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n-Doping of Quantum Dots by Lithium Ion Intercalation SCIE SCOPUS

Title
n-Doping of Quantum Dots by Lithium Ion Intercalation
Authors
Chang, Woo JePark, Kyu-YoungZhu, YizhouWolverton, ChristopherHersam, Mark C.Weiss, Emily A.
Date Issued
2020-08
Publisher
American Chemical Society
Abstract
The optical properties of colloidal quantum dots (QDs) are controllable through introduction of excess electrons or holes into their delocalized bands. Crucial to robust and energy-efficient electronic doping of QDs is suitable charge compensation. Compensation by surface modification and substitutional impurities are however not sufficiently controllable to enable effective doping of QDs. This article describes electrochemical n-type doping of CdSe QDs where injected electrons are compensated by interstitial Li+ to form LixCdSe, x <= 0.3. n-type degenerate doping reversibly decreases absorption into the lowest-energy excitonic state of the QD, activates intraband optical transitions, and shifts the photoluminescence of the QD to higher energy. This work establishes electrochemical interstitial doping as a reversible and highly controllable method for tuning the optical properties of colloidal QDs.
URI
https://oasis.postech.ac.kr/handle/2014.oak/107734
DOI
10.1021/acsami.0c09366
ISSN
1944-8244
Article Type
Article
Citation
ACS Applied Materials and Interfaces, vol. 12, no. 32, page. 36523 - 36529, 2020-08
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