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Title: Heavily doped n-type PbSe and PbS nanocrystals using ground-state charge transfer from cobaltocene

Journal Article · · Sci. Rep.
DOI:https://doi.org/10.1038/srep02004· OSTI ID:1105764

Research Organization:
Energy Frontier Research Centers (EFRC) (United States). Center for Advanced Solar Photophysics (CASP)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES)
DOE Contract Number:
AC52-06NA25396
OSTI ID:
1105764
Journal Information:
Sci. Rep., Vol. 3; Related Information: CASP partners with Los Alamos National Laboratory (lead); University of California, Irvine; University of Colorado; Colorado School of Mines; George Mason University; Los Alamos National Laboratory; University of Minnesota; National Renewable Energy Laboratory
Country of Publication:
United States
Language:
English

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Colloidal quantum dot solids for solution-processed solar cells journal February 2016
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Air-stable n-type colloidal quantum dot solids journal June 2014
Towards zero-threshold optical gain using charged semiconductor quantum dots journal October 2017
Electrically control amplified spontaneous emission in colloidal quantum dots journal October 2019
Influence of L-Tryptophan on Growth and Optical Properties of PbS Nanocrystalline Thin Films journal July 2018
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25th Anniversary Article: Colloidal Quantum Dot Materials and Devices: A Quarter-Century of Advances journal July 2015
Room-Temperature Electron Transport in Self-Assembled Sheets of PbSe Nanocrystals with a Honeycomb Nanogeometry journal May 2019
Mid- and Long-Wave Infrared Optoelectronics via Intraband Transitions in PbS Colloidal Quantum Dots journal December 2019
Enabling Ambipolar to Heavy n-Type Transport in PbS Quantum Dot Solids through Doping with Organic Molecules journal May 2017
The Role of Dopant Ions on Charge Injection and Transport in Electrochemically Doped Quantum Dot Films journal May 2018
Level Anticrossing of Impurity States in Semiconductor Nanocrystals journal November 2014