Hydrocarbyl-terminated hyperbranched polyester and photopolymer materials containing it
A technology of hyperbranched polyester and photopolymer, which is applied in photosensitive materials, optics, and optomechanical equipment for optomechanical equipment, etc., can solve the problem of holographic properties of the film, such as the reduction of diffraction efficiency and the storage stability of the film. , adverse effects of reaction and migration, etc., to achieve the effect of improving storage stability, avoiding adverse effects, and good solubility
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Embodiment 1
[0044] Synthesis of Hydrocarbyl Terminated Hyperbranched Polyester
[0045] 34.5g (hydroxyl moles n 1 =0.135mol, Mw=12000) terminal hydroxyl hyperbranched polyester and 30g triethylamine are dissolved in 70gDMF, pour in the there-necked flask, stir, then slowly drip 20g benzoyl chloride (acyl chloride group mole number) with constant pressure funnel no 2 =0.14mol), the drop rate is 6mL / h. The reaction was stirred for 10 h in a cold water bath, and nitrogen was used as a protective gas. The resulting mixture was filtered twice to remove the hydrochloride of triethylamine, and the filtrate was rotated to remove the solvent at 130° C. and -0.08 MPa. The residue is washed several times with cold n-hexane to obtain the benzyl-terminated hyperbranched polyester. The reaction equation is shown in formula (3), and the infrared spectra before and after the reaction are shown in figure 1 shown. From figure 1 It can be seen that, relative to the hydroxyl-terminated hyperbranched ...
Embodiment 2
[0053] Synthesis of Hydrocarbyl Terminated Hyperbranched Polyester
[0054] 34.5g (hydroxyl moles n 1 =0.135mol, Mw=12000) terminal hydroxyl hyperbranched polyester and 30g triethylamine are dissolved in 70gDMF, pour in the there-necked flask, stir, then slowly drip 11g acetyl chloride (acyl chloride group molar number n 2 =0.14mol), the drop rate is 6mL / h. The reaction was stirred for 10 h in a cold water bath, and nitrogen was used as a protective gas. The resulting mixture was filtered twice to remove the hydrochloride of triethylamine, and the filtrate was rotated to remove the solvent at 130° C. and -0.08 MPa. The residue is washed several times with cold n-hexane to obtain ethyl-terminated hyperbranched polyester. The reaction equation is shown in formula (4), and the infrared spectra before and after the reaction are shown in figure 2 shown.
[0055]
[0056] Preparation of photopolymer film layer
[0057] In a dark room and a safe light environment, the ph...
Embodiment 3
[0062] Synthesis of Hydrocarbyl Terminated Hyperbranched Polyester
[0063] Dissolve 34.5g (hydroxyl mole number n1=0.135mol, Mw=12000) hydroxyl-terminated hyperbranched polyester and 30g triethylamine into 70gDMF, pour it into a three-necked flask, stir, and then slowly add 42.4g dropwise with a constant pressure funnel Octadecanoyl chloride (the number of moles of acid chloride groups n2=0.14mol), the dropping rate is 6mL / h. The reaction was stirred for 10 h in a cold water bath, and nitrogen was used as a protective gas. The resulting mixture was filtered twice to remove the hydrochloride of triethylamine, and the filtrate was rotated to remove the solvent at 130° C. and -0.08 MPa. The residue is washed several times with cold n-hexane to obtain octadecyl-terminated hyperbranched polyester. The reaction equation is shown in formula (5), wherein S represents alkyl CH 3 (CH 2 ) 16 -,Such as image 3 shown.
[0064]
[0065] Preparation of photopolymer film layer ...
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