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    • 63. 发明授权
    • Heat radiation reflective film and method for producing the same, and heat radiation reflector
    • 散热反射膜及其制造方法及散热反射镜
    • US09366788B2
    • 2016-06-14
    • US14004502
    • 2012-03-12
    • Akihisa Nakajima
    • Akihisa Nakajima
    • G02B5/08G02B5/28
    • G02B5/0816G02B5/08G02B5/0808G02B5/085G02B5/281G02B5/282
    • To provide a heat radiation reflective film which has a high heat radiation reflectance and good adherence property (peel resistance), which can have a large surface area, and which de-emphasizes certain visible reflected lights; and a method for producing the film. And to provide a heat radiation reflector which includes the heat radiation reflective film as described above. A heat radiation reflective film comprising: at least one heat radiation reflective unit on one surface of a support, the unit comprising: at least 6 laminated layers, each layer having a different refractive index from an adjacent layer, wherein a first unit as one of the heat radiation reflective units comprises the layer closest to the support having a thickness which is 3 times or more of the thickness of the layer farthest from the support.
    • 提供具有高的散热反射率和良好的附着性(耐剥离性)的散热反射膜,其可以具有大的表面积,并且不强调某些可见的反射光; 以及该膜的制造方法。 并且提供一种包括如上所述的散热反射膜的散热反射器。 一种散热反射膜,包括:在支撑体的一个表面上的至少一个散热反射单元,所述单元包括:至少6个层压层,每个层具有与相邻层不同的折射率,其中第一单元为 热辐射反射单元包括最靠近支撑体的层,其厚度是距离支撑件最远的层的厚度的3倍或更多。
    • 64. 发明申请
    • HEAT RADIATION REFLECTIVE FILM AND METHOD FOR PRODUCING THE SAME, AND HEAT RADIATION REFLECTOR
    • 热辐射反射膜及其制造方法和热辐射反射器
    • US20140002895A1
    • 2014-01-02
    • US14004502
    • 2012-03-12
    • Akihisa Nakajima
    • Akihisa Nakajima
    • G02B5/08
    • G02B5/0816G02B5/08G02B5/0808G02B5/085G02B5/281G02B5/282
    • [Object]To provide a heat radiation reflective film which has a high heat radiation reflectance and good adherence property (peel resistance), which can have a large surface area, and which de-emphasizes certain visible reflected lights; and a method for producing the film. And to provide a heat radiation reflector which includes the heat radiation reflective film as described above.[Means of Realizing the Object]A heat radiation reflective film comprising: at least one heat radiation reflective unit on one surface of a support, the unit comprising: at least 6 laminated layers, each layer having a different refractive index from an adjacent layer, wherein a first unit as one of the heat radiation reflective units comprises the layer closest to the support having a thickness which is 3 times or more of the thickness of the layer farthest from the support.
    • 本发明提供一种热辐射反射膜,具有高的散热反射率和良好的附着性(剥离阻力),其可以具有大的表面积,并且不强调某些可视反射光; 以及该膜的制造方法。 并且提供一种包括如上所述的散热反射膜的散热反射器。 实现对象的手段一种散热反射膜,包括:在支撑体的一个表面上的至少一个散热反射单元,该单元包括:至少6个层压层,每个层具有与相邻层不同的折射率, 其中作为所述散热反射单元之一的第一单元包括最靠近所述支撑体的所述层的厚度是距所述支撑件最远的层的厚度的3倍或更多。
    • 67. 发明申请
    • DNA amplification method
    • DNA扩增方法
    • US20050112625A1
    • 2005-05-26
    • US10920271
    • 2004-08-18
    • Akihisa Nakajima
    • Akihisa Nakajima
    • C12P19/34C12Q1/68
    • C12Q1/6844C12Q2565/113
    • A DNA amplification method is disclosed, comprising (a) denaturing a DNA to separate a double-stranded DNA into two single-stranded DNA, (b) hybridizing two types of oligonucleotides which were designed so that the end of the 3′ side of the region of a sequence to be amplified is identified and hybridized with each single-stranded DNA that has been separated, (c) elongating the oligonucleotides with a DNA polymerase in the presence of deoxyribonycleotide triphosphate, and (d) repeating steps (a) through (c) to perform DNA amplification, wherein in step (b), the two types of oligonucleotides are oligonucleotides in which a polymer having a lower critical solution temperature is linked to the 5′ end.
    • 公开了一种DNA扩增方法,其包括(a)使DNA变性以将双链DNA分离成两条单链DNA,(b)将两种类型的寡核苷酸杂交以使得3'侧的末端 确定待扩增序列的区域,并与已分离的单链DNA杂交,(c)在脱氧核糖核酸三磷酸存在下用DNA聚合酶延长寡核苷酸,和(d)重复步骤(a)至( c)进行DNA扩增,其中在步骤(b)中,两种类型的寡核苷酸是其中具有较低临界溶解温度的聚合物与5'端连接的寡核苷酸。