Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Optically Active Chiral CuO “Nanoflowers”

Type de record:

paper
Créateur:
YinXiaLu Shu
Hôte:avatar
Helical symmetry can be found in most flowers with a rotation of contort petal aestivation. For micro- and nanoscale analogies, flower mimicking structures have been reproduced; however, the conceptual chirality of “nanoflowers” has not yet been defined. Here, the chirality of the “flower” was defined by its nanosized chiral structure and consequent optical activity (OA), opening new horizons for the physical theory and chiral materials. We report the surfactant-mediated hydrothermal synthesis of chiral CuO nanoflowers using sodium dodecyl sulfate (SDS) as a structure-directing agent, an amino alcohol as a symmetry-breaking agent, and cupric salt as the inorganic source. Two levels of hierarchical chirality exist for a CuO nanoflower including primary helically arranged “nanoflakes” and secondary helical “subnanopetals” that form “nanopetals”. The nanoflowers exhibited a prominent optical response to circularly polarized light (CPL) at the absorption bands characteristic of CuO.

Visit

figshare.com

Tags

BiophysicsBiochemistryMolecular BiologyBiotechnologyEvolutionary BiologyMental HealthEnvironmental Sciences not elsewhere classifiedChemical Sciences not elsewhere classifiedCuO nanoflowerCPL+12

Licenses

CC BY-NC 4.0

Similaires

Determining the sensitivity of Sentinel-2 bands to optically and non-optically active water quality parameters under high- and low-flow conditions in the cradle of Humankind World Heritage Site, South AfricaDataset from: Ngamile, S, Kganyago, M, Madonsela, S, & Mvandaba, V (2025) Determining the Sensitivity of Sentinel-2 Bands to Optically and Non-Optically Active Water Quality Parameters Under High- and Low-Flow Conditions in the Cradle of Humankind World Heritage Site South AfricaCharacterizing the Absorption Properties for Remote Sensing of Three Small Optically-Diverse South African ReservoirsChiral Trapped Headspace GC-QMS-IMS: Boosting Untargeted Benchtop Volatilomics to the Next LevelUltrasound-assisted synthesis of TiO2-La2O3-CuO@zeolite for visible-light photocatalysis of crystal violet: Process optimization via decision trees and dragonfly algorithmACTIVE PHARMACOVIGILANCE IN CôTE D'IVOIRE

Determining the sensitivity of Sentinel-2 bands to optically and non-optically active water quality parameters under high- and low-flow conditions in the cradle of Humankind World Heritage Site, South Africa

Access to clean water is a global challenge, particularly in the Global South, where scarcity and

Dataset from: Ngamile, S, Kganyago, M, Madonsela, S, & Mvandaba, V (2025) Determining the Sensitivity of Sentinel-2 Bands to Optically and Non-Optically Active Water Quality Parameters Under High- and Low-Flow Conditions in the Cradle of Humankind World Heritage Site South Africa

This dataset includes in-situ water quality measurements, laboratory results, and Sentinel-

Characterizing the Absorption Properties for Remote Sensing of Three Small Optically-Diverse South African Reservoirs

Characterizing the specific inherent optical properties (SIOPs) of water constituents is fundamental

Chiral Trapped Headspace GC-QMS-IMS: Boosting Untargeted Benchtop Volatilomics to the Next Level

In the field of quality analysis of food and flavoring products, gas chromatography – quad

Ultrasound-assisted synthesis of TiO2-La2O3-CuO@zeolite for visible-light photocatalysis of crystal violet: Process optimization via decision trees and dragonfly algorithm

International audience The release of synthetic dyes into aquatic environments has re

ACTIVE PHARMACOVIGILANCE IN CôTE D'IVOIRE

Background In Africa, pharmacovigilance (PV) is a relatively new science. Yet the African context i