Synthesis and Microstructural Investigations of Organometallic Pd(II) Thiol-Gold Nanoparticles Hybrids

<p>Abstract</p> <p>In this work the synthesis and characterization of gold nanoparticles functionalized by a novel thiol-organometallic complex containing Pd(II) centers is presented. Pd(II) thiol,<it>trans, trans</it>-[dithiolate-dibis(tributylphosphine)dipalladium(II)...

Full description

Bibliographic Details
Main Authors: Cervellino Antonio, Vitaliano Rosa, Fratoddi Ilaria, Russo MariaVittoria, Giannini Cinzia, Guagliardi Antonella, Battocchio Chiara, Polzonetti Giovanni, Vitale Floriana, Piscopiello Emanuela, Tapfer Leander
Format: Article
Language:English
Published: SpringerOpen 2008-01-01
Series:Nanoscale Research Letters
Subjects:
Online Access:http://dx.doi.org/10.1007/s11671-008-9181-x
_version_ 1797760307965198336
author Cervellino Antonio
Vitaliano Rosa
Fratoddi Ilaria
Russo MariaVittoria
Giannini Cinzia
Guagliardi Antonella
Battocchio Chiara
Polzonetti Giovanni
Vitale Floriana
Piscopiello Emanuela
Tapfer Leander
author_facet Cervellino Antonio
Vitaliano Rosa
Fratoddi Ilaria
Russo MariaVittoria
Giannini Cinzia
Guagliardi Antonella
Battocchio Chiara
Polzonetti Giovanni
Vitale Floriana
Piscopiello Emanuela
Tapfer Leander
author_sort Cervellino Antonio
collection DOAJ
description <p>Abstract</p> <p>In this work the synthesis and characterization of gold nanoparticles functionalized by a novel thiol-organometallic complex containing Pd(II) centers is presented. Pd(II) thiol,<it>trans, trans</it>-[dithiolate-dibis(tributylphosphine)dipalladium(II)-4,4&#8242;-diethynylbiphenyl] was synthesized and linked to Au nanoparticles by the chemical reduction of a metal salt precursor. The new hybrid made of organometallic Pd(II) thiol-gold nanoparticles, shows through a single S bridge a direct link between Pd(II) and Au nanoparticles. The size-control of the Au nanoparticles (diameter range 2&#8211;10 nm) was achieved by choosing the suitable AuCl<sub>4</sub> <sup>&#8722;</sup>/thiol molar ratio. The size, strain, shape, and crystalline structure of these functionalized nanoparticles were determined by a full-pattern X-ray powder diffraction analysis, high-resolution TEM, and X-ray photoelectron spectroscopy. Photoluminescence spectroscopy measurements of the hybrid system show emission peaks at 418 and 440 nm. The hybrid was exposed to gaseous NO<sub> <it>x</it> </sub>with the aim to evaluate the suitability for applications in sensor devices; XPS measurements permitted to ascertain and investigate the hybrid &#8211;gas interaction.</p>
first_indexed 2024-03-12T18:56:43Z
format Article
id doaj.art-b5c93944874846ddb1c5650d678af5d6
institution Directory Open Access Journal
issn 1931-7573
1556-276X
language English
last_indexed 2024-03-12T18:56:43Z
publishDate 2008-01-01
publisher SpringerOpen
record_format Article
series Nanoscale Research Letters
spelling doaj.art-b5c93944874846ddb1c5650d678af5d62023-08-02T06:50:48ZengSpringerOpenNanoscale Research Letters1931-75731556-276X2008-01-01311461467Synthesis and Microstructural Investigations of Organometallic Pd(II) Thiol-Gold Nanoparticles HybridsCervellino AntonioVitaliano RosaFratoddi IlariaRusso MariaVittoriaGiannini CinziaGuagliardi AntonellaBattocchio ChiaraPolzonetti GiovanniVitale FlorianaPiscopiello EmanuelaTapfer Leander<p>Abstract</p> <p>In this work the synthesis and characterization of gold nanoparticles functionalized by a novel thiol-organometallic complex containing Pd(II) centers is presented. Pd(II) thiol,<it>trans, trans</it>-[dithiolate-dibis(tributylphosphine)dipalladium(II)-4,4&#8242;-diethynylbiphenyl] was synthesized and linked to Au nanoparticles by the chemical reduction of a metal salt precursor. The new hybrid made of organometallic Pd(II) thiol-gold nanoparticles, shows through a single S bridge a direct link between Pd(II) and Au nanoparticles. The size-control of the Au nanoparticles (diameter range 2&#8211;10 nm) was achieved by choosing the suitable AuCl<sub>4</sub> <sup>&#8722;</sup>/thiol molar ratio. The size, strain, shape, and crystalline structure of these functionalized nanoparticles were determined by a full-pattern X-ray powder diffraction analysis, high-resolution TEM, and X-ray photoelectron spectroscopy. Photoluminescence spectroscopy measurements of the hybrid system show emission peaks at 418 and 440 nm. The hybrid was exposed to gaseous NO<sub> <it>x</it> </sub>with the aim to evaluate the suitability for applications in sensor devices; XPS measurements permitted to ascertain and investigate the hybrid &#8211;gas interaction.</p>http://dx.doi.org/10.1007/s11671-008-9181-xGold nanoparticlesThiol complexesOrganometallic complexesNanoparticle synthesis
spellingShingle Cervellino Antonio
Vitaliano Rosa
Fratoddi Ilaria
Russo MariaVittoria
Giannini Cinzia
Guagliardi Antonella
Battocchio Chiara
Polzonetti Giovanni
Vitale Floriana
Piscopiello Emanuela
Tapfer Leander
Synthesis and Microstructural Investigations of Organometallic Pd(II) Thiol-Gold Nanoparticles Hybrids
Nanoscale Research Letters
Gold nanoparticles
Thiol complexes
Organometallic complexes
Nanoparticle synthesis
title Synthesis and Microstructural Investigations of Organometallic Pd(II) Thiol-Gold Nanoparticles Hybrids
title_full Synthesis and Microstructural Investigations of Organometallic Pd(II) Thiol-Gold Nanoparticles Hybrids
title_fullStr Synthesis and Microstructural Investigations of Organometallic Pd(II) Thiol-Gold Nanoparticles Hybrids
title_full_unstemmed Synthesis and Microstructural Investigations of Organometallic Pd(II) Thiol-Gold Nanoparticles Hybrids
title_short Synthesis and Microstructural Investigations of Organometallic Pd(II) Thiol-Gold Nanoparticles Hybrids
title_sort synthesis and microstructural investigations of organometallic pd ii thiol gold nanoparticles hybrids
topic Gold nanoparticles
Thiol complexes
Organometallic complexes
Nanoparticle synthesis
url http://dx.doi.org/10.1007/s11671-008-9181-x
work_keys_str_mv AT cervellinoantonio synthesisandmicrostructuralinvestigationsoforganometallicpdiithiolgoldnanoparticleshybrids
AT vitalianorosa synthesisandmicrostructuralinvestigationsoforganometallicpdiithiolgoldnanoparticleshybrids
AT fratoddiilaria synthesisandmicrostructuralinvestigationsoforganometallicpdiithiolgoldnanoparticleshybrids
AT russomariavittoria synthesisandmicrostructuralinvestigationsoforganometallicpdiithiolgoldnanoparticleshybrids
AT gianninicinzia synthesisandmicrostructuralinvestigationsoforganometallicpdiithiolgoldnanoparticleshybrids
AT guagliardiantonella synthesisandmicrostructuralinvestigationsoforganometallicpdiithiolgoldnanoparticleshybrids
AT battocchiochiara synthesisandmicrostructuralinvestigationsoforganometallicpdiithiolgoldnanoparticleshybrids
AT polzonettigiovanni synthesisandmicrostructuralinvestigationsoforganometallicpdiithiolgoldnanoparticleshybrids
AT vitalefloriana synthesisandmicrostructuralinvestigationsoforganometallicpdiithiolgoldnanoparticleshybrids
AT piscopielloemanuela synthesisandmicrostructuralinvestigationsoforganometallicpdiithiolgoldnanoparticleshybrids
AT tapferleander synthesisandmicrostructuralinvestigationsoforganometallicpdiithiolgoldnanoparticleshybrids