Poly(ferrocenylsilane) electrolytes as a gold nanoparticle foundry: "two-in-one" redox synthesis and electrosteric stabilization, and sensing applications

10.1039/c7nr04697a

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Main Authors: Song, J, Tan, Y.N, Ja?czewski, D, Hempenius, M.A, Xu, J.W, Tan, H.R, Vancso, G.J
Other Authors: CHEMISTRY
Format: Article
Published: Royal Society of Chemistry 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/178547
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spelling sg-nus-scholar.10635-1785472024-11-09T03:32:39Z Poly(ferrocenylsilane) electrolytes as a gold nanoparticle foundry: "two-in-one" redox synthesis and electrosteric stabilization, and sensing applications Song, J Tan, Y.N Ja?czewski, D Hempenius, M.A Xu, J.W Tan, H.R Vancso, G.J CHEMISTRY Color Colorimetry Electrolytes Gold Metal nanoparticles Nanoparticles Organometallics Plastic coatings Polyelectrolytes Polymers Polysilanes Redox reactions Reducing agents Solutions Biological applications Colorimetric probes Electrosteric stabilization Environmental response Feasibility studies Poly(ferrocenylsilanes) Sensing applications UV-vis absorptions Synthesis (chemical) 10.1039/c7nr04697a Nanoscale 9 48 19255-19262 2020-10-20T10:15:35Z 2020-10-20T10:15:35Z 2017 Article Song, J, Tan, Y.N, Ja?czewski, D, Hempenius, M.A, Xu, J.W, Tan, H.R, Vancso, G.J (2017). Poly(ferrocenylsilane) electrolytes as a gold nanoparticle foundry: "two-in-one" redox synthesis and electrosteric stabilization, and sensing applications. Nanoscale 9 (48) : 19255-19262. ScholarBank@NUS Repository. https://doi.org/10.1039/c7nr04697a 2040-3364 https://scholarbank.nus.edu.sg/handle/10635/178547 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Royal Society of Chemistry Unpaywall 20201031
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic Color
Colorimetry
Electrolytes
Gold
Metal nanoparticles
Nanoparticles
Organometallics
Plastic coatings
Polyelectrolytes
Polymers
Polysilanes
Redox reactions
Reducing agents
Solutions
Biological applications
Colorimetric probes
Electrosteric stabilization
Environmental response
Feasibility studies
Poly(ferrocenylsilanes)
Sensing applications
UV-vis absorptions
Synthesis (chemical)
spellingShingle Color
Colorimetry
Electrolytes
Gold
Metal nanoparticles
Nanoparticles
Organometallics
Plastic coatings
Polyelectrolytes
Polymers
Polysilanes
Redox reactions
Reducing agents
Solutions
Biological applications
Colorimetric probes
Electrosteric stabilization
Environmental response
Feasibility studies
Poly(ferrocenylsilanes)
Sensing applications
UV-vis absorptions
Synthesis (chemical)
Song, J
Tan, Y.N
Ja?czewski, D
Hempenius, M.A
Xu, J.W
Tan, H.R
Vancso, G.J
Poly(ferrocenylsilane) electrolytes as a gold nanoparticle foundry: "two-in-one" redox synthesis and electrosteric stabilization, and sensing applications
description 10.1039/c7nr04697a
author2 CHEMISTRY
author_facet CHEMISTRY
Song, J
Tan, Y.N
Ja?czewski, D
Hempenius, M.A
Xu, J.W
Tan, H.R
Vancso, G.J
format Article
author Song, J
Tan, Y.N
Ja?czewski, D
Hempenius, M.A
Xu, J.W
Tan, H.R
Vancso, G.J
author_sort Song, J
title Poly(ferrocenylsilane) electrolytes as a gold nanoparticle foundry: "two-in-one" redox synthesis and electrosteric stabilization, and sensing applications
title_short Poly(ferrocenylsilane) electrolytes as a gold nanoparticle foundry: "two-in-one" redox synthesis and electrosteric stabilization, and sensing applications
title_full Poly(ferrocenylsilane) electrolytes as a gold nanoparticle foundry: "two-in-one" redox synthesis and electrosteric stabilization, and sensing applications
title_fullStr Poly(ferrocenylsilane) electrolytes as a gold nanoparticle foundry: "two-in-one" redox synthesis and electrosteric stabilization, and sensing applications
title_full_unstemmed Poly(ferrocenylsilane) electrolytes as a gold nanoparticle foundry: "two-in-one" redox synthesis and electrosteric stabilization, and sensing applications
title_sort poly(ferrocenylsilane) electrolytes as a gold nanoparticle foundry: "two-in-one" redox synthesis and electrosteric stabilization, and sensing applications
publisher Royal Society of Chemistry
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/178547
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