Invention Grant
US09541522B2 Nanoscale field-effect transistors for biomolecular sensors and other applications
有权
用于生物分子传感器和其他应用的纳米级场效应晶体管
- Patent Title: Nanoscale field-effect transistors for biomolecular sensors and other applications
- Patent Title (中): 用于生物分子传感器和其他应用的纳米级场效应晶体管
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Application No.: US14427484Application Date: 2013-09-12
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Publication No.: US09541522B2Publication Date: 2017-01-10
- Inventor: Charles M. Lieber , Hwan Sung Choe , Xueliang Liu
- Applicant: President and Fellows of Harvard College
- Applicant Address: US MA Cambridge
- Assignee: President and Fellows of Harvard College
- Current Assignee: President and Fellows of Harvard College
- Current Assignee Address: US MA Cambridge
- Agency: Wolf, Greenfield & Sacks, P.C.
- International Application: PCT/US2013/059454 WO 20130912
- International Announcement: WO2014/043341 WO 20140320
- Main IPC: G01N27/414
- IPC: G01N27/414 ; H04N1/00 ; G01N33/573 ; H03K17/687

Abstract:
The present invention generally relates to nanoscale wires, including to nanoscale wires used as sensors. In some cases, the nanoscale wires may be used to directly determine analytes, even within relatively complicated environments such as blood, unlike many prior art techniques. In some aspects, the nanoscale wire form at least a portion of the gate of a field-effect transistor, and in certain aspects, different periodically-varying voltages or other electrical signals may be applied to the field-effect transistor. For example, in one set of embodiments, sinusoidally-varying voltages of different frequencies may be applied to the nanoscale wire and the source electrode of the field-effect transistor. The electrical conductance or other properties of the nanoscale wire in response to the periodically-varying voltages may then be determined and used to determine binding of the species.
Public/Granted literature
- US20150212039A1 NANOSCALE FIELD-EFFECT TRANSISTORS FOR BIOMOLECULAR SENSORS AND OTHER APPLICATIONS Public/Granted day:2015-07-30
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