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4,299,418 works, Canadian by any of four routes.

Every filter state is a URL; the URL is the query; the query is citable via /q/⟨hash⟩. The page, the API and the export parse the same parameters.

The current cohort, streamed from the database: every work column, the machine labels, the provisional scores, and the per-row validation status. Exports are capped at 100,000 rows. Mints a permanent /q/ link for this exact query. The same filters always produce the same link, whoever asks.

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Quantum Dots Synthesis And Properties
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Direct Codex and Gemma labels are unvalidated and sparse. Distilled predictions cover the full frame and are also unvalidated. Choose the evidence source explicitly; absence of a direct label is never a negative label.

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The four routes compose: require the funder route and exclude affiliation to get the funder-only stratum no affiliation-based frame ever sees.

1,414 results · 1 filter active ·
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20002025
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Machine labels · sparse coverage
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An unlabeled work is unknown, not a negative. Label coverage is reported on every query.
1,414 works in the cohort · of 4,299,418page 2 of 29

Labels cover 1 of 1,414 works in this cohort. The rest are unlabeled, which is not a negative label: the label table is sparse today and grows as labeling rounds land.

Distilled predictions cover 1,414 of 1,414 works in this cohort. Predictions are machine_predicted_unvalidated. The Gemma side is a direct model label for every work (title-only); the Codex side is a distilled, calibrated classifier. Candidate is the union; consensus is the intersection.

affunlabeled
CdSe Quantum Dots for Two-Photon Fluorescence Thermal Imaging
Laura Martínez Maestro, Emma Martín Rodríguez, Francisco Sanz Rodríguez, M. Carmen Iglesias‐de la Cruz, Ángeles Juarranz, Rafik Naccache +4 more
2010· article· en· Nano Letters· Materials Science
machine prediction:candidate · noneconsensus · none
316
citations
fundno affunlabeled
Photoconductivity in CdSe quantum dot solids
C. A. Leatherdale, Cherie R. Kagan, Nicole Y. Morgan, S. A. Empedocles, M. A. Kastner, Moungi G. Bawendi
2000· article· en· Physical review. B, Condensed matter· Materials Science
machine prediction:candidate · noneconsensus · none
293
citations
afffundunlabeled
Self-assembly of inorganic nanorods
Kun Liu, Nana Zhao, Eugenia Kumacheva
2011· review· en· Chemical Society Reviews· Materials Science
machine prediction:candidate · noneconsensus · none
243
citations
affunlabeled
Depleted Bulk Heterojunction Colloidal Quantum Dot Photovoltaics
D. Aaron R. Barkhouse, Ratan Debnath, Illan J. Kramer, David Zhitomirsky, Andras G. Pattantyus‐Abraham, Larissa Levina +3 more
2011· article· en· Advanced Materials· Materials Science
machine prediction:candidate · noneconsensus · none
224
citations
affno abstractunlabeled
Quantum dots for Förster Resonance Energy Transfer (FRET)
Marcelina Cardoso Dos Santos, W. Russ Algar, Igor L. Medintz, Niko Hildebrandt
2020· article· sv· TrAC Trends in Analytical Chemistry· Materials Science
machine prediction:candidate · noneconsensus · none
222
citations
affunlabeled
Quantum Junction Solar Cells
Jiang Tang, Huan Liu, David Zhitomirsky, Sjoerd Hoogland, Xihua Wang, Melissa Furukawa +2 more
2012· article· en· Nano Letters· Materials Science
machine prediction:candidate · noneconsensus · none
221
citations
afffundunlabeled
Core/Shell Quantum Dots Solar Cells
Gurpreet Singh Selopal, Haiguang Zhao, Zhiming Wang, Federico Rosei
2020· article· en· Advanced Functional Materials· Materials Science
machine prediction:candidate · noneconsensus · none
217
citations
affunlabeled
N‐Type Colloidal‐Quantum‐Dot Solids for Photovoltaics
David Zhitomirsky, Melissa Furukawa, Jiang Tang, Philipp Stadler, Sjoerd Hoogland, Oleksandr Voznyy +2 more
2012· article· en· Advanced Materials· Materials Science
machine prediction:candidate · noneconsensus · none
211
citations

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