a tio 2 Nanoparticle Adsorbed Peryleneimide Derivative Films and Their Applications as Electrochromic Materials
A technology of nanoparticles and perylene imide, applied in the direction of coating, can solve the problems of easy shedding, difficult film formation of perylene imide derivatives, limited application of electrochromic materials, etc., and achieve the effect of reversible color change
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Embodiment 1
[0041] Embodiment 1: the synthesis of PPDI
[0042] (1) Synthesis of N,N'-bis(2-bisimidazolyl phosphate)-3,4,9,10-perylenetetracarboxylic acid diimide
[0043] Add perylene-3,4,9,10-tetraanhydride dianhydride (157mg, 0.40mmol), 2-aminoethylphosphonic acid ((100mg, 0.80mmol) and imidazole ( (0.5g, 7.35mmol). After it was mixed uniformly, the temperature was raised to 135°C. At this moment, imidazole melted into a liquid state, reacted for 15min, and reached the end of the reaction. Turn off the heating device, and wait for the reaction to be cooled to room temperature to obtain solid crude product. Crude product Wash and filter with (ethanol: 2mol / L HCl = 1:1), (ethanol: water = 1:1) and ethanol solution respectively, filter off the filtrate, and dry under vacuum to obtain N,N'-bis(2- 200mg of bisimidazolylethyl phosphate)-3,4,9,10-perylenetetracarboxylic acid diimide, the yield was 74.3%, and the product was a dark red solid.
[0044] (2) Synthesis of N,N'-bis(2-disodium eth...
Embodiment 2
[0050] Example 2: TiO 2 Preparation of Nanoparticle Adsorbed PPDI Film
[0051] Add TiO2 with a diameter of 20nm into the pre-dried 25mL beaker 2 Nanoparticles (1g), deionized water (10mL) and 0.1mol / L acetic acid (5mL), after fully mixed, put it into the reaction kettle, and keep it in the oven at 150°C for 12h, and then mix the treated Pour the solution into a pre-dried 25mL beaker, add 0.4g polyethylene glycol, and stir at room temperature for 8 hours. At this time, the solution produces a viscous paste. Rotate the viscous paste in the cleaned On the clean ITO, put the spin-coated ITO in an oven at 80°C for drying. After drying for 1 hour, put the ITO in a muffle furnace at 450°C for heat treatment. After 1 hour of treatment, a certain thickness of transparent TiO can be obtained. 2 Nanoparticle films. Treated TiO 2 The ITO of the nanoparticle film was put into 5mmol / L PPDI aqueous solution, and stood at room temperature for 36h. At this time, the TiO on the ITO 2 Nano...
Embodiment 3
[0053] Example 3: TiO 2 Electrochromic Properties of Nanoparticle Adsorbed PPDI Films
[0054] The TiO attached on the ITO glass prepared in embodiment 2 2 The nanoparticle adsorbed PPDI film was placed in a three-electrode electrolytic cell, and 0.2mol / L 1-butyl-3methyl-imidazole triflate / propylene carbonate solution was dissolved as the electrolytic solution, and the working electrode was attached There is TiO 2 ITO glass with nanoparticles adsorbing PPDI film, the counter electrode is a platinum wire, and the reference electrode is a silver-silver chloride electrode. Cyclic voltammetry was used for scanning, the scanning voltage range was 0-1.3V, the scanning speed was 100mV / s, and the scanning was performed for 10 cycles. It can be observed with the naked eye that the color of the film changes from red to purple as the negative voltage decreases, and when the negative voltage increases, the color turns red again, and so on. Record the relationship between the redox pea...
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