首页> 外国专利> GAS SENSOR AND MEMBER USING METAL OXIDE SEMICONDUCTOR NANOFIBERS INCLUDING NANOPARTICLE CATALYST FUNCTIONALIZED BY BIFUNCTIONAL NANO-CATALYST INCLUDED WITHIN APOFERRITIN, AND MANUFACTURING METHOD THEREOF

GAS SENSOR AND MEMBER USING METAL OXIDE SEMICONDUCTOR NANOFIBERS INCLUDING NANOPARTICLE CATALYST FUNCTIONALIZED BY BIFUNCTIONAL NANO-CATALYST INCLUDED WITHIN APOFERRITIN, AND MANUFACTURING METHOD THEREOF

机译:包含载铁铁蛋白内的功能性纳米催化剂作用的包含纳米颗粒催化剂的金属氧化物半导体纳米气体传感器及其制备方法

摘要

The inventive concepts relate to a member for a gas sensor, a gas sensor using the same and a manufacturing method thereof, and more particularly, to a member for a gas sensor using a one-dimensional metal oxide nanofiber complex material containing hetero nanoparticle catalysts synthesized using apo-ferritins, a gas sensor using the same, and a manufacturing method thereof.;According to embodiments of the inventive concepts, apo-ferritins containing hetero nanoparticle catalysts are mixed with an electrospinning solution, the mixture solution is electrospun to form complex nanofibers, and then a high-temperature thermal treatment process is performed to remove the apo-ferritins. Thus, the hetero nanoparticle catalysts are uniformly fastened to an inside and a surface of one-dimensional metal oxide nanofibers to form a member for a gas sensor. As a result, the member for a gas sensor has a high-sensitivity characteristic capable of sensing a very small amount of a gas and excellent selectivity capable of sensing various gases. In addition, a catalyst effect is maximized by the hetero nanoparticle catalysts uniformly distributed without aggregation. Furthermore, the member for a gas sensor and the gas sensor using the same can be mass-produced by a process method capable of effectively forming pores and of fastening high-performance catalysts.
机译:本发明构思涉及一种用于气体传感器的构件,使用该构件的气体传感器及其制造方法,并且更具体地涉及一种使用包含合成的杂纳米粒子催化剂的一维金属氧化物纳米纤维复合材料的用于气体传感器的构件。使用脱铁铁蛋白,使用其的气体传感器及其制造方法;根据本发明构思的实施方式,将含有杂纳米颗粒催化剂的脱铁铁蛋白与电纺丝溶液混合,将所述溶液静电纺丝以形成复合纳米纤维。 ,然后进行高温热处理工艺以去除载脂铁蛋白。因此,将杂化纳米颗粒催化剂均匀地固定在一维金属氧化物纳米纤维的内部和表面上,以形成用于气体传感器的构件。结果,用于气体传感器的构件具有能够感测非常少量的气体的高灵敏度特性以及能够感测各种气体的优异的选择性。另外,通过均匀地分布而没有聚集的杂纳米粒子催化剂使催化剂效果最大化。此外,用于气体传感器的构件和使用该构件的气体传感器可以通过能够有效地形成孔并固定高性能催化剂的处理方法来批量生产。

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