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    • 1. 发明申请
    • System and Method for Directed Self-Assembly Technique for the Creation of Carbon Nanotube Sensors and Bio-Fuel Cells on Single Plane
    • 用于在单平面上形成碳纳米管传感器和生物燃料电池的定向自组装技术的系统和方法
    • US20100279179A1
    • 2010-11-04
    • US12722622
    • 2010-03-12
    • Reginald C. FarrowZafar IqbalAlokik Kanwal
    • Reginald C. FarrowZafar IqbalAlokik Kanwal
    • H01M8/16
    • B82Y10/00B82Y30/00H01L51/0048H01M8/16Y02E60/527
    • Improved nanotube devices and systems/methods for fabrication thereof are provided. The present disclosure provides systems/methods for depositing controlled numbers of nanotubes with specific properties at predefined locations for the fabrication of nanotube devices. The nanotube devices may be utilized in a range of applications. A bio-fuel cell system that does not require a proton exchange membrane separator and does not need a mediator to transfer charge is provided. This exemplary bio-fuel cell uses enzyme functionalized SWNTs for the anode/cathode. The absence of a membrane in the bio-fuel cell configuration opens up the possibility of other configurations that would otherwise be unfeasible. This includes a bio-fuel cell where the anode/cathode are on the same substrate. Since the electrodes can share the same substrate, the configuration may be integrated with a circuit device on the same substrate. An IC and its power source may be fabricated on the same silicon wafer.
    • 提供了改进的纳米管装置及其制造方法。 本公开提供了用于在用于制造纳米管装置的预定位置处沉积具有特定性质的受控数量的纳米管的系统/方法。 纳米管器件可以在一系列应用中使用。 提供了不需要质子交换膜分离器并且不需要介质以转移电荷的生物燃料电池系统。 该示例性生物燃料电池使用酶官能化的SWNT用于阳极/阴极。 在生物燃料电池配置中不存在膜会打开否则将不可行的其它配置的可能性。 这包括生物燃料电池,其中阳极/阴极位于相同的衬底上。 由于电极可以共享相同的衬底,所以该配置可以与同一衬底上的电路器件集成。 可以在同一硅晶片上制造IC及其电源。
    • 2. 发明授权
    • System and method for directed self-assembly technique for the creation of carbon nanotube sensors and bio-fuel cells on single plane
    • 用于在单平面上创建碳纳米管传感器和生物燃料电池的定向自组装技术的系统和方法
    • US08546027B2
    • 2013-10-01
    • US12722622
    • 2010-03-12
    • Reginald C. FarrowZafar IqbalAlokik Kanwal
    • Reginald C. FarrowZafar IqbalAlokik Kanwal
    • H01M8/16
    • B82Y10/00B82Y30/00H01L51/0048H01M8/16Y02E60/527
    • Improved nanotube devices and systems/methods for fabrication thereof are provided. The present disclosure provides systems/methods for depositing controlled numbers of nanotubes with specific properties at predefined locations for the fabrication of nanotube devices. The nanotube devices may be utilized in a range of applications. A bio-fuel cell system that does not require a proton exchange membrane separator and does not need a mediator to transfer charge is provided. This exemplary bio-fuel cell uses enzyme functionalized SWNTs for the anode/cathode. The absence of a membrane in the bio-fuel cell configuration opens up the possibility of other configurations that would otherwise be unfeasible. This includes a bio-fuel cell where the anode/cathode are on the same substrate. Since the electrodes can share the same substrate, the configuration may be integrated with a circuit device on the same substrate. An IC and its power source may be fabricated on the same silicon wafer.
    • 提供了改进的纳米管装置及其制造方法。 本公开提供了用于在用于制造纳米管装置的预定位置处沉积具有特定性质的受控数量的纳米管的系统/方法。 纳米管器件可以在一系列应用中使用。 提供了不需要质子交换膜分离器并且不需要介质以转移电荷的生物燃料电池系统。 该示例性生物燃料电池使用酶官能化的SWNT用于阳极/阴极。 在生物燃料电池配置中不存在膜会打开否则将不可行的其它配置的可能性。 这包括生物燃料电池,其中阳极/阴极位于相同的衬底上。 由于电极可以共享相同的衬底,所以该配置可以与同一衬底上的电路器件集成。 可以在同一硅晶片上制造IC及其电源。