A preparation method and application of titanium dioxide/indium vanadate heterostructure nanofibers
A nanofiber, heterostructure technology, applied in chemical instruments and methods, metal/metal oxide/metal hydroxide catalysts, fiber processing, etc., can solve the problem of uneven distribution of heterojunctions, difficult to control sample morphology, Problems such as redundant experimental steps, to achieve the effect of enhancing gas sensitivity, stable heterostructure, and simple preparation process
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Embodiment 1
[0039] (1) 0.68g of tetrabutyl titanate, 1.6g of absolute ethanol, 1.68g of glacial acetic acid and 0.28g of polyvinylpyrrolidone (average molecular weight: 1,300,000) were mixed and stirred for 2 hours to form a homogeneous solution, which was designated as solution A; 0.18g of vanadium oxide diacetylacetonate, 0.19g of hydrated indium nitrate (In(NO 3 ) 3 ﹒ 4.5H 2 (0), 0.16g of polyvinylpyrrolidone (average molecular weight is 1300000) and 2g of dimethylacetamide mixed and stirred for 1h to form a homogeneous solution and denoted as solution B; finally the uniformly stirred A solution and B solution were mixed and then stirred for 5h until the solution is uniform, TBT / In(NO 3 ) 3 / VO(acac) 2 / PVP electrospinning precursor solution.
[0040] (2) The viscous mixed solution C is spun by electrospinning to obtain nanofibers. The specific parameters of electrospinning are as follows: the inner diameter of the electrospinning needle is 0.4 mm, and the distance between the bo...
Embodiment 2
[0052] (1) 0.34g of tetrabutyl titanate, 0.8g of absolute ethanol, 0.84g of glacial acetic acid and 0.14g of polyvinylpyrrolidone (average molecular weight: 1,300,000) were mixed and stirred for 1 hour to form a homogeneous solution, which was designated as solution A; 0.18g of vanadium oxide diacetylacetonate, 0.19g of hydrated indium nitrate (In(NO 3 ) 3 ﹒ 4.5H 2 (2), the polyvinylpyrrolidone (average molecular weight is 1300000) of 0.16g and the dimethylacetamide of 2g are mixed and stirred for 1h to form a homogeneous solution and be referred to as solution B; finally the A solution and the B solution that are stirred are mixed and stirred for 2h to Evenly, TBT / In(NO 3 ) 3 / VO(acac) 2 / PVP electrospinning precursor solution.
[0053] (2) The viscous mixed solution C is spun by electrospinning to obtain nanofibers. The specific parameters of electrospinning are as follows: the inner diameter of the electrospinning needle is 0.4 mm, and the distance between the bottom ...
Embodiment 3
[0056] (1) 0.34g of tetrabutyl titanate, 0.8g of absolute ethanol, 0.84g of glacial acetic acid and 0.18g of polyvinylpyrrolidone (average molecular weight: 1,300,000) were mixed and stirred for 1 hour to form a homogeneous solution, which was designated as solution A; With 0.27g vanadium diacetylacetonate, 0.38g hydrated indium nitrate (In(NO 3 ) 3 ﹒ 4.5H 2 O), 0.32g of polyvinylpyrrolidone (average molecular weight is 1300000) and dimethylacetamide of 4g are mixed and stirred for 1h to form a homogeneous solution, which is referred to as solution B; finally the uniformly stirred A solution is mixed with the B solution and stirred for 3h to uniformity, TBT / In(NO 3 ) 3 / VO(acac) 2 / PVP electrospinning precursor solution.
[0057] (2) The viscous mixed solution C is spun by electrospinning to obtain nanofibers. The specific parameters of electrospinning are as follows: the inner diameter of the electrospinning needle is 0.4 mm, and the distance between the bottom end of t...
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