Dioxa [5] helicene compound as well as preparation method and application thereof
A technology of dioxa, compounds, applied in the field of preparation of dioxa[5] helicene compounds, can solve the problems such as difficult synthesis and research of oxa helixes, and achieve a wide range of substrates, good application prospects, and reaction The effect of mild conditions
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[0046] The second aspect of the embodiment of the present application provides a method for preparing a dioxa[5]helicene compound, comprising the following steps:
[0047] In a protective atmosphere, the reactant shown in the following formula II and the base are heat-treated in an organic solvent for reaction to generate a dioxa[5]penthexene compound shown in the following formula I:
[0048]
[0049] Among them, R 1 , R 2 hydrogen atom, C 1 -C 10 Any one of alkyl, alkoxy, phenyl, halogen atom, trifluoromethyl, cyano, aldehyde, ketone, carboxylic acid, carboxylic acid derivative functional group, pyridyl, or other aromatic hydrocarbon functional groups species; R 3 is an aryl or nitrogen heterocycle.
[0050] It should be noted that the above reaction can obtain the product under a general air atmosphere, and it can also be reacted under a protective gas. The protective atmosphere is nitrogen, argon or other inert gases that do not react with the reactants, which can ...
Embodiment 1
[0085] Add the starting material IIa, namely 2-(2-benzylnaphtho[2,1-b]furan-1-yl)-4-methylphenyl triflate (0.3mmol) into a sealed reaction tube, nitrogen After replacing three times, add dry dimethylformamide (3 ml) to dissolve, then add dried 1,8-diazabicyclo[5.4.0]undec-7-ene (2.5equiv.), The reaction tube was placed in an oil bath at 100° C. for 3 hours. After the reaction was completed, the reaction was stopped, and 5 ml of water and 5 ml of ether were added to the system. Add 5 ml of water and 5 ml of ether for extraction three times, combine the organic phases, dry over anhydrous sodium sulfate, and remove the ether by rotary evaporation under reduced pressure to obtain the initial product, which is purified by column chromatography to obtain dioxa[5] Helicene compounds Ia.
[0086] As shown in Table 1, the raw material II of this example is marked as IIa, the product I is marked as Ia, and the product Ia is specifically 2,-methyl-6-phenyl-6H-naphthol[1',2':4 ,5] Furo[...
Embodiment 2
[0089] The raw material IIa, namely 2-(2-benzylnaphth[2,1-b]furan-1-yl)-4-methylphenyl trifluoromethanesulfonate (0.3mmol) and dried molecular sieves ( 0.15 gram) is added in the sealed reaction tube, and all the other steps and raw material proportioning are with embodiment 1.
[0090] As shown in Table 1, the raw material II of this example is marked as IIa, the product I is marked as Ia, and the product Ia is specifically 2,-methyl-6-phenyl-6H-naphthol[1',2':4 ,5] Furo[2,3-c]benzopyran, the yield was 92%.
[0091] Proton NMR spectrum of product Ia: 1 H NMR (500MHz, CDCl 3 ): δ=8.82(d, J=8.5Hz, 1H), 8.01(d, J=8.0Hz, 2H), 7.78(d, J=9.0Hz, 1H), 7.68(t, J=7.5Hz, 1H ),7.65(d,J=9.0Hz,1H),7.57(t,J=7.5Hz,1H),7.51-7.49(m,2H),7.43-7.40(m,3H),7.06(s,1H) ,6.43(s,1H),2.48(s,3H).
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