Kalyan Kumar Das, Age 801540 Dellwood Dr, Raleigh, NC 27607

Kalyan Das Phones & Addresses

1540 Dellwood Dr, Raleigh, NC 27607 (919) 781-7607

Davenport, FL

1923 Hillbrook Cir, Auburn, AL 36830 (334) 502-7247

Berea, OH

Oklahoma City, OK

Arlington, TX

304 Tecumseh Ct, Raleigh, NC 27607 (919) 571-9169

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Work

Position: Building and Grounds Cleaning and Maintenance Occupations

Education

Degree: High school graduate or higher

Mentions for Kalyan Kumar Das

Career records & work history

Medicine Doctors

Kalyan K. Das

Specialties:
Internal Medicine, Family Medicine
Work:
Hardin County Family Planning
175 W Franklin St RM 2, Kenton, OH 43326
(419) 674-4450 (phone) (419) 673-8761 (fax)
Hardin Physicans FoundationHardin Physician Foundation
75 Washington Blvd STE 102, Kenton, OH 43326
(419) 634-7300 (phone) (419) 673-9443 (fax)
Education:
Medical School
Rajshahi Med Coll, Rajshahi, Bangladesh
Graduated: 1981
Languages:
English
Description:
Dr. Das graduated from the Rajshahi Med Coll, Rajshahi, Bangladesh in 1981. He works in Kenton, OH and 1 other location and specializes in Internal Medicine and Family Medicine. Dr. Das is affiliated with Lima Memorial Hospital and Ohio Health Hardin Memorial Hospital.
Kalyan Das Photo 1

Kalyan Kumar Das

Specialties:
General Practice
Internal Medicine
Education:
Rajshahi Medical College (1981)

Kalyan Das resumes & CV records

Resumes

Kalyan Das Photo 42

Visiting Scientist

Location:
Raleigh, NC
Industry:
Semiconductors
Work:
North Carolina State University Visiting Scientist
Visiting Scientist
Tuskegee University Sep 1993 - Jun 2013
Professor of Electrical Engineer
Education:
University of London
Kalyan Das Photo 43

Kalyan Das

Kalyan Das Photo 44

Kalyan Das

Position:
SAP Applications Architect at Capgemini Inc.
Location:
San Francisco, California
Industry:
Information Technology and Services
Work:
Capgemini Inc. since May 2007
SAP Applications Architect
Fujitsu Aug 2005 - Apr 2007
Sr. Business Intelligence Consultant
Intelligroup Inc. Aug 2004 - Jul 2005
Sr. Business Intelligent Consultant
Tata Consultancy Services Oct 2000 - Jul 2004
IT Analyst
Education:
National Institute of Technology Jamshedpur, India 1996 - 2000
Bachelor of Science, Production Engineering and Management

Publications & IP owners

Wikipedia

Kalyan Das Photo 45

Kalyan Das Jain

Shri Kalyan Das Jain was an independent politician from Agra, Uttar Pradesh, India He served as Mayor of the city for five consecutive terms from 1963 to 1969 ...

Us Patents

Photovoltaic Cells Based On Donor And Acceptor Nano-Particulate Conjugates In Conductive Polymer Blends

US Patent:
2020014, May 7, 2020
Filed:
Dec 5, 2019
Appl. No.:
16/704876
Inventors:
- Tuskegee AL, US
Kalyan Das - Tuskegee AL, US
Assignee:
Tuskegee University - Tuskegee AL
International Classification:
H01L 51/42
Abstract:
A photovoltaic cell includes a substrate layer, an anode layer on the substrate layer, an active layer on the anode layer, and a cathode layer on the active layer, wherein the active layer comprises a plurality of disparately sized n-type and p-type nano-particles of different semiconductor materials randomly distributed in a conductive polymer blend. The n-type nano-particles can include either ZnO or InOnano-particles, and the p-type nano-particles can include either NiO or LaOnano-particles. The conductive polymer blend can include P3HT. The bandgaps of the nano-particles have corresponding energies ranging from the near ultraviolet to the far infrared.

Photovoltaic Cells Based On Donor And Acceptor Nano-Particulate Conjugates In Conductive Polymer Blends

US Patent:
2016011, Apr 21, 2016
Filed:
Sep 30, 2015
Appl. No.:
14/871370
Inventors:
- Tuskegee AL, US
Kalyan Das - Tuskegee AL, US
Assignee:
Tuskegee University - Tuskegee AL
International Classification:
H01L 51/42
H01L 51/00
Abstract:
A photovoltaic cell includes a substrate layer, an anode layer on the substrate layer, an active layer on the anode layer, and a cathode layer on the active layer, wherein the active layer comprises a plurality of disparately sized n-type and p-type nano-particles of different semiconductor materials randomly distributed in a conductive polymer blend. The n-type nano-particles can include either ZnO or InOnano-particles, and the p-type nano-particles can include either NiO or LaOnano-particles. The conductive polymer blend can include P3HT. The bandgaps of the nano-particles have corresponding energies ranging from the near ultraviolet to the far infrared.

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