Tara Sverko
Overview
Explore the profile of Tara Sverko including associated specialties, affiliations and a list of published articles.
Author names and details appear as published. Due to indexing inconsistencies, multiple individuals may share a name, and a single author may have variations. MedLuna displays this data as publicly available, without modification or verification
Snapshot
Snapshot
Articles
13
Citations
24
Followers
0
Related Specialties
Related Specialties
Top 10 Co-Authors
Top 10 Co-Authors
Published In
Affiliations
Affiliations
Soon will be listed here.
Recent Articles
1.
Thanippuli Arachchi D, Barotov U, Perkinson C, Sverko T, Kaplan A, Bawendi M
ACS Nano
. 2024 Jul;
PMID: 39046341
We introduce a two-step silica-encapsulation procedure to optimize both the optical efficiency and structural robustness of 5,5',6,6'-tetrachloro-1,1'-diethyl-3,3'-di(4-sulfobutyl)-benzimidazolocarbocyanine (TDBC), a two-dimensional sheet-like J-aggregate. We report a fluorescence quantum yield of ∼98%,...
2.
Krajewska C, Kick M, Kaplan A, Berkinsky D, Zhu H, Sverko T, et al.
ACS Nano
. 2024 Mar;
18(11):8248-8258.
PMID: 38428021
Imposing quantum confinement has the potential to significantly modulate both the structural and optical parameters of interest in many material systems. In this work, we investigate strongly confined ultrathin perovskite...
3.
Simmons M, Horbelt N, Sverko T, Scoppola E, Jackson D, Harrington M
Proc Natl Acad Sci U S A
. 2023 Nov;
120(48):e2311901120.
PMID: 37983489
Zebra and quagga mussels () are invasive freshwater biofoulers that perpetrate devastating economic and ecological impact. Their success depends on their ability to anchor onto substrates with protein-based fibers known...
4.
Zhu H, Kick M, Ginterseder M, Krajewska C, Sverko T, Li R, et al.
Adv Mater
. 2023 Jul;
35(39):e2304069.
PMID: 37485908
Mechanistic studies of the morphology of lead halide perovskite nanocrystals (LHP-NCs) are hampered by a lack of generalizable suitable synthetic strategies and ligand systems. Here, the synthesis of zwitterionic CsPbBr...
5.
Proppe A, Berkinsky D, Zhu H, Sverko T, Kaplan A, Horowitz J, et al.
Nat Nanotechnol
. 2023 Jun;
18(9):993-999.
PMID: 37386140
Quantum photonic technologies such as quantum communication, sensing or computation require efficient, stable and pure single-photon sources. Epitaxial quantum dots (QDs) have been made capable of on-demand photon generation with...
6.
Sun W, Krajewska C, Kaplan A, Sverko T, Berkinsky D, Ginterseder M, et al.
Nano Lett
. 2023 Mar;
23(7):2615-2622.
PMID: 36926921
Cesium lead halide perovskite nanocrystals (PNCs) have emerged as a potential next-generation single quantum emitter (QE) material for quantum optics and quantum information science. Optical dephasing processes at cryogenic temperatures...
7.
Krajewska C, Kaplan A, Kick M, Berkinsky D, Zhu H, Sverko T, et al.
Nano Lett
. 2023 Mar;
23(6):2148-2157.
PMID: 36884029
Quantum confined lead halide perovskite nanoplatelets are anisotropic materials displaying strongly bound excitons with spectrally pure photoluminescence. We report the controlled assembly of CsPbBr nanoplatelets through varying the evaporation rate...
8.
Barotov U, Thanippuli Arachchi D, Klein M, Zhang J, Sverko T, Bawendi M
Adv Opt Mater
. 2023 Feb;
11(2).
PMID: 36846517
We demonstrate three general effective strategies to mitigate non-radiative losses in the superradiant emission from supramolecular assemblies. We focus on J-aggregates of 5,5',6,6'-tetrachloro-1,1'-diethyl-3,3'-di(4-sulfobutyl)-benzimidazolocarbocyanine (TDBC) and elucidate the nature of their...
9.
Ginterseder M, Sun W, Shcherbakov-Wu W, McIsaac A, Berkinsky D, Kaplan A, et al.
Nano Lett
. 2023 Feb;
23(4):1128-1134.
PMID: 36780509
Lead halide perovskite nanocrystals (LHP NCs) are an emerging materials system with broad potential applications, including as emitters of quantum light. We apply design principles aimed at the structural optimization...
10.
Berkinsky D, Proppe A, Utzat H, Krajewska C, Sun W, Sverko T, et al.
ACS Nano
. 2023 Feb;
17(4):3598-3609.
PMID: 36758155
InP quantum dots (QDs) are the material of choice for QD display applications and have been used as active layers in QD light-emitting diodes (QDLEDs) with high efficiency and color...