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Hareem Maune Phones & Addresses

  • Boulder, CO
  • Emerald Hills, CA
  • Irvine, CA
  • San Jose, CA
  • Agoura Hills, CA
  • Melbourne, FL
  • Pasadena, CA
  • 961 Marlinton Ct, San Jose, CA 95120

Resumes

Resumes

Hareem Maune Photo 1

Strategy Manager, Strategic Marketing

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Location:
15 Polk Ct, North Potomac, MD 20878
Industry:
Semiconductors
Work:
Tyrol Traverse May 2018 - Sep 2018
Founder

University Lab Partners May 2018 - Sep 2018
Director

Capillary Biomedical May 2017 - Feb 2018
Technical Strategy and Research

Gordian Technology Advisors May 2017 - Feb 2018
Founding Partner

Responsive Polymers Therapeutics, Inc. May 2017 - Feb 2018
Advisory Board Member
Education:
Stanford University Graduate School of Business 2017 - 2017
Caltech 2002 - 2008
Doctorates, Doctor of Philosophy, Applied Physics
Florida Institute of Technology 2000 - 2001
Bachelors, Physics
King's College London 1997 - 1999
Bachelors, Astrophysics, Physics
Skills:
Nanotechnology
Nanofabrication
Spectroscopy
Materials Science
Physics
Characterization
Nanoparticles
Afm
Thin Films
Matlab
Semiconductors
C
Scanning Electron Microscopy
Programming
Quantum Mechanics
Project Management
Statistical Mechanics
Experimental Design
Chemistry
Microbiology
Cell Based Assays
Antimicrobial Assays
Bacterial Culture
Electrophoresis
Dna Nanotechnology
Tcp/Ip
Cad
Nanoimprint Lithography
Electron Beam Lithography
Lithography
Light Scattering
Rheology
Scanning Probe Microscopy
Carbon Nanotubes
Microfluidics
3D Printing
Polymer Characterization
Fluorescence Microscopy
Nanocomposites
Optical Tweezers
Research and Development
Science
Languages:
English
Urdu
Hareem Maune Photo 2

Hareem Maune

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Location:
United States

Publications

Us Patents

Nanocomposite Structures And Related Methods And Systems

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US Patent:
20100048421, Feb 25, 2010
Filed:
Aug 12, 2009
Appl. No.:
12/540027
Inventors:
Si-Ping HAN - Yorba Linda CA, US
Hareem Maune - Pasadena CA, US
Robert D. Barish - Pasadena CA, US
International Classification:
C40B 40/04
C07H 21/00
C40B 50/14
US Classification:
506 15, 536 231, 506 30
Abstract:
The disclosure relates to nanotube composite structures and related methods and systems. In particular, structures, methods and systems are provided herein to allow for precise, tunable separation between nanomaterials such as carbon nanotubes.

Carbon Field Effect Transistors Having Charged Monolayers To Reduce Parasitic Resistance

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US Patent:
20120286244, Nov 15, 2012
Filed:
May 10, 2011
Appl. No.:
13/104591
Inventors:
Hsin-Ying Chiu - White Plains NY, US
Shu-Jen Han - Cortland Manor NY, US
Hareem Tariq Maune - San Jose CA, US
Assignee:
International Business Machines Corporation - Armonk NY
International Classification:
H01L 51/30
H01L 51/40
US Classification:
257 40, 438 99, 257E5104, 257E51006, 977938
Abstract:
Carbon transistor devices having channels formed from carbon nanostructures, such as carbon nanotubes or graphene, and having charged monolayers to reduce parasitic resistance in un-gated regions of the channels, and methods for fabricating carbon transistor devices having charged monolayers to reduce parasitic resistance. For example, a carbon field effect transistor includes a channel comprising a carbon nanostructure formed on an insulating layer, a gate structure formed on the channel, a monolayer of DNA conformally covering the gate structure and a portion of the channel adjacent the gate structure, an insulating spacer conformally formed on the monolayer of DNA, and source and drain contacts connected by the channel

Cationic Bis-Urea Compounds As Effective Antimicrobial Agents

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US Patent:
20130281515, Oct 24, 2013
Filed:
Apr 18, 2012
Appl. No.:
13/449643
Inventors:
Daniel Joseph Coady - San Jose CA, US
Amanda Catherine Engler - San Jose CA, US
Kazuki Fukushima - Yonezawa, JP
James Lupton Hedrick - Pleasanton CA, US
Shaoqiong Liu - Singapore, SG
Hareem Tariq Maune - San Jose CA, US
Alshakim Nelson - Fremont CA, US
Jed Walter Pitera - Portola Valley CA, US
Yi Yan Yang - Singapore, SG
Assignee:
AGENCY FOR SCIENCE, TECHNOLOGY AND RESEARCH - Singapore
INTERNATIONAL BUSINESS MACHINES CORPORATION - Armonk NY
International Classification:
A61K 48/00
C12N 5/07
C07C 69/96
A61P 31/04
A61P 31/10
C07C 275/42
A61K 31/17
B82Y 5/00
B82Y 30/00
US Classification:
514 44 R, 564 51, 435375, 558269, 514597, 977773, 977915
Abstract:
A cationic bis-urea compound is disclosed of formula (1):wherein:

Aqueous Soluble Ferrimagnets Stabilized By Block Copolymers

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US Patent:
20130281623, Oct 24, 2013
Filed:
Apr 23, 2012
Appl. No.:
13/454054
Inventors:
Krishna M. Bajjuri - San Jose CA, US
David Berman - San Jose CA, US
Qiu Dai - Dayton OH, US
Pierre-Olivier Jubert - San Jose CA, US
Hareem T. Maune - San Jose CA, US
Alshakim Nelson - Fremont CA, US
Assignee:
INTERNATIONAL BUSINESS MACHINES CORPORATION - Armonk NY
International Classification:
C08F 220/06
US Classification:
525 541, 525362, 525 542
Abstract:
The present invention relates to a water-soluble polymer complex that includes a water-soluble block copolymer and a magnetic nanoparticle, wherein the water-soluble polymer complex has a nonzero net magnetic moment in the absence of an applied magnetic field at ambient temperatures. The water-soluble block copolymer is preferably a diblock or triblock copolymer and the magnetic nanoparticle is preferably a ferrimagnetic or ferromagnetic nanoparticle. The water-soluble complexes may be derivatized with reactive groups and conjugated to biomolecules. Exemplary water-soluble polymer complexes covered under the scope of the invention include PEG-b-PAAmodified CoFeO; NH-PEG-b-PAAmodified CoFeO; PNIPAM-b-PAAmodified CoFeO; and mPEG-b-PCL-b-PAA modified CoFeO.

Thin Cathode For Micro-Battery

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US Patent:
20200083534, Mar 12, 2020
Filed:
Nov 15, 2019
Appl. No.:
16/684891
Inventors:
- Armonk NY, US
- Yenimahalle/Ankara, TR
Gokhan Demirci - San Jose CA, US
Damon B. Farmer - White Plains NY, US
Shu-Jen Han - Cortlandt Manor NY, US
Hareem T. Maune - San Jose CA, US
Dahyun Oh - San Jose CA, US
International Classification:
H01M 4/583
C07F 1/02
C08F 220/06
C07C 43/11
H01M 4/66
H01M 10/0569
C01B 32/186
H01M 4/38
H01M 10/0568
Abstract:
Methods of forming a battery include forming a thin graphene cathode on a substrate. A lithium anode is formed and an electrolyte is formed between the thin graphene cathode and the lithium anode.

Thin Cathode For Micro-Battery

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US Patent:
20200083535, Mar 12, 2020
Filed:
Nov 15, 2019
Appl. No.:
16/685122
Inventors:
- Armonk NY, US
- Yenimahalle/Ankara, TR
Gokhan Demirci - San Jose CA, US
Damon B. Farmer - White Plains NY, US
Shu-Jen Han - Cortlandt Manor NY, US
Hareem T. Maune - San Jose CA, US
Dahyun Oh - San Jose CA, US
International Classification:
H01M 4/583
C07C 43/11
C08F 220/06
C07F 1/02
H01M 10/0568
H01M 4/38
C01B 32/186
H01M 10/0569
H01M 4/66
Abstract:
Batteries include an anode, an electrolyte having a high solubility for lithium ions and oxygen, and a cathode formed on a substrate. Lithium ions migrate from the anode through the electrolyte to form LiOat a surface of the cathode. A current collector positioned in the electrolyte, the electrolyte separating the anode from the cathode.

Thin Cathode For Micro-Battery

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US Patent:
20180375098, Dec 27, 2018
Filed:
Jun 22, 2017
Appl. No.:
15/629893
Inventors:
- Armonk NY, US
- Yenimahalle/Ankara, TR
Gokhan Demirci - San Jose CA, US
Damon B. Farmer - White Plains NY, US
Shu-Jen Han - Cortlandt Manor NY, US
Hareem T. Maune - San Jose CA, US
Dahyun Oh - San Jose CA, US
International Classification:
H01M 4/583
C07C 43/11
C08F 220/06
C07F 1/02
Abstract:
Batteries and methods of forming the same include a lithium anode, an electrolyte having a high solubility for lithium ions and oxygen, and a thin graphene cathode formed on a substrate. Lithium ions migrate from the lithium anode through the electrolyte to form LiOat a surface of the thin graphene cathode.

Porous Sheets

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US Patent:
20180050913, Feb 22, 2018
Filed:
Aug 22, 2016
Appl. No.:
15/243614
Inventors:
- Armonk NY, US
- Ankara, TR
Gokhan Demirci - San Jose CA, US
Hareem T. Maune - San Jose CA, US
Dahyun Oh - San Jose CA, US
Loza F. Tadesse - Miltona MN, US
Leslie E. Thompson - San Jose CA, US
International Classification:
C01B 31/02
C12N 1/20
H01M 4/60
H01M 4/48
H01M 4/13
Abstract:
A method of preparing a porous sheet includes mixing a matrix material dispersion including a matrix material dispersed in a first dispersion medium with a microorganism dispersion including microorganisms in a second dispersion medium, to form a mixture. The first and the second dispersion media are removed from the mixture to form a matrix sheet, and the microorganisms are decomposed from the matrix sheet to form the porous sheet.
Hareem T Maune from Boulder, CO, age ~46 Get Report