会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • Biomolecule-Based Electronic Device
    • 基于生物分子的电子设备
    • US20100270543A1
    • 2010-10-28
    • US12809646
    • 2008-04-17
    • Jeong-Woo ChoiJun-Hong MinByung-Keun OhHyun-Hee KimYoung-Jun Kim
    • Jeong-Woo ChoiJun-Hong MinByung-Keun OhHyun-Hee KimYoung-Jun Kim
    • H01L51/30
    • G11C13/0014B82Y10/00G11C13/0009G11C13/0019H01L51/0093H01L51/0591
    • The present invention relates to a biomolecule-based electronic device in which the biomolecule with redox potential is directly immobilized on the substrate. The present invention enables to excellently exhibit the capability of a protein-based bio-memory device in which it is preferable to use the substrate on which cysteine-introduced recombinant proteins are effectively immobilized and a self-assembled layer (SAM) is fabricated. It becomes realized that a redox potential is regulated using intrinsic redox potential of the protein dependent on applied voltage. The present invention provides a novel operating method in which three potentials are applied throughout four steps. The present invention has some advantages of fabricating a protein layer in a convenient manner and inducing electron transfer by fundamental electrochemical or electronic operation. The method of this invention is considered as a new concept in the senses that intrinsic electron transfer mechanisms induced by natural-occurring biomolecules are used to develop an information storage device.
    • 本发明涉及一种基于生物分子的电子器件,其中具有氧化还原电位的生物分子直接固定在基底上。 本发明能够优异地表现出蛋白质生物记忆装置的能力,其中优选使用其上有效固定半胱氨酸导入的重组蛋白质的底物和制造自组装层(SAM)。 实现使用依赖于施加电压的蛋白质的固有氧化还原电位来调节氧化还原电位。 本发明提供一种新的操作方法,其中三个电位通过四个步骤施加。 本发明具有以方便的方式制造蛋白质层并通过基本电化学或电子操作诱导电子转移的一些优点。 本发明的方法被认为是用天然存在的生物分子诱导的固有电子传递机制来开发信息存储装置的感觉的新概念。
    • 4. 发明授权
    • Biomolecule-based electronic device
    • 基于生物分子的电子设备
    • US08692233B2
    • 2014-04-08
    • US12809646
    • 2008-04-17
    • Jeong-Woo ChoiJun-Hong MinByung-Keun OhHyun-Hee KimYoung-Jun Kim
    • Jeong-Woo ChoiJun-Hong MinByung-Keun OhHyun-Hee KimYoung-Jun Kim
    • H01L29/08H01L35/24H01L51/00
    • G11C13/0014B82Y10/00G11C13/0009G11C13/0019H01L51/0093H01L51/0591
    • The present invention relates to a biomolecule-based electronic device in which the biomolecule with redox potential is directly immobilized on the substrate. The present invention enables to excellently exhibit the capability of a protein-based bio-memory device in which it is preferable to use the substrate on which cysteine-introduced recombinant proteins are effectively immobilized and a self-assembled layer (SAM) is fabricated. It becomes realized that a redox potential is regulated using intrinsic redox potential of the protein dependent on applied voltage. The present invention provides a novel operating method in which three potentials are applied throughout four steps. The present invention has some advantages of fabricating a protein layer in a convenient manner and inducing electron transfer by fundamental electrochemical or electronic operation. The method of this invention is considered as a new concept in the senses that intrinsic electron transfer mechanisms induced by natural-occurring biomolecules are used to develop an information storage device.
    • 本发明涉及一种基于生物分子的电子器件,其中具有氧化还原电位的生物分子直接固定在基底上。 本发明能够优异地表现出蛋白质生物记忆装置的能力,其中优选使用其上有效固定半胱氨酸导入的重组蛋白质的底物和制造自组装层(SAM)。 实现使用依赖于施加电压的蛋白质的固有氧化还原电位来调节氧化还原电位。 本发明提供一种新的操作方法,其中三个电位通过四个步骤施加。 本发明具有以方便的方式制造蛋白质层并通过基本电化学或电子操作诱导电子转移的一些优点。 本发明的方法被认为是用天然存在的生物分子诱导的固有电子传递机制来开发信息存储装置的感觉的新概念。