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    • 9. 发明授权
    • Method for the manufacture of smart paper and smart wood microfibers
    • 智能纸和智能木材微纤维的制造方法
    • US08349131B1
    • 2013-01-08
    • US11928626
    • 2007-10-30
    • Mangilal AgarwalYuri M. LvovKhodadad Varahramyan
    • Mangilal AgarwalYuri M. LvovKhodadad Varahramyan
    • D21F11/00
    • D21F11/00
    • A method is provided for making “smart” paper and “smart” microfibers by means of nanotechnology layer-by-layer techniques. The method comprises forming an aqueous pulp of lignocellulose fibers and nanocoating it by alternatively adsorbing onto the fibers multiple consecutively-applied layers of organized ultra thin and oppositely-charged polyelectrolytes, at least one of which is an electrically conductive polymer or nanoparticle (or a magnetically active polymer or nanoparticle, or an optically active polymer or nanoparticle), and another one of which has a charge opposite of said electrically conductive polymer or nanoparticle (or magnetically active polymer or nanoparticle, or optically active polymer or nanoparticle), thereby making a modified aqueous pulp of electrically conductive (or magnetically active, or optically active) multi-layer nanocoated lignocellulose fibers; then draining the water out of the modified aqueous pulp to form sheets of smart microfibers. A finished paper is manufactured by drying the sheets of the nanocoated multi-layer fibers and processing the dried sheets to make a smart paper having enhanced electrical conductivity, magnetic and/or optical properties.
    • 提供了一种通过纳米技术逐层技术制造智能纸和智能微纤维的方法。 该方法包括形成木质纤维素纤维的水性纸浆并通过交替地吸附到纤维上多次连续施加的有序的超薄和相反电荷的聚电解质的层中进行纳米涂层,其中至少一个是导电聚合物或纳米颗粒(或磁性的) 活性聚合物或纳米颗粒,或光学活性聚合物或纳米颗粒),并且另一个具有与所述导电聚合物或纳米颗粒(或磁性活性聚合物或纳米颗粒或光学活性聚合物或纳米颗粒)相反的电荷, 导电(或磁性活性或光学活性)多层纳米碳酸化木质纤维素纤维的水性纸浆; 然后将水从改性的含水纸浆中排出以形成柔性微纤维片。 通过干燥纳米多层纤维的片材并加工干燥的片材以制造具有增强的导电性,磁性和/或光学性质的智能纸来制造成品纸。