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Apparatus and Method for 2D-based Optoelectronic Imaging

技术优势
- Simultaneously high spatial, voltaic, and temporal resolutions - Large-scale parallel imaging of electric fields, voltage, acidity, strain, and bioelectric dynamics - Compatible with simultaneous, complementary microscopy measurements - Operates under a wide range of chemical and thermal conditions - Compatible with the standard fabrication techniques - Proven detection capabilities
技术应用
- Low-cost and high-throughput drug screening for cardiac and neuronal research and therapy - Chemical and physical analysis for microfluidics / lab-on-a-chip point-of-care diagnostics - Battery technologies
详细技术说明
None
*Abstract
The use of electric fields for signaling and manipulation is widespread, mediating systems spanning the action potentials of neuron and cardiac cells to battery technologies and lab-on-a-chip devices. Current FET- and dye-based techniques to detect electric field effects are systematically difficult to scale, costly, or perturbative. Researchers at the University of California Berkeley have developed an optical detection platform, based on the unique optoelectronic properties of two-dimensional materials that permits high-resolution imaging of electric fields, voltage, acidity, strain and bioelectric action potentials across a wide field-of-view.
*IP Issue Date
Sep 14, 2017
*Principal Investigation

Name: Halleh Baratloo Balch

Department:


Name: Jason Shih An Horng

Department:


Name: Feng Wang

Department:

申请号码
WO2017156534
其他

Tech ID/UC Case

25733/2016-127-0


Related Cases

2016-127-0

国家/地区
美国

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