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Thomas A Seery

from Willington, CT
Age ~61

Thomas Seery Phones & Addresses

  • 9 Timber Ln, Willington, CT 06279 (860) 487-5032
  • 20 Ridgewood Rd, Willington, CT 06279
  • 132 Indian Hill Trl, Glastonbury, CT 06033
  • Oakland, CA
  • Storrs Mansfield, CT
  • Los Angeles, CA

Specialities

Property Management

Professional Records

Lawyers & Attorneys

Thomas Seery Photo 1

Thomas Seery - Lawyer

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Specialties:
Global Insurance Services
ISLN:
923111708
Admitted:
2014
University:
Cornell University, B.A., 2009
Law School:
Villanova University School of Law, J.D., 2014

Resumes

Resumes

Thomas Seery Photo 2

Associate Professor Of Chemistry Institute Of Materials Science U

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Location:
Hartford, CT
Industry:
Research
Work:
University of Connecticut
Associate Professor of Chemistry
Education:
The University of Connecticut 1994 - 2010
Glastonbury High School
Skills:
Materials Science
Spectroscopy
Characterization
Chemistry
Nanomaterials
Nanotechnology
Uv/Vis
Polymer Characterization
Polymers
Science
Polymer Chemistry
Research
Analytical Chemistry
Nmr
R&D
Research and Development
Electrochemistry
Nuclear Magnetic Resonance
Organic Chemistry
Scanning Electron Microscopy
R
Thomas Seery Photo 3

Customer Relations Specialist

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Work:

Customer Relations Specialist

Publications

Us Patents

Polymeric Organic Coatings And Method Of Manufacture Thereof

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US Patent:
20010038925, Nov 8, 2001
Filed:
Mar 21, 2001
Appl. No.:
09/813641
Inventors:
Carlos Barton - Brooklyn CT, US
Thomas Seery - Willington CT, US
Hanrong Gao - Lake Hiawatha NJ, US
Jayanthi Jacob - Carmel IN, US
International Classification:
H05B033/00
US Classification:
428/690000, 313/503000, 427/066000, 428/917000, 428/403000, 428/407000, 427/299000, 427/372200
Abstract:
Polymeric organic coating for electroluminescent lamp components, particularly for phosphor particles and electrodes and a method of making same, wherein the polymer is formed using an initiator, preferably by ring-opening metathesis polymerization. A dense hydrophobic organic coating is formed which is capable of protecting the electroluminescent device components from exogenous agents such as moisture and eventual degradation. The polymer layer may be attached to an outer surface of the component by one or more tethering layers.
Thomas A Seery from Willington, CT, age ~61 Get Report