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Melissa PerkinsTaunton, MA

Melissa Perkins Phones & Addresses

Taunton, MA   

Waterville, ME   

253 E Benton Rd, Benton, ME 04901   

Mentions for Melissa Perkins

Career records & work history

Lawyers & Attorneys

Melissa Perkins Photo 1

Melissa Perkins - Lawyer

Specialties:
Bankruptcy, Business Law, Commercial Litigation, Commercial Transactions, Corporate Law, Creditors Rights, Elder Law & Disability Rights, Loan Workouts, Probate, Real Estate Foreclosures
ISLN:
917102217
Admitted:
2002
University:
Albion College, B.A., 1999
Law School:
Wayne State University, J.D., 2002

Medicine Doctors

Melissa A. Perkins

Specialties:
Anesthesiology
Work:
Comprehensive Pain Specialists
353 New Shackle Is Rd STE 122B, Hendersonville, TN 37075
615-8242014 (phone) 615-8242081 (fax)
Languages:
English
Description:
Ms. Perkins works in Hendersonville, TN and specializes in Anesthesiology. Ms. Perkins is affiliated with Tristar Centennial Medical Center, TriStar Hendersonville Medical Center and Tristar Medical Center.

Publications & IP owners

Us Patents

Intermediate Temperature Proton Exchange Membranes

US Patent:
2004022, Nov 11, 2004
Filed:
May 9, 2003
Appl. No.:
10/434530
Inventors:
Murty Bhamidipati - Randolph MA, US
Melissa Perkins - Kingston MA, US
Myles Walsh - East Falmouth MA, US
International Classification:
H01M008/10
US Classification:
429/030000, 429/033000, 429/303000
Abstract:
The subject invention relates to proton exchange membranes comprising a carbon cluster derivative that comprises a plurality of functional groups so as to be capable of transferring a plurality of protons between each of the functional groups of the carbon cluster derivative, wherein the proton conductor further comprises a dry gel material in addition to the carbon cluster derivative. The proton conductor is usable, even in a dry state, in a wide temperature range including ordinary temperature to an intermediate temperature of about 250 C. An electrochemical device, such as a fuel cell, that employs the proton conductor is not limited by atmospheric conditions and can be of a small and simple construction. The proton conductor may be formed into useful thin films by casting suspensions containing both the carbon cluster derivatives and the chemical precursors of the dry gel material. On exposure to water, sol gel reactions form a wet gel material. This material on aging and exposure to heat cures into films of the invention.

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