al.Optics express, 20(21), 23598-23609 (2012-11-29)
Visible-light-induced bactericidal activity of vanadium-pentoxide (V2O5)-loaded TiO2 nanoparticles.Yeon Seok Kim et al.Applied biochemistry and biotechnology, 168(5), 1143-1152 (2012-09-06)
Elementary steps of the catalytic NO(x) reduction with NH3: cluster studies on reactant adsorption at vanadium oxide substrate.M Gruber et al.The Journal of chemical physics, 138(9), 094704-094704 (2013-03-15)
Catalysis science of supported vanadium oxide catalysts.Israel E Wachs Dalton transactions (Cambridge, England : 2003), 42(33), 11762-11769 (2013-04-26)
Brazdil, J.F. et al. Chemistry of Materials, 10, 4100-4100 (1998)
Design strategies for development of SCR catalyst: improvement of alkali poisoning resistance and novel regeneration method.Yue Peng et al.Environmental science & technology, 46(22), 12623-12629 (2012-11-03)
Cucumber-like V2O5/poly(3,4-ethylenedioxythiophene)&MnO2 nanowires with enhanced electrochemical cyclability.Liqiang Mai et al.Nano letters, 13(2), 740-745 (2013-01-15)
Modulation of the electrical properties of VO₂ nanobeams using an ionic liquid as a gating medium.Heng Ji et al.Nano letters, 12(6), 2988-2992 (2012-05-15)
Vanadium pentoxide nanoparticles mimic vanadium haloperoxidases and thwart biofilm formation.Filipe Natalio et al.Nature nanotechnology, 7(8), 530-535 (2012-07-04)
Stress-induced domain dynamics and phase transitions in epitaxially grown VO₂ nanowires.Jung Inn Sohn et al.Nanotechnology, 23(20), 205707-205707 (2012-05-01)
Shape controllable synthesis and luminescence properties of LuVO4:Ln3+ (Ln3+ = Eu, Sm, and Dy) nano/microstructure.Yu Gao et al.Journal of nanoscience and nanotechnology, 12(11), 8372-8381 (2013-02-21)
Vanadium pentoxide: use of relevant historical control data shows no evidence for a carcinogenic response in F344/N rats.Thomas B Starr et al.Regulatory toxicology and pharmacology : RTP, 64(1), 155-160 (2012-07-04)
Uniform and well-dispersed YbVO4 hierarchical nanoarchitectures: synthesis and luminescence properties.Zhenhe Xu et al.Journal of nanoscience and nanotechnology, 13(1), 344-350 (2013-05-08)
LiCl/PVA gel electrolyte stabilizes vanadium oxide nanowire electrodes for pseudocapacitors.Gongming Wang et al.ACS nano, 6(11), 10296-10302 (2012-10-12)
Conductive photoswitchable vanadium oxide nanopaper based on bacterial cellulose.Junkal Gutierrez et al.ChemSusChem, 5(12), 2323-2327 (2012-10-13)
Application of solution-processed V2O5 in inverted polymer solar cells based on fluorine-doped tin oxide substrate.Jian Wu et al.Journal of nanoscience and nanotechnology, 14(6), 4214-4217 (2014-04-18)
Template-free synthesis of hierarchical vanadium-glycolate hollow microspheres and their conversion to V2O5 with improved lithium storage capability.Anqiang Pan et al.Chemistry (Weinheim an der Bergstrasse, Germany), 19(2), 494-500 (2012-11-30)
Remarks
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Products currently covered by valid US Patents are offered for R&D use in accordance with 35 USC 271 +A13(1).
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