Invention Grant
- Patent Title: Nanopore sensing by local electrical potential measurement
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Application No.: US17346636Application Date: 2021-06-14
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Publication No.: US11644437B2Publication Date: 2023-05-09
- Inventor: Ping Xie , Charles M. Lieber
- 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
- Agent Theresa A. Lober
- Main IPC: G01N27/327
- IPC: G01N27/327 ; C12Q1/6869 ; G01N27/447 ; B82Y30/00 ; G01N33/487 ; B82Y15/00

Abstract:
There is provided a nanopore sensor including cis and trans fluidic reservoirs. A nanopore is provided in a support structure separating the cis and trans reservoirs. The nanopore has an inlet in fluidic connection with the cis fluidic reservoir and an outlet in fluidic connection with the trans fluidic reservoir. The cis fluidic reservoir has a fluidic access resistance, RC, the trans fluidic reservoir has a fluidic access resistance, RT, and the nanopore has a fluidic resistance, RP. RP is of the same order of magnitude as RT and both RP and RT are at least an order of magnitude greater than RC. An electrical transduction element is disposed at a nanopore sensor site that exposes the transduction element to the trans reservoir. An electrical circuit is connected to the electrical transduction element for producing an electrical signal indicative of changes in electrical potential local to the trans reservoir.
Public/Granted literature
- US20210310987A1 Nanopore Sensing By Local Electrical Potential Measurement Public/Granted day:2021-10-07
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