Method for massively preparing mesoporous BiVO4/Bi2O3 composite micro-rod p-n heterojunction photocatalyst
A catalyst and mesoporous technology, applied in the field of preparation of mesoporous BiVO4/Bi2O3 composite microrods, can solve the problems of difficult synthesis of composite microrods, and achieve the effects of easy control, good repeatability and low product cost
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Embodiment 1
[0022] A preparation of mesoporous BiVO 4 / Bi 2 o 3 A method for composite microrod p-n junction photocatalysts, the preparation of mesoporous BiVO 4 / Bi 2 o 3 The method for composite microrod p-n junction photocatalyst comprises the following steps:
[0023] (1) Weigh 0.1698g (0.35mmol) Bi(NO 3 )3 ·5H 2 O, 0.5g (4.5mmol) PVP, dissolved in 15ml ethylene glycol and dispersed by ultrasonic to form Bi 3+ A homogeneous solution A with a molar concentration of 0.023M, pour solution A into a round bottom flask and magnetically stir at room temperature;
[0024] ⑵ Weigh 0.0375g (0.28mmol) Na 2 C 2 o 4 Dissolved in 10mL distilled water to obtain oxalate (C 2 o 4 2- ) solution B with a molar concentration of 0.028M, adding solution B to solution A dropwise, the solution gradually becomes cloudy, after the addition is completed, stir for 15 to 20 minutes to obtain mixed solution C;
[0025] (3) Weigh 0.0085g (0.07mmol) NaVO 3 Dissolved in 15mL distilled water to obtain m...
Embodiment 2
[0030] A preparation of mesoporous BiVO 4 / Bi 2 o 3 A method for composite microrod p-n junction photocatalysts, the preparation of mesoporous BiVO 4 / Bi 2 o 3 The method for composite microrod p-n junction photocatalyst comprises the following steps:
[0031] (1) Weigh 0.097g (0.2mmol) Bi(NO 3 ) 3 ·5H 2 O, 0.5g (4.5mmol) PVP, dissolved in 15ml ethylene glycol and dispersed by ultrasonic to form Bi 3+ A homogeneous solution A with a molar concentration of 0.013M, pour solution A into a round bottom flask and magnetically stir at room temperature;
[0032] ⑵ Weigh 0.0214g (0.16mmol) Na 2 C 2 o 4 Dissolved in 10mL distilled water to obtain oxalate (C 2 o 4 2- ) Solution B with a molar concentration of 0.016M, adding solution B to solution A dropwise, the solution gradually becomes cloudy, after the addition is completed, stir for 15 to 20 minutes to obtain mixed solution C;
[0033] (3) Weigh 0.0049g (0.04mmol) NaVO 3 Dissolved in 15mL distilled water to obtain m...
Embodiment 3
[0038] A preparation of mesoporous BiVO 4 / Bi 2 o 3 A method for composite microrod p-n junction photocatalysts, the preparation of mesoporous BiVO 4 / Bi 2 o 3 The method for composite microrod p-n junction photocatalyst comprises the following steps:
[0039] (1) Weigh 0.194g (0.4mmol) Bi(NO 3 ) 3 ·5H 2 O, 0.5g (4.5mmol) PVP, dissolved in 15ml ethylene glycol and dispersed by ultrasonic to form Bi 3+ A homogeneous solution A with a molar concentration of 0.027M, pour solution A into a round bottom flask and magnetically stir at room temperature;
[0040] ⑵ Weigh 0.0429g (0.32mmol) Na 2 C 2 o 4 Dissolved in 10mL distilled water to obtain oxalate (C 2 o 4 2- ) Solution B with a molar concentration of 0.032M, adding solution B to solution A dropwise, the solution gradually becomes cloudy, after the addition is completed, stir for 15 to 20 minutes to obtain mixed solution C;
[0041] (3) Weigh 0.0098g (0.08mmol) NaVO 3 Dissolved in 15mL distilled water to obtain m...
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