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Aaron Fafarman Phones & Addresses

  • Narberth, PA
  • Philadelphia, PA
  • Willow Grove, PA
  • Wynnewood, PA
  • Palo Alto, CA
  • San Francisco, CA
  • Berkeley, CA
  • El Sobrante, CA
  • New York, NY

Work

Company: Drexel university Sep 2013 Position: Assistant professor

Education

Degree: Doctorates, Doctor of Philosophy School / High School: Stanford University 2003 to 2010 Specialities: Philosophy, Chemistry

Industries

Higher Education

Resumes

Resumes

Aaron Fafarman Photo 1

Assistant Professor

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Location:
Philadelphia, PA
Industry:
Higher Education
Work:
Drexel University
Assistant Professor

University of Pennsylvania Jul 2010 - Aug 2013
Post-Doctoral Researcher
Education:
Stanford University 2003 - 2010
Doctorates, Doctor of Philosophy, Philosophy, Chemistry
University of California, Berkeley 1996 - 2000
Bachelors, Bachelor of Science, Chemistry
University of Pennsylvania

Publications

Us Patents

Colloidal Nanocrystal-Based Thin Film And Solution Apparatuses And Methods

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US Patent:
20140050851, Feb 20, 2014
Filed:
Aug 19, 2013
Appl. No.:
13/969863
Inventors:
Aaron T. Fafarman - Philadelphia PA, US
David K. Kim - Lincoln MA, US
Soong Ju Oh - Philadelphia PA, US
Yuming Lai - Philadelphia PA, US
Sung-Hoon Hong - Yuseong-gu, KR
Christopher B. Murray - Bala Cynwyd PA, US
International Classification:
H01B 1/06
US Classification:
427250, 2525215, 2525203, 2525195, 427343, 427256
Abstract:
Methods of exchanging ligands to form colloidal nanocrystals (NCs) with chalcogenocyanate (xCN)-based ligands and apparatuses using the same are disclosed. The ligands may be exchanged by assembling NCs into a thin film and immersing the thin film in a solution containing xCN-based ligands. The ligands may also be exchanged by mixing a xCN-based solution with a dispersion of NCs, flocculating the mixture, centrifuging the mixture, discarding the supernatant, adding a solvent to the pellet, and dispersing the solvent and pellet to form dispersed NCs with exchanged xCN-ligands. The NCs with xCN-based ligands may be used to form thin film devices and/or other electronic, optoelectronic, and photonic devices. Devices comprising nanocrystal-based thin films and methods for forming such devices are also disclosed. These devices may be constructed by depositing NCs on to a substrate to form an NC thin film and then doping the thin film by evaporation and thermal diffusion.

Phosphorescent Small Molecules That Are Bonded To Inorganic Nanocrystal Host For Organic Light Emitting Devices And Methods Of Making The Same

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US Patent:
20130146854, Jun 13, 2013
Filed:
Jan 18, 2013
Appl. No.:
13/745436
Inventors:
Universal Display Corporation - Ewing NJ, US
University of Pennsylvania - Philadelphia PA, US
Aaron T. Fafarman - Philadelphia PA, US
Xingchen Ye - Philadelphia PA, US
Cherie R. Kagan - Bala Cynwyd PA, US
Christopher B. Murray - Bala Cynwyd PA, US
Assignee:
University of Pennsylvania - Philadelphia PA
Universal Display Corporation - Ewing NJ
International Classification:
H01L 51/50
H01L 51/56
US Classification:
257 40, 438 45, 25230116, 548103, 546 4, 544225
Abstract:
A first device comprising a first organic light emitting device (OLED) is described. The first OLED includes an anode, it cathode and an emissive layer disposed between the anode and the cathode. The emissive layer includes a phosphorescent emissive dopant and a host material, that includes nanocrystals. The phosphorescent emissive dopant is bonded to the host material by a bridge moiety.

Physical Forms Of Mxene Materials Exhibiting Novel Electrical And Optical Characteristics

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US Patent:
20220181507, Jun 9, 2022
Filed:
Feb 23, 2022
Appl. No.:
17/678120
Inventors:
- Philadelphia PA, US
Michel W Barsoum - Moorestown NJ, US
Yury Gogotsi - Warminster PA, US
Aaron Thomas Fafarman - Philadelphia PA, US
Andrew DeVries Dillon - Philadelphia PA, US
International Classification:
H01L 31/0224
H01L 33/42
H01L 51/52
C01B 32/921
C01B 32/949
C01B 32/914
C04B 35/56
C04B 35/58
Abstract:
The present invention(s) is directed to novel conductive MX(T) compositions exhibiting high volumetric capacitances, and methods of making the same. The present invention(s) is also directed to novel conductive MX(T) compositions, methods of preparing transparent conductors using these materials, and products derived from these methods.

Methods Of Imaging And Delivering Therapeutic Agents

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US Patent:
20210379209, Dec 9, 2021
Filed:
Aug 16, 2021
Appl. No.:
17/403429
Inventors:
- Philadelphia PA, US
Brett ANGEL - Bala Cynwyd PA, US
Andrew KOHUT - Philadelphia PA, US
Aaron FAFARMAN - Narberth PA, US
Michael CIMORELLI - Turnersville NJ, US
International Classification:
A61K 49/22
A61K 41/00
A61B 8/08
A61K 9/107
A61K 9/127
A61K 9/00
Abstract:
The present disclosure provides imaging agents that are useful for the detection and evaluation of heart conditions, such as myocardial infarction. Upon activation, the imaging agents of the present disclosure may be detected using an ultrasound imaging device.

Imaging Agents

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US Patent:
20200254119, Aug 13, 2020
Filed:
Apr 24, 2020
Appl. No.:
16/858329
Inventors:
- Philadelphia PA, US
Brett ANGEL - Bala Cynwyd PA, US
Andrew KOHUT - Philadelphia PA, US
Aaron FAFARMAN - Narberth PA, US
Michael CIMORELLI - Turnersville NJ, US
International Classification:
A61K 49/22
A61K 9/00
A61K 9/127
A61B 8/08
A61K 9/107
A61K 41/00
Abstract:
The present disclosure provides imaging agents that are useful for the detection and evaluation of heart conditions, such as myocardial infarction. Upon activation, the imaging agents of the present disclosure may be detected using an ultrasound imaging device.

Physical Forms Of Mxene Materials Exhibiting Novel Electrical And Optical Characteristics

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US Patent:
20200176619, Jun 4, 2020
Filed:
Dec 11, 2019
Appl. No.:
16/710454
Inventors:
- Philadelphia PA, US
Michel W. Barsoum - Moorestown NJ, US
Yury Gogotsi - Warminster PA, US
Aaron Thomas Fafarman - Philadelphia PA, US
Andrew DeVries Dillon - Philadelphia PA, US
International Classification:
H01L 31/0224
H01L 33/42
H01L 51/52
C01B 32/921
C01B 32/949
C01B 32/914
C04B 35/56
C04B 35/58
Abstract:
The present invention(s) is directed to novel conductive MX(T) compositions exhibiting high volumetric capacitances, and methods of making the same. The present invention(s) is also directed to novel conductive MX(T) compositions, methods of preparing transparent conductors using these materials, and products derived from these methods.

Voltage-Activated Therapeutic, Diagnostic, And/Or Theranostic Constructs

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US Patent:
20190008987, Jan 10, 2019
Filed:
Jul 6, 2018
Appl. No.:
16/029335
Inventors:
- Philadelphia PA, US
Brett ANGEL - Philadelphia PA, US
Andrew KOHUT - Philadelphia PA, US
Aaron FAFARMAN - Philadelphia PA, US
Michael CIMORELLI - Philadelphia PA, US
International Classification:
A61K 49/22
A61K 41/00
A61K 9/127
A61K 9/107
A61B 8/08
Abstract:
The present invention provides constructs that can be used for delivering therapeutic and/or diagnostic agents to a subject's tissue or organ. In certain embodiments, the invention provides a doubly ultrasound-voltage-activated imaging agent. In other embodiments, the invention provides methods of selectively imaging a portion of a subject's body.

Physical Forms Of Mxene Materials Exhibiting Novel Electrical And Optical Characteristics

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US Patent:
20170294546, Oct 12, 2017
Filed:
Sep 23, 2015
Appl. No.:
15/513740
Inventors:
- Philadelphia PA, US
Michel W. BARSOUM - Moorestown NJ, US
Yury GOGOTSI - Warminster PA, US
Aaron Thomas FAFARMAN - Philadelphia PA, US
Andrew DeVries Dillon - Philadelphia PA, US
Assignee:
Drexel University - Philadelphia PA
International Classification:
H01L 31/0224
H01L 33/42
H01L 51/52
C04B 35/58
Abstract:
The present invention(s) is directed to novel conductive MX(T) compositions exhibiting high volumetric capacitances, and methods of making the same. The present invention(s) is also directed to novel conductive MX(T) compositions, methods of preparing transparent conductors using these materials, and products derived from these methods.
Aaron T Fafarman from Narberth, PA, age ~46 Get Report