A kind of synthetic method of guanine-based pearlescent pigment
A pearlescent pigment, guanine-based technology, applied in the field of synthesis of guanine-based pearlescent pigments, can solve the problems of poor heat resistance and light resistance, limited natural nacre resources of guanine crystal micro-sheets, complicated preparation process, etc., and achieve good stability Effect
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Embodiment 1
[0033] 10ml formamide, add 10mg P(VP-co-VA), add 10mg uric acid, add 1.5ml water, add 0.5ml 0.1M guanine dissolved in 0.4M sodium hydroxide solution, react at 40°C for 1h. The system was expanded up to 20 times in the laboratory without significant change.
[0034] figure 1 It is an optical photograph of anhydrous guanine β-phase microsheets in this example, showing strong structural color. figure 2 It is the SEM photo of anhydrous guanine β phase microsheet in the present embodiment; image 3 It is the XRD of the anhydrous guanine β-phase microsheets in this example, which shows a strong preferred orientation.
Embodiment 2
[0036] 10ml formamide, add 10mg P(VP-co-VA), add 50mg guanosine, add 1.5ml water, add 0.5ml 0.1M guanine dissolved in 0.4M sodium hydroxide solution, react at 40°C for 1h. The system was expanded up to 20 times in the laboratory without significant change.
[0037] Figure 4 It is an optical photograph of anhydrous guanine α-phase microsheets in this example, showing strong structural color. Figure 5 It is the XRD of the anhydrous guanine α-phase microsheets in this example, which shows a strong preferred orientation.
Embodiment 3
[0039] To 10ml formamide, add 1mg P(VP-co-VA), add 10mg xanthine, add 0.25ml of 0.1M guanine dissolved in 0.4M potassium hydroxide solution, and react overnight at room temperature. The product in this example is anhydrous guanine β-phase micro twins.
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