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    • 7. 发明申请
    • SURFACE-MODIFIED NANOPARTICLE INK FOR PHOTOVOLTAIC APPLICATIONS
    • 用于光伏应用的表面改性纳米油墨
    • WO2013010029A2
    • 2013-01-17
    • PCT/US2012046542
    • 2012-07-12
    • APPLIED NANOTECH HOLDINGS INCNOVAK JAMES PLI YUNJUN
    • NOVAK JAMES PLI YUNJUN
    • H01L31/18
    • H01L31/022425H01B1/16Y02E10/50
    • Described herein is a novel material that easily penetrates silicon nitride-based anti-reflective coatings, forming a high quality electrical contact. A method for metallization on a solar cell includes depositing a passivation layer on a silicon substrate of a solar cell, depositing derivatized metal particles onto the passive layer, heating the substrate of the solar cell to migrate surface coatings from the derivatized metal particles onto the passivation layer creating a diffusion channel through the passivation layer to the silicon substrate, and as the metal particles melt due to the heating on the substrate, the melted metal diffuses through the diffusion channel forming a metallic content with the silicon substrate.
    • 这里描述的是一种新颖的材料,其易于渗透基于氮化硅的抗反射涂层,形成高质量的电接触。 一种用于在太阳能电池上进行金属化的方法包括在太阳能电池的硅衬底上沉积钝化层,将衍生的金属颗粒沉积到钝化层上,加热太阳能电池的衬底以将表面涂层从衍生的金属颗粒迁移到钝化层上 层形成通过钝化层到硅衬底的扩散通道,并且当金属颗粒由于衬底上的加热而熔化时,熔融的金属通过与硅衬底形成金属含量的扩散通道扩散。
    • 9. 发明申请
    • FIELD EMISSION DEVICE AND METHOD OF FABRICATING SAME
    • 场发射装置及其制造方法
    • WO03046255A8
    • 2004-04-01
    • PCT/SG0200274
    • 2002-11-26
    • UNIV NANYANGSUN ZHUOTAY BENG KANGLAU SHU PINGLI YUNJUN
    • SUN ZHUOTAY BENG KANGLAU SHU PINGLI YUNJUN
    • C23C14/06C23C14/58C23C16/30C23C16/56H01J9/02C23C16/06C23C16/26
    • B82Y30/00B82Y10/00C23C14/06C23C14/58C23C16/30C23C16/56H01J9/025
    • This invention relates to a method of fabricating a field emission device (FED) by using a carbon composite film, the composite film providing a field emission layer which consists of fine carbon-metal grains and/or carbon nanotubes, so that (a) a threshold voltage required for emitting electrons from the field emission device can be lowered significantly; (b) a stable electron beam of the field emission display device can be increased; and, (c) emission Uniformity and emission spot density can be greatly improved. The fabrication method involves preparing a metal-carbon composite film on a suitable substrate using an appropriate deposition technique. The carbon composite film is then thermally treated post-deposition, so as to form nano-particles and/or nanotubes in the film. Post-treatment of the composite film may involve annealing or plasma etching using hydrogen or hydrocarbon gas to reduce the electron emission barrier. During deposition of the metal-carbon composite film, the composition of the metal content in the film can be tuned to control the field emission properties of the field emission component.
    • 本发明涉及通过使用碳复合膜制造场发射器件(FED)的方法,该复合膜提供由细碳 - 金属颗粒和/或碳纳米管组成的场发射层,使得(a) 可以显着降低从场发射装置发射电子所需的阈值电压; (b)可以增加场致发射显示装置的稳定电子束; (c)排放均匀度和排放点密度可大大提高。 制造方法包括使用适当的沉积技术在合适的基底上制备金属 - 碳复合膜。 然后将碳复合膜在沉积后进行热处理,以便在膜中形成纳米颗粒和/或纳米管。 复合膜的后处理可以包括使用氢气或烃气体的退火或等离子体蚀刻以减少电子发射势垒。 在沉积金属 - 碳复合膜期间,可以调节膜中金属含量的组成以控制场致发射组分的场发射特性。