A kind of polydiacetylene with helical structure and its preparation method and application
A polydiacetylene and helical structure technology, which can be used in instruments, analytical materials, color/spectral property measurement, etc. strong effect
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[0027] The invention provides a method for preparing polydiacetylene with a helical structure, comprising:
[0028] Polydiacetylene with a helical structure is obtained by irradiating the benzaldehyde diacetylene film with superchiral light for 25 to 40 minutes;
[0029] Wherein, the superchiral light is obtained according to the following method:
[0030] A beam of laser light emitted by a 325nm helium-cadmium laser is divided into two beams of laser beams through an ultraviolet beam splitter. A beam of circularly polarized light forms a standing wave in the interference region, that is, superchiral light.
[0031] According to the present invention, the present invention obtains polydiacetylene with a helical structure by irradiating the benzaldehyde diacetylene film with superchiral light for 25 to 40 minutes; wherein, the irradiation time is preferably 30 to 35 minutes; the benzaldehyde diacetylene film The thickness is preferably less than 3mm, more preferably less than...
Embodiment
[0040] 1) Weigh 1mmol of PCDA and dissolve it in 30mL of dichloromethane solvent, ultrasonically dissolve it, remove a small amount of polymerized PDA by filter membrane, and place the filtrate in a 50mL clean anhydrous sample bottle. Sequentially add p-hydroxybenzaldehyde (0.134g, 1.1mmol), DCC (0.388g, 2mmol) and a certain amount of catalyst DMAP (0.0671g, 0.55mmol) in a single-necked flask, magnetically stirred, reacted at room temperature and pressure for 72h, passed TLC plates were used to check the final extent of reaction. The final product was purified and separated through a chromatographic column to obtain a white powder of benzaldehydediyne (BSDA) with a yield of 62%. Protect from light and freeze.
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