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    • 9. 发明申请
    • Molecular structures for gas sensing and devices and methods therewith
    • 气体传感器的分子结构及其装置及方法
    • US20060293169A1
    • 2006-12-28
    • US11178658
    • 2005-07-08
    • Duraiswamy SrinivasanAnis ZribiRashmi RaoRajappan Vetrivel
    • Duraiswamy SrinivasanAnis ZribiRashmi RaoRajappan Vetrivel
    • B01J29/04H05F3/00
    • C01B39/04B82Y15/00B82Y30/00D01D5/003D01F9/10
    • A porous nanozeolite material having a first dimension less than about 1 micron and a second dimension less than about 100 microns. The nanozeolite material comprises pores having an average diameter less than about 50 nm. A method of making microporous nanozeolites is provided. The method comprises the steps of providing an aqueous solution comprising at least one nanozeolite precursor material or zeolite particles, and electrospinning the aqueous solution onto a substrate to form an electrospun material. The electrospun material comprises microporous nanozeolites. A method of making mesoporous nanozeolites is also provided. The method comprises the step of providing an aqueous solution comprising a nanozeolite precursor material and at least one structure directing agent, and electrospinning the aqueous solution onto a substrate to form an electrospun mesoporous nanozeolite material. A gas sensor device is provided. The device comprises nanozeolite sensing material.
    • 具有小于约1微米的第一尺寸和小于约100微米的第二尺寸的多孔纳米沸石材料。 纳米沸石材料包括平均直径小于约50nm的孔。 提供了制造微孔纳米沸石的方法。 该方法包括以下步骤:提供包含至少一种纳米沸石前体材料或沸石颗粒的水溶液,并将该水溶液静电纺丝到基底上以形成电纺丝材料。 电纺材料包括微孔纳米沸石。 还提供了制备介孔纳米沸石的方法。 该方法包括提供包含纳米沸石前体材料和至少一种结构导向剂的水溶液的步骤,并将该水溶液静电纺丝到基底上以形成电纺丝介孔纳米沸石材料。 提供了一种气体传感器装置。 该装置包括纳米沸石传感材料。