A method for detecting ancient woolen fabrics based on electrochemiluminescence
A luminescence method and wool fabric technology, applied in the direction of chemiluminescence/bioluminescence, electrochemical variables of materials, and analysis through chemical reactions of materials, etc., can solve the problems of large interference of impurities, low sensitivity, unsuitable for cultural relics detection, etc. Achieve the effects of high sensitivity, improved sensitivity, and good biocompatibility
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Embodiment 1
[0037] A) Weigh 10mg of cadmium selenide / zinc sulfide quantum dots, 58mg of polymethyl methacrylate, 38mg of polymaleic anhydride-octadecene copolymer, add 0.8ml of chloroform, and 4.5ml of 1.5mg / ml The sodium dodecylbenzenesulfonate aqueous solution was mixed and treated with an ultrasonic homogenizer, and then the chloroform was evaporated. Then the obtained water-soluble quantum dot beads were centrifuged and purified at a centrifugation rate of 8000 rpm for 8 min, and washed twice with deionized water.
[0038]B) Weigh 0.2 mg of quantum dot beads in step A), add 1.8 µg of 1-(3-dimethylaminopropyl)-3-ethylcarbodiimide hydrochloride, 1.2 µg of N-hydroxysuccinyl Amine, 2.6ml of PBS 7.4 buffer, react for 2h.
[0039] C) Mix 4ml of 0.2 mg / ml graphene oxide solution with 180µl of 1mM sodium hexachloroplatinate solution, react in an ice-water bath, then add 0.8mg of sodium borohydride to react for 1h under vigorous stirring, then centrifuge , washed twice with deionized water, ...
Embodiment 2
[0055] A) Weigh 10mg of cadmium selenide / zinc sulfide quantum dots, 60mg of polymethyl methacrylate, 40mg of polymaleic anhydride-octadecene copolymer, add in 1ml of chloroform, and mix with 5ml of 1.5mg / ml decane The aqueous solution of sodium dialkylbenzenesulfonate was mixed and treated with an ultrasonic homogenizer, after which the chloroform was evaporated. Then the obtained water-soluble quantum dot beads were centrifuged and purified at a centrifugation rate of 10000 rpm for 10 min, and washed three times with deionized water.
[0056] B) Weigh 0.21 mg of quantum dot beads in step A), add 2 µg of 1-(3-dimethylaminopropyl)-3-ethylcarbodiimide hydrochloride, 1.3 µg of N-hydroxysuccinyl Amine, 2.7ml of PBS 7.4 buffer, reacted for 2h.
[0057] C) Mix 4ml of 0.25 mg / ml graphene oxide solution with 200µl of 1mM sodium hexachloroplatinate solution, react in an ice-water bath, then add 1mg of sodium borohydride to react for 1h under vigorous stirring, then centrifuge. Wash 3...
Embodiment 3
[0073] A) Weigh 10mg of cadmium selenide / zinc sulfide quantum dots, 62mg of polymethyl methacrylate, 42mg of polymaleic anhydride-octadecene copolymer, add 1.2ml of chloroform, and 5.5ml of 1.5mg / ml The sodium dodecylbenzenesulfonate aqueous solution was mixed and treated with an ultrasonic homogenizer, and then the chloroform was evaporated. Then, the obtained water-soluble quantum dot beads were centrifuged and purified at a centrifugation rate of 12000 rpm for 12 min, and washed 4 times with deionized water.
[0074] B) Weigh 0.22 mg of quantum dot beads in step A), add 2.2 µg of 1-(3-dimethylaminopropyl)-3-ethylcarbodiimide hydrochloride, 1.4 µg of N-hydroxysuccinyl Amine, 2.8ml of PBS 7.4 buffer solution, reacted for 2h.
[0075]C) Mix 4ml of 0.3 mg / ml graphene oxide solution with 220µl of 1mM sodium hexachloroplatinate solution, react in an ice-water bath, then add 1.2mg of sodium borohydride to react for 1h under vigorous stirring, then centrifuge , washed 4 times wit...
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