Process for preparing oxidized graphene/titanium dioxide composite material with high visible-light activity at low temperature
A technology of titanium dioxide and composite materials, applied in chemical/physical processes, physical/chemical process catalysts, chemical instruments and methods, etc., can solve the problems of easy deactivation, low utilization rate of visible light, etc., and achieve convenient operation and good visible light catalytic degradation Performance, Absorption Enhanced Effect
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preparation Embodiment 1
[0028] A low-temperature preparation of a graphene oxide / titanium dioxide composite material with high visible light activity, comprising the steps of:
[0029] (1) The mass ratio of titanium precursor to graphite oxide is 1:0.05, the volume ratio of titanium precursor to deionized water is 1:15, and the volume ratio of titanium precursor to alcohol is 1:0.4, respectively Weigh / measure the precursor of titanium, graphite oxide, deionized water and alcohol;
[0030] (2) Disperse the graphite oxide weighed in step (1) in the deionized water measured in step (1), and perform ultrasonic stripping treatment for 35 min to obtain a graphene oxide aqueous dispersion;
[0031] (3) adding acid dropwise to the graphene oxide aqueous dispersion to adjust its pH value to 2 to obtain solution A;
[0032] (4) Dissolving the titanium precursor weighed in step (1) in the alcohol weighed in step (1), stirring evenly to obtain solution B;
[0033] (5) Under stirring, all solution B was added d...
preparation Embodiment 2
[0037] A low-temperature preparation of a graphene oxide / titanium dioxide composite material with high visible light activity, comprising the steps of:
[0038] (1) The mass ratio of titanium precursor to graphite oxide is 1:0.01, the volume ratio of titanium precursor to deionized water is 1:3, and the volume ratio of titanium precursor to alcohol is 1:0.9, respectively Weigh / measure the precursor of titanium, graphite oxide, deionized water and alcohol;
[0039] (2) Disperse the graphite oxide weighed in step (1) in the deionized water measured in step (1), and perform ultrasonic stripping treatment for 50 minutes to obtain a graphene oxide aqueous dispersion;
[0040] (3) adding acid dropwise to the graphene oxide aqueous dispersion to adjust its pH value to 3 to obtain solution A;
[0041] (4) Dissolving the titanium precursor weighed in step (1) in the alcohol weighed in step (1), stirring evenly to obtain solution B;
[0042] (5) Under stirring, add solution B dropwise...
preparation Embodiment 3
[0046] A low-temperature preparation of a graphene oxide / titanium dioxide composite material with high visible light activity, comprising the steps of:
[0047] (1) The mass ratio of titanium precursor to graphite oxide is 1:0.1, the volume ratio of titanium precursor to deionized water is 1:10, and the volume ratio of titanium precursor to alcohol is 1:1.5, respectively Weigh / measure the precursor of titanium, graphite oxide, deionized water and alcohol;
[0048] (2) Disperse the graphite oxide weighed in step (1) in the deionized water measured in step (1), and perform ultrasonic stripping treatment for 30 minutes to obtain a graphene oxide aqueous dispersion;
[0049] (3) Add acid dropwise to the graphene oxide aqueous dispersion, adjust its pH value to 1, and obtain solution A;
[0050] (4) Dissolving the titanium precursor weighed in step (1) in the alcohol weighed in step (1), stirring evenly to obtain solution B;
[0051] (5) Under stirring, add solution B dropwise to...
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Abstract
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Application Information
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