Direct Bottom-Up In Situ Growth: A Paradigm Shift for Studies in Wet-Chemical Synthesis of Gold Nanoparticles
GA Vinnacombe-Willson, Y Conti, A Stefancu… - Chemical …, 2023 - ACS Publications
Plasmonic gold nanoparticles have been used increasingly in solid-state systems because
of their applicability in fabricating novel sensors, heterogeneous catalysts, metamaterials …
of their applicability in fabricating novel sensors, heterogeneous catalysts, metamaterials …
Chiral metal nanostructures: synthesis, properties and applications
SU Abbas, JJ Li, X Liu, A Siddique, YX Shi, M Hou… - Rare Metals, 2023 - Springer
Chirality, the property that an object cannot coincide with its mirror image arising from lack of
mirror symmetry, is ubiquitous in nature at various length scales. The physical and chemical …
mirror symmetry, is ubiquitous in nature at various length scales. The physical and chemical …
Dynamic gold nanostructures based on DNA self assembly
The combination of DNA nanotechnology and Nano Gold (NG) plasmon has opened
exciting possibilities for a new generation of functional plasmonic systems that exhibit …
exciting possibilities for a new generation of functional plasmonic systems that exhibit …
Gold-nanoparticle-based chiral plasmonic nanostructures and their biomedical applications
H Li, X Gao, C Zhang, Y Ji, Z Hu, X Wu - Biosensors, 2022 - mdpi.com
As chiral antennas, plasmonic nanoparticles (NPs) can enhance chiral responses of chiral
materials by forming hybrid structures and improving their own chirality preference as well …
materials by forming hybrid structures and improving their own chirality preference as well …
Selective recognition of the amyloid marker single thioflavin T using DNA origami-based gold nanobipyramid nanoantennas
The development of effective methods for the detection of protein misfolding is highly
beneficial for early stage medical diagnosis and the prevention of many neurodegenerative …
beneficial for early stage medical diagnosis and the prevention of many neurodegenerative …
Chirally assembled plasmonic metamolecules from intrinsically chiral nanoparticles
J Pan, X Wang, J Zhang, Q Zhang, Q Wang, C Zhou - Nano Research, 2022 - Springer
Significant chiroptical responses could be generated by chiral coupling of achiral plasmonic
nanoparticles, or originated from intrinsically chiral plasmonic nanoparticles. Here we create …
nanoparticles, or originated from intrinsically chiral plasmonic nanoparticles. Here we create …
Plasmonic Nanoparticle-Enhanced Optical Techniques for Cancer Biomarker Sensing
L Fu, CT Lin, H Karimi-Maleh, F Chen, S Zhao - Biosensors, 2023 - mdpi.com
This review summarizes recent advances in leveraging localized surface plasmon
resonance (LSPR) nanotechnology for sensitive cancer biomarker detection. LSPR arising …
resonance (LSPR) nanotechnology for sensitive cancer biomarker detection. LSPR arising …
DNA-based gold nanoparticle assemblies: From structure constructions to sensing applications
M Xie, J Jiang, J Chao - Sensors, 2023 - mdpi.com
Gold nanoparticles (Au NPs) have become one of the building blocks for superior assembly
and device fabrication due to the intrinsic, tunable physical properties of nanoparticles. With …
and device fabrication due to the intrinsic, tunable physical properties of nanoparticles. With …
DNA Nanostructure-Guided Plasmon Coupling Architectures
M Liu, X Zhang, L Huang, J Li, C Fan, Y Tian - CCS Chemistry, 2023 - chinesechemsoc.org
Plasmon coupling architectures with specific spatial and orientational arrangement
configurations possess unique and tailored plasmonic properties and hold promise for …
configurations possess unique and tailored plasmonic properties and hold promise for …
Optimized plasmonic performances and derivate applications of Au nanobipyramids
Y Ni, C Kan, J Xu - Physical Chemistry Chemical Physics, 2022 - pubs.rsc.org
Gold nanobipyramids (AuBPs) with narrow size distribution and high monodispersity have
driven intensive attention because they display more advantageous plasmonic properties …
driven intensive attention because they display more advantageous plasmonic properties …