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    • 43. 发明公开
    • p-i-n 나노선을 이용한 태양전지
    • 太阳能电池利用P-I-N NANOWIRE
    • KR1020110003751A
    • 2011-01-13
    • KR1020090061182
    • 2009-07-06
    • 한양대학교 산학협력단
    • 김태환유주형정재훈이재석박원일
    • H01L31/04
    • H01L31/03529H01L31/035281Y02E10/50
    • PURPOSE: A solar cell using p-i-n nanowire is provided to absorb solar light in wide wavelength band without loss by forming a semiconductor structure and an organic compound structure in a vertical parallel structure. CONSTITUTION: A lower electrode(110) is based on a conductive material. A semiconductor layer(120) is formed on the lower electrode. A photoelectromotive layer(130) comprises a semiconductor structure(133) and an organic compound structure(136). The semiconductor structure comprises core-nano wire(131) and cell-nano wire(132). The organic compound structure comprises conductive polymer(134) and nano particle(135). An upper electrode(140) is formed on the photoelectromotive layer.
    • 目的:提供使用p-i-n纳米线的太阳能电池,通过在垂直平行结构中形成半导体结构和有机化合物结构来吸收宽波段的太阳光而不损失。 构成:下电极(110)基于导电材料。 半导体层(120)形成在下电极上。 光电动层(130)包括半导体结构(133)和有机化合物结构(136)。 半导体结构包括芯 - 纳米线(131)和电池 - 纳米线(132)。 有机化合物结构包括导电聚合物(134)和纳米颗粒(135)。 上电极(140)形成在光电动层上。
    • 46. 发明授权
    • 다중 씨드층을 이용한 산화아연 나노구조체 제조방법
    • 通过使用多层植物制备ZNO纳米结构的方法
    • KR101256757B1
    • 2013-04-23
    • KR1020110112284
    • 2011-10-31
    • 한양대학교 산학협력단
    • 박원일이원우이재석
    • C01B13/08C30B7/10B82B3/00B82Y40/00
    • C01G9/02C01P2004/64C23C14/086C30B29/16
    • PURPOSE: A method of manufacturing a zinc oxide nanostructure is provided to form zinc oxide nanostructure in a desired shape in a desired position by controlling seed layers through combination of substrate-deposition method and using patterning, and to grow various shapes of nanostructures simultaneously by forming multiple seed layers on one substrate and applying the hydrothermal synthesis on the multiple seed layers. CONSTITUTION: A method of manufacturing a zinc oxide nanostructure comprises the following steps: a step of forming a first zinc oxide seed layer(200) and a second zinc oxide seed layer(400) on the substrate(100); a step of forming resist patterns on the first and second zinc oxide seed layers; and a step of growing a first zinc oxide nanostructure(600) and a second zinc oxide nanostructure(700) on the first and second zinc oxide seed layers exposed between the resist patterns using the hydrothermal synthesis. The crystal orientation is determined by combination of types of substrate and deposition method in the first and second zinc oxide seed layers. The crystal orientation in the first and second zinc oxide seed layers is different.
    • 目的:提供一种制造氧化锌纳米结构的方法,通过组合基板沉积方法和使用图案化来控制晶种层,通过形成多种形状的纳米结构同时形成所需形状的氧化锌纳米结构,形成所需形状的氧化锌纳米结构 一个底物上的多个种子层并在多个种子层上施加水热合成。 构成:制造氧化锌纳米结构体的方法包括以下步骤:在基板(100)上形成第一氧化锌种子层(200)和第二氧化锌种子层(400)的步骤; 在第一和第二氧化锌籽晶层上形成抗蚀剂图案的步骤; 以及使用水热合成在暴露在抗蚀剂图案之间的第一和第二氧化锌种子层上生长第一氧化锌纳米结构(600)和第二氧化锌纳米结构(700)的步骤。 晶体取向通过第一和第二氧化锌种子层中的衬底类型和沉积方法的组合来确定。 第一和第二氧化锌种子层中的晶体取向不同。