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Yuan Nie Phones & Addresses

  • Hanover, NH
  • Lebanon, NH
  • West Lebanon, NH

Resumes

Resumes

Yuan Nie Photo 1

Microchip For Cell Analysis R And D Intern

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Location:
Hanover, NH
Industry:
Mechanical Or Industrial Engineering
Work:
Agilent Technologies
Microchip For Cell Analysis R and D Intern

Purigen Biosystems, Inc. Jun 2018 - Sep 2018
Microfluidics R and D Intern

Dartmouth College Jan 2016 - Mar 2016
Teaching Assistant

Thayer School of Engineering at Dartmouth Jan 2016 - Mar 2016
Phd Candidate

Liaoning Zhongwang Group Aug 2014 - Aug 2015
Innovation and Design Engineer
Education:
The Hong Kong University of Science and Technology 2011 - 2015
Masters, Philosophy, Aerospace Engineering
Huazhong University of Science and Technology 2007 - 2011
Bachelor of Engineering, Bachelors, Engineering, Design
Skills:
Finite Element Analysis
Mechanical Product Design
Micro/Nano Technology
Silicon Substrates Fabrication
Cell Handling
Abaqus
Matlab
Communication
Comsol
Research
Engineering
Solidworks
Data Analysis
Labview
Mechanical Engineering
Interests:
Education
Environment
Science and Technology
Human Rights
Arts and Culture
Health
Languages:
Mandarin
English
Cantonese
Japanese
Yuan Nie Photo 2

Yuan Nie

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Location:
United States

Publications

Us Patents

Method And Apparatus For Magnetic Nanoparticles Development With Ultra-Small Size, Uniformity And Monodispersity

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US Patent:
20220203438, Jun 30, 2022
Filed:
Apr 20, 2020
Appl. No.:
17/602409
Inventors:
- Hanover NH, US
Nanjing Hao - Hanover NH, US
Yuan Nie - Hanover NH, US
Assignee:
Trustees of Dartmouth College - Hanover NH
International Classification:
B22F 1/054
B01J 19/00
B22F 1/065
B22F 1/102
B22F 1/16
B22F 1/17
B22F 9/24
Abstract:
In an embodiment, the present disclosure pertains to a method of making magnetic nanoparticles through the utilization of a microfluidic reactor. In some embodiments, the microfluidic reactor includes a first inlet, a second inlet, and an outlet. In some embodiments, the method includes applying a magnetic nanoparticle precursor solution into the first inlet of the microfluidic reactor through a first flow rate and applying a reducing agent into the second inlet of the microfluidic reactor through a second flow rate. In some embodiments, the magnetic nanoparticles are produced in the microfluidic reactor and collected from the outlet of the microfluidic reactor. In an additional embodiment, the present disclosure pertains to a composition including a plurality of magnetic nanoparticles. In a further embodiment, the present disclosure pertains to a microfluidic reactor.
Yuan Nie from Hanover, NH Get Report