Ellie Bennett
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Explore the profile of Ellie Bennett including associated specialties, affiliations and a list of published articles.
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6
Citations
24
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Recent Articles
1.
Lahnakoski J, Bennett E, Nummenmaa L, Steinert U, Sams M, Svard S
iScience
. 2025 Jan;
27(12):111365.
PMID: 39758986
Emotions are associated with subjective emotion-specific bodily sensations. Here, we utilized this relationship and computational linguistic methods to map a representation of emotions in ancient texts. We analyzed Neo-Assyrian texts...
2.
Belmonte M, Cabrera-Cosme L, Obro N, Li J, Grinfeld J, Milek J, et al.
Exp Hematol
. 2024 May;
135:104246.
PMID: 38763471
Key studies in pre-leukemic disorders have linked increases in pro-inflammatory cytokines with accelerated phases of the disease, but the precise role of the cellular microenvironment in disease initiation and evolution...
3.
Campos M, De Roo J, Greenberg M, McMurtry B, Hendricks M, Bennett E, et al.
Chem Sci
. 2022 Jun;
13(16):4555-4565.
PMID: 35656143
A library of thio- and selenourea derivatives is used to adjust the kinetics of PbE (E = S, Se) nanocrystal formation across a 1000-fold range ( = 10 to 10...
4.
Abecassis B, Greenberg M, Bal V, McMurtry B, Campos M, Guillemeney L, et al.
Chem Sci
. 2022 Jun;
13(17):4977-4983.
PMID: 35655873
Modern syntheses of colloidal nanocrystals yield extraordinarily narrow size distributions that are believed to result from a rapid "burst of nucleation" (La Mer, , 1950, (11), 4847-4854) followed by diffusion...
5.
Mahdavi-Shakib A, Sempel J, Hoffman M, Oza A, Bennett E, Owen J, et al.
ACS Appl Mater Interfaces
. 2021 Mar;
13(10):11793-11804.
PMID: 33660991
Au nanoparticles (NP) on TiO have been shown to be effective catalysts for selective oxidation reactions by using molecular oxygen. In this work, we have studied the influence of support...
6.
Dhaene E, Billet J, Bennett E, Van Driessche I, De Roo J
Nano Lett
. 2019 Sep;
19(10):7411-7417.
PMID: 31525055
1-Octadecene is a widely used solvent for high-temperature nanocrystal synthesis (120-320 °C). Here, we show that 1-octadecene spontaneously polymerizes under these conditions, and the resulting poly(1-octadecene) has a comparable solubility...