Method for preparing electrochromic fibers without external electrodes by coaxial microfluidic spinning method
An electrochromic and liquid crystal fiber technology, which is applied in the fields of fine chemicals and material science, can solve the problems that cannot meet the requirements of breathable and flexible textiles, cannot get rid of the application restrictions of external electrodes, and liquid crystal staining, so as to meet the needs of individualization and diversity. Requirements, controllable optical appearance, effect of uniform interference color
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Embodiment 1
[0053] A method for preparing electrochromic liquid crystal fibers by a coaxial microfluid spinning method, comprising the following steps:
[0054] (1) Preparation of transparent conductive outer layer injection 1: Disperse 0.05g sodium alginate powder, 0.5g glucose powder, 1.5g silver nanowires (length, diameter: 10 μm, 60 nm) (Sigma company) in 10 mL of water with magnetic stirring 10min, to prepare a uniform injection 1, wherein the mass fraction of silver nanowires relative to water is 0.15wt%;
[0055] (2) Preparation of black conductive inner layer injection 2: 0.05g sodium alginate powder, 0.5g glucose powder, 0.15g poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonic acid) ( Sinopharm Shanghai Test Co., Ltd.) was dispersed in 10 mL of water with magnetic stirring for 10 min to prepare a uniform injection 2, in which the mass fraction of poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonic acid) relative to water was 0.015wt%;
[0056] (3) Preparation of electrochr...
Embodiment 2
[0062] The 90wt% red cholesteric liquid crystal in injection 3 of Example 1 was adjusted to 80wt% blue cholesteric liquid crystal (U10-006G-480, Shijiazhuang Chengzhi Yonghua Company), metal nanowires in injection 1 Copper nanowires were used, wherein the mass fraction of copper nanowires was 0.3 wt %; other electrochromic liquid crystal microfibers were prepared according to the same preparation steps in Example 1.
[0063] The electrochromic liquid crystal fibers prepared above were tested for optoelectronic properties (see Table 1) and water and solvent resistance properties (see Table 2). It can be seen from the test results that: with the electrochromic liquid crystal fiber obtained in Comparative Example 1, as the concentration of cholesteric liquid crystal decreases, the thickness of the liquid crystal layer also becomes thinner, and the required electrochromic driving voltage also increases. .
Embodiment 3
[0065] The 90wt% red cholesteric liquid crystal in injection 3 of Example 1 was adjusted to 70wt% yellow cholesteric liquid crystal (U10-006G-580, Shijiazhuang Chengzhi Yonghua Co., Ltd.), and the others were prepared in the same manner as in Example 1. The steps are to prepare electrochromic liquid crystal microfibers.
[0066] The photoelectric performance test (see Table 1) and the water and solvent resistance performance test (see Table 2) were carried out on the electrochromic liquid crystal fibers prepared above. It can be seen from the test results that: with the electrochromic liquid crystal fiber obtained in Comparative Example 1, as the concentration of cholesteric liquid crystal continues to decrease, the thickness of the liquid crystal layer continues to become thinner, and the required electrochromic driving voltage also continues to increase.
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