Search

David Zhitomirsky Phones & Addresses

  • Woburn, MA
  • Cambridge, MA

Work

Company: E ink corporation Jul 2020 Position: Senior electro-optical research and development engineer

Education

Degree: Doctorates, Doctor of Philosophy School / High School: University of Toronto 2011 to 2015

Skills

Physics • Nanotechnology • Scanning Electron Microscopy • Spectroscopy • Nanomaterials • Solar Cells • Matlab • Semiconductors • Characterization • Labview • Photonics • Electronics • Sensors • Simulation • Optics • Xrd • C++ • Java

Languages

English • Russian

Industries

Research

Resumes

Resumes

David Zhitomirsky Photo 1

Senior Electro-Optical Research And Development Engineer

View page
Location:
Cambridge, MA
Industry:
Research
Work:
E Ink Corporation
Senior Electro-Optical Research and Development Engineer

Massachusetts Institute of Technology (Mit) Nov 2014 - Jul 2017
Postdoctoral Associate at Massachusetts Institute of Technology

University of Toronto Jun 2010 - Sep 2014
Ph.d Candidate In Advanced Photovoltaic Devices and Nanomaterials

Mcmaster University May 2008 - Sep 2008
Research Assistant - Dna Biosensing

Mcmaster University May 2006 - Sep 2006
Research Assistant - Biomedical Implant Materials
Education:
University of Toronto 2011 - 2015
Doctorates, Doctor of Philosophy
University of Toronto 2010 - 2014
Doctorates, Doctor of Philosophy, Electrical Engineering
Mcmaster University 2006 - 2010
Bachelors, Computer Engineering
Skills:
Physics
Nanotechnology
Scanning Electron Microscopy
Spectroscopy
Nanomaterials
Solar Cells
Matlab
Semiconductors
Characterization
Labview
Photonics
Electronics
Sensors
Simulation
Optics
Xrd
C++
Java
Languages:
English
Russian

Publications

Us Patents

Spatially Variable Hydrophobic Layers For Digital Microfluidics

View page
US Patent:
20210149184, May 20, 2021
Filed:
Nov 19, 2020
Appl. No.:
16/952642
Inventors:
- Billerica MA, US
David ZHITOMIRSKY - Woburn MA, US
International Classification:
G02B 26/00
H01L 27/12
Abstract:
An active matrix electrowetting on dielectric (AM-EWoD) device including a substrate with thin-film transistors (TFT), a dielectric layer, and a spatially variable wettability layer covering the dielectric layer. As depicted herein, the spatially variable wettability layer may include a plurality of portions having different contact angles, one or more contact angle gradients, or both.

Microfluidic Devices And Methods Of Making The Same

View page
US Patent:
20200347840, Nov 5, 2020
Filed:
Apr 22, 2020
Appl. No.:
16/855381
Inventors:
- Billerica MA, US
David ZHITOMIRSKY - Woburn MA, US
Timothy J. O'MALLEY - Westford MA, US
International Classification:
F04B 19/00
Abstract:
A microfluidic device including: (a) top plate, including: a top substrate; a first layer of hydrophobic material coupled to a surface of the top substrate; a continuous electrode between the first layer of hydrophobic material and the top substrate; (b) a bottom plate, comprising: a bottom substrate; a plurality of electrodes coupled to the bottom substrate; a second layer of hydrophobic material coupled to the second substrate and atop the plurality of electrodes. The top plate and the bottom plate are placed in a spaced relationship, thereby defining a gap between the first and second layers of hydrophobic material to permit droplet motion within the gap under application of propulsion voltages. At least one of the top substrate, the first layer of hydrophobic material, the second layer of hydrophobic material, the bottom substrate, and the plurality of electrodes have a non-uniform thickness, and the gap has a plurality of heights.

Backplanes With Hexagonal And Triangular Electrodes

View page
US Patent:
20200089035, Mar 19, 2020
Filed:
Sep 16, 2019
Appl. No.:
16/572022
Inventors:
- Billerica MA, US
Ian French - Hsinchu, TW
Cristina Visani - Cambridge MA, US
David Zhitomirsky - Woburn MA, US
International Classification:
G02F 1/1368
G02F 1/167
H01L 27/12
Abstract:
Active matrix backplanes including an array of hexagonal electrodes or an array of triangular electrodes. Because the backplane designs route the gate lines along the periphery of the electrodes there is less cross talk with the surface of the electrode. The disclosed designs simplify construction and control of the electrodes and improve the regularity of the electric field above the electrode. Such backplane electrode designs may be particularly useful in electrowetting on dielectric (EWoD) devices and electrophoretic displays (EPD).

Polymer Based Solid -State Solar Thermal Fuels

View page
US Patent:
20180355234, Dec 13, 2018
Filed:
Dec 11, 2016
Appl. No.:
16/060944
Inventors:
- Cambridge MA, US
David ZHITOMIRSKY - Cambridge MA, US
Assignee:
MASSACHUSETTS INSTITUTE OF TECHNOLOGY - Cambridge MA
International Classification:
C09K 5/14
F24S 21/00
F24S 60/20
Abstract:
A polymer consisting of small functional molecules can be integrated into solar thermal fuels in the solid-state for solar energy harvesting and storage. In certain embodiments, a solar energy storage device can include one or more layers of photoswitchable moieties associated with a polymer. Such solar thermal fuel polymers can be used to enable deposition from low concentration solutions, resulting in uniform and large-area thin-films. This approach enables conformal deposition on a variety of conducting substrates that can be either flat or structured and control over film growth via electrodeposition conditions and results in highly uniform and large-area thin films.
David Zhitomirsky from Woburn, MA Get Report