IP Library Granted Patent US 9,995,683
Granted Patent B2
US 9,995,683 · App. 14/308,477 · Granted Jun 12, 2018

Apparatus for single-molecule detection

Inventors: Chung-Fan Chiou (Hsinchu, TW); Rung-Ywan Tsai (Taoyuan, TW); Yu-Tang Li (Tucheng, TW); Chih-Tsung Shih (Hsinchu, TW); Ming-Chia Li (Dajia Township, TW); Chang-Sheng Chu (Hsinchu, TW); Shuang-Chao Chung (Zhongli, TW); Jung-Po Chen (Toufen Township, TW); Ying-Chih Pu (Tainan, TW)
Assignee: Industrial Technology Research Institute
G01N21/6486B82Y15/00G01N21/645G01N21/648G01N21/7703G01N33/54373G01N2021/6482G01N2021/6484G01N2201/088Y10S977/954Y10S977/957Y10S977/958Y10T436/143333Y10T436/145555
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Quick Facts
Patent No.
US 9,995,683
App. No.
14/308,477
Granted
Jun 12, 2018
Kind
B2
Abstract

An apparatus for detecting an object capable of emitting light. The apparatus includes a light source and a waveguide. The waveguide includes a core layer and a first cladding layer. At least one nanowell is formed in at least the first cladding layer. The apparatus further includes a light detector. The light detector can detect a light emitted from a single molecule object contained in the at least one nanowell.

Claims (30)

1. A single molecule detection apparatus, comprising:

a planar waveguide comprising:

a core layer;

a first cladding layer; and

a second cladding layer, wherein

the first cladding layer and the second cladding layer are arranged at opposite sides of the core layer, and

at least one nanowell is formed in at least the first cladding layer;

at least one light detector; and

an opaque layer arranged between the planar waveguide and the detector, the opaque layer being made of a metal or an alloy,

wherein the opaque layer has a hole arranged between the at least one nanowell and the light detector so as to allow a light emitted from a single molecule object contained in the at least one nanowell to reach the light detector.

2. The detection apparatus of claim 1 , wherein:

the light detector is formed on or in a substrate, and

the at least one nanowell and the light detector are arranged at opposite sides of the waveguide.

3. The detection apparatus of claim 1 , wherein the light detector includes a multi-junction photodiode.

4. The detection apparatus of claim 1 ,

wherein the core layer includes an exposed portion not covered by the first cladding layer,

the detection apparatus further comprising:

a patterned grating arranged on the exposed portion of the core layer.

5. The detection apparatus of claim 1 , further comprising:

an optical filter arranged between the waveguide and the light detector, the optical filter allowing a light emitted from an object in the at least one nanowell to pass through and reducing a noise caused by an excitation light.

6. The detection apparatus of claim 1 , wherein the opaque layer is made from a material chosen from Al, Ti, Ni, Cr, Au, Ag, Cu, Pt, and Pd, or an alloy of any two or more thereof.

7. The detection apparatus of claim 1 , wherein a surface roughness of the core layer is less than about 0.3 nm.

8. The detection apparatus of claim 1 , further comprising:

a light source configured to emit an excitation light,

wherein a size of a bottom of the at least one nanowell is smaller than about a wavelength of the excitation light.

9. The detection apparatus of claim 1 , wherein an angle of a sidewall of the at least one nanowell relative to a direction perpendicular to a bottom of the at least one nanowell is less than about 60 degree.

10. The detection apparatus of claim 1 ,

wherein the opaque layer is a first opaque layer,

the detection apparatus further comprising a second opaque layer arranged over the first cladding layer.

11. The detection apparatus of claim 1 , wherein the opaque layer includes a nanostructured pattern functioning as a grating.

Assignments (1)
EXCLUSIVE LICENSE AGREEMENT Recorded Jun 13, 2019
From: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
To: PERSONAL GENOMICS TAIWAN, INC.
Reel/Frame 049454/0331 →
Continuity (3)
Division 12805411 · Jul 29, 2010
Continuation In Part 12805503 · Jun 11, 2010
Related Publication 20140367589A1 · Dec 18, 2014