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Qianfeng Xu

from Staten Island, NY
Age ~41

Qianfeng Xu Phones & Addresses

  • 637 Wilson Ave, Staten Island, NY 10312
  • Chester, VA

Work

Company: Arl designs llc Aug 2015 Position: Chief scientist

Education

Degree: Doctorates, Doctor of Philosophy School / High School: Shanghai Jiao Tong University 2006 to 2010 Specialities: Materials Science

Skills

Nanotechnology • Spectroscopy • Materials Science • Afm • Science • Tem • Nanomaterials • Microscopy • Characterization • Electron Microscopy • Surface Chemistry • Nanoparticles • Uv/Vis • Chemistry • Entrepreneurship • Dls • Communication • Creative Strategy • Design For Manufacturing • Differential Scanning Calorimetry • Innovation Development • Nmr • Polymers • Powder X Ray Diffraction • Scanning Electron Microscopy • Start Up Ventures • Technical Staff Management • Tenacious Work Ethic • Tga

Languages

Mandarin • English

Industries

Nanotechnology

Resumes

Resumes

Qianfeng Xu Photo 1

Chief Scientist

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Location:
Staten Island, NY
Industry:
Nanotechnology
Work:
Arl Designs Llc
Chief Scientist

Arl Designs Llc Jul 2012 - Jul 2015
Senior Scientist

City University of New York Aug 2010 - Jul 2015
Research Scientist
Education:
Shanghai Jiao Tong University 2006 - 2010
Doctorates, Doctor of Philosophy, Materials Science
Huazhong University of Science and Technology 2003 - 2006
Masters, Engineering
Skills:
Nanotechnology
Spectroscopy
Materials Science
Afm
Science
Tem
Nanomaterials
Microscopy
Characterization
Electron Microscopy
Surface Chemistry
Nanoparticles
Uv/Vis
Chemistry
Entrepreneurship
Dls
Communication
Creative Strategy
Design For Manufacturing
Differential Scanning Calorimetry
Innovation Development
Nmr
Polymers
Powder X Ray Diffraction
Scanning Electron Microscopy
Start Up Ventures
Technical Staff Management
Tenacious Work Ethic
Tga
Languages:
Mandarin
English

Publications

Us Patents

Polymer Having Superhydrophobic Surface

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US Patent:
20130251948, Sep 26, 2013
Filed:
Mar 12, 2013
Appl. No.:
13/796908
Inventors:
QianFeng Xu - Staten Island NY, US
International Classification:
B32B 5/16
B32B 27/04
B32B 3/30
US Classification:
428148, 428143, 428149, 427180, 427201
Abstract:
The disclosure relates to a superhydrophobic surface. Methods of fabrication are disclosed including laminating a polymer sheet having a surface to a template having a textured surface or a layer of a nanomaterial (e.g., nanoparticles or nanofibers) to convert the surface of the polymer sheet to a hydrophobic surface having a water contact angle of at least about 150.

Singlet Oxygen Generating Device For Selective Destruction Of Pathogens

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US Patent:
20210138258, May 13, 2021
Filed:
Nov 16, 2020
Appl. No.:
17/099273
Inventors:
- New York NY, US
- New Providence NJ, US
QianFeng Xu - Staten Island NY, US
International Classification:
A61N 5/06
A61K 41/00
A61L 2/18
A61L 2/26
C02F 1/72
C02F 1/50
Abstract:
A device for generating singlet oxygen is provided. The device has a sensitizer that converts triplet oxygen to single oxygen upon exposure to light. The device is configured to keep the sensitizer from contacting external fluids.

Center-Side Method Of Producing Superhydrophobic Surface

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US Patent:
20180281371, Oct 4, 2018
Filed:
Jun 4, 2018
Appl. No.:
15/997099
Inventors:
- New York NY, US
QianFeng Xu - Staten Island NY, US
International Classification:
B32B 27/32
B32B 27/30
B32B 37/00
B32B 7/06
Abstract:
A method for forming a superhydrophobic surface is disclosed. A surface of a first substrate is bonded to a surface of a second substrate to form a stacked material. The stacked material is peeled apart to form a fracture line and provide a superhydrophobic surface.

Singlet Oxygen Generating Device For Selective Destruction Of Pathogens

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US Patent:
20180099063, Apr 12, 2018
Filed:
Oct 10, 2017
Appl. No.:
15/729005
Inventors:
- New York NY, US
- New Providence NJ, US
QianFeng Xu - Staten Island NY, US
International Classification:
A61L 2/26
A61L 2/20
A61C 17/02
Abstract:
A device for generating singlet oxygen is provided. The device has elongated posts extending from a surface, the lateral sides of which have particles with a sensitizer that converts triplet oxygen to single oxygen upon exposure to light. An optical fiber conveys light to the sensitizer and a gas supply tube conveys oxygen to the sensitizer. The device is configured to keep the sensitizer from contacting external fluids, such as saliva.

Center-Side Method Of Producing Superhydrophobic Surface

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US Patent:
20160332415, Nov 17, 2016
Filed:
Jan 16, 2015
Appl. No.:
15/112307
Inventors:
- New York NY, US
QianFeng Xu - Staten Island NY, US
International Classification:
B32B 3/30
B32B 37/00
B32B 27/32
B32B 7/06
B32B 27/08
Abstract:
A method for forming a superhydrophobic surface is disclosed. A surface of a first substrate is bonded to a surface of a second substrate to form a stacked material. The stacked material is peeled apart to form a fracture line and provide a superhydrophobic surface.

Flexible Fabric Having Superhydrophobic Surface

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US Patent:
20160160436, Jun 9, 2016
Filed:
Mar 20, 2014
Appl. No.:
14/221059
Inventors:
- New York NY, US
QianFeng Xu - Staten Island NY, US
Assignee:
Research Foundation of the City University of New York - New York NY
International Classification:
D06M 15/227
B29C 41/22
Abstract:
The disclosure relates to a superhydrophobic surface. Methods of fabrication are disclosed including laminating an optically transparent polymer sheet with hydrophobic nanoparticles such that the nanoparticles are partially embedded and partially exposed. The resulting assembly remains optically transparent. Additional methods include the lamination of nanoparticles to flexible fabrics and the production of molded articles using nanoparticle-treated molds.

Polymer Having Superhydrophobic Surface

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US Patent:
20150224539, Aug 13, 2015
Filed:
Apr 20, 2015
Appl. No.:
14/690605
Inventors:
- New York NY, US
QianFeng Xu - Staten Island NY, US
International Classification:
B05D 5/00
Abstract:
The disclosure relates to a superhydrophobic surface. Methods of fabrication are disclosed including laminating a polymer sheet having a surface to a template having a textured surface or a layer of a nanomaterial (e.g., nanoparticles or nanofibers) to convert the surface of the polymer sheet to a hydrophobic surface having a water contact angle of at least about 150.

Polymer Having Optically Transparent Superhydrophobic Surface

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US Patent:
20140106127, Apr 17, 2014
Filed:
Oct 21, 2013
Appl. No.:
14/058707
Inventors:
- New York NY, US
QianFeng Xu - Staten Island NY, US
International Classification:
G02B 1/12
US Classification:
428143, 427164
Abstract:
The disclosure relates to an optically transparent superhydrophobic surface. Methods of fabrication are disclosed including laminating an optically transparent polymer sheet with hydrophobic nanoparticles such that the nanoparticles are partially embedded and partially exposed. The resulting assembly remains optically transparent.
Qianfeng Xu from Staten Island, NY, age ~41 Get Report