Dibenzocyclobutadiene | CAS:259-79-0
Dibenzocyclobutadiene
- 名称:二苯并环丁二烯 | Dibenzocyclobutadiene
- CAS号:259-79-0
- 别名:Cyclobutadibenzene; Biphenylene; Diphenylene; NSC 101862
- 分子式:C12H8
- 分子量:152.19
- EINESC号:
产品描述
物理化学性质
沸点 | 262 ºC |
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闪点 | 100 ºC |
密度 | 1.190 |
安全数据
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SDS
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3,5-di-t-butylcatechol (DTCAT) as an activator of rat skeletal muscle ryanodine receptor Ca2+ channel (RyRC).Fabio Fusi et al.Biochemical pharmacology, 69(3), 485-491 (2005-01-18)
Insertion of a hydroxido bridge into a diphenoxido dinuclear copper(II) complex: drastic change of the magnetic property from strong antiferromagnetic to ferromagnetic and enhancement in the catecholase activity.Apurba Biswas et al.Inorganic chemistry, 51(19), 10111-10121 (2012-09-12)
Design, Synthesis, and Structural Characterization of a Bisantimony(III) Compound for Anion Binding and the Density Functional Theory Evaluation of Halide Binding through Antimony Secondary Bonding Interactions.Jinchun Qiu et al.The journal of physical chemistry. A, 120(46), 9257-9269 (2016-10-22)
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Kinetic and mechanistic studies of vanadium-based, extended catalytic lifetime catechol dioxygenases.Cindy-Xing Yin et al.Journal of the American Chemical Society, 127(40), 13988-13996 (2005-10-06)
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Biomimetic oxidation of 3,5-di-tert-butylcatechol by dioxygen via Mn-enhanced base catalysis.Imola Cs Szigyártó et al.Inorganic chemistry, 45(18), 7480-7487 (2006-08-29)
A novel tripodal ligand containing three different N-heterocyclic donor functions and its application in catechol dioxygenase mimicking.Marit Wagner et al.Chemistry (Weinheim an der Bergstrasse, Germany), 15(22), 5567-5576 (2009-04-11)
Tuning the activity of catechol oxidase model complexes by geometric changes of the dicopper core.Jens Ackermann et al.Chemistry (Weinheim an der Bergstrasse, Germany), 8(1), 247-258 (2002-02-02)
Catechol oxidase activity of a series of new dinuclear copper(II) complexes with 3,5-DTBC and TCC as substrates: syntheses, X-ray crystal structures, spectroscopic characterization of the adducts and kinetic studies.Kazi Sabnam Banu et al.Inorganic chemistry, 47(16), 7083-7093 (2008-07-16)
Immobilization of MP-11 into a mesoporous metal-organic framework, MP-11@mesoMOF: a new platform for enzymatic catalysis.Vasiliki Lykourinou et al.Journal of the American Chemical Society, 133(27), 10382-10385 (2011-06-21)
Effects of aminoacids on the autooxidation of 3,5-di-tert-butylcatechol in the presence of surface-active copper(II) complexes.Y Y Lim et al.Journal of colloid and interface science, 255(2), 425-427 (2002-12-31)
Catalytic oxidation of 3,5-Di-tert-butylcatechol by a series of mononuclear manganese complexes: synthesis, structure, and kinetic investigation.Michael U Triller et al.Inorganic chemistry, 42(20), 6274-6283 (2003-09-30)
Antiferromagnetic porous metal-organic framework containing mixed-valence [Mn(II)4Mn(III)2(μ4-O)2]10+ units with catecholase activity and selective gas adsorption.Paramita Kar et al.Inorganic chemistry, 51(7), 4265-4273 (2012-03-16)
Preparation of Magnetic Tubular Nanoreactors for Highly Efficient Catalysis.Shuliang Yang et al.Chemistry, an Asian journal, 11(19), 2797-2801 (2016-04-29)
Mechanistic insight on the catecholase activity of dinuclear copper complexes with distant metal centers.María Rosa Mendoza-Quijano et al.Dalton transactions (Cambridge, England : 2003), 41(16), 4985-4997 (2012-03-14)
Synthesis, structure and catechol-oxidase activity of copper(II) complexes of 17-hydroxy-16-(N-3-oxo-prop-1-enyl)amino steroids.Rainer Wegner et al.Steroids, 67(10), 835-849 (2002-09-17)
Synthesis, structure, redox properties and azide binding for a series of biphenyl-based Cu(II) complexes.Jacky Chen et al.Dalton transactions (Cambridge, England : 2003), (24)(24), 2571-2579 (2007-06-15)
3,5-Di-t-butyl catechol is a potent human ryanodine receptor 1 activator, not suitable for the diagnosis of malignant hyperthermia susceptibility.Caterina Lacava et al.Pharmacological research, 66(1), 80-87 (2012-04-07)
Mechanisms of the antispasmodic activity of 3,5-di-t-butyl catechol (DTCAT) on rat vascular smooth muscles.Fabio Fusi et al.European journal of pharmacology, 561(1-3), 112-120 (2007-02-13)
Catechol thioethers with physiologically active fragments: Electrochemistry, antioxidant and cryoprotective activities.Ivan V Smolyaninov et al.Bioorganic chemistry, 89, 103003-103003 (2019-05-28)
pH-controlled change of the metal coordination in a dicopper(II) complex of the ligand H-BPMP: crystal structures, magnetic properties, and catecholase activity.S Torelli et al.Inorganic chemistry, 39(16), 3526-3536 (2001-02-24)
Probing eumelanin photoprotection using a catechol:quinone heterodimer model system.Christopher Grieco et al.Faraday discussions, 216(0), 520-537 (2019-04-24)
Structural correlation of catecholase-like activities of oxy-bridged dinuclear copper(II) complexes.C H Kao et al.Journal of inorganic biochemistry, 84(3-4), 171-178 (2001-05-26)
Synthesis, crystal structures, magnetic properties and catecholase activity of double phenoxido-bridged penta-coordinated dinuclear nickel(II) complexes derived from reduced Schiff-base ligands: mechanistic inference of catecholase activity.Apurba Biswas et al.Inorganic chemistry, 51(15), 7993-8001 (2012-07-05)
Synthesis, characterization and properties of some divalent metal(II) complexes: their electrochemical, catalytic, thermal and antimicrobial activity studies.Mehmet Tümer et al.Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy, 67(3-4), 916-929 (2006-10-19)
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