Polydopamine-based concentric nanoshells with programmable architectures and plasmonic propertiesElectronic supplementary information (ESI) available: Fixed internal radii of PDA-based plasmonic nanoconstructs employed in simulations, schematic illustrations of constructing PDA-based NSs and concentric NSs, additional characterization data of PDA NPs, Au seed colloids, PDA-based Au NSs, Au NPs, Au@PEG NPs, Au@PDA NPs, Ag@PDA NPs, PDA-based Au NMs and Ag-Au NMs, and PDA-based concentric NSs, simu
Nanoshells, classically comprising gold as the metallic component and silica as the dielectric material, are important for fundamental studies in nanoplasmonics. They also empower a myriad of applications, including sensing, energy harvesting, and cancer therapy. Yet, laborious preparation precludes...
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description | Nanoshells, classically comprising gold as the metallic component and silica as the dielectric material, are important for fundamental studies in nanoplasmonics. They also empower a myriad of applications, including sensing, energy harvesting, and cancer therapy. Yet, laborious preparation precludes the development of next-generation nanoshells with structural complexity, compositional diversity, and tailorable plasmonic behaviors. This work presents an efficient approach to the bottom-up assembly of concentric nanoshells. By employing polydopamine as the dielectric material and exploiting its intrinsic adhesiveness and pH-tunable surface charge, the growth of each shell only takes 3-4 hours at room temperature. A series of polydopamine-based concentric nanoshells with programmable nanogap thickness, elemental composition (gold and silver), and geometrical configuration (number of layers) is prepared, followed by extensive structural characterization. Four of the silver-containing nanostructures are newly reported. Systematic investigations into the plasmonic properties of concentric nanoshells as a function of their structural parameters further reveal multiple Fano resonances and local-field "hot spots", infrequently reported plasmonic features for individual nanostructures fabricated using bottom-up wet chemistry. These results establish materials design rules for engineering complex plasmon-based systems originating from the integration of multiple plasmonic elements into defined locations within a compact nanostructure.
Polydopamine-based concentric nanoshells with programmable nanogap thickness, elemental composition, and geometrical configuration display multiple Fano resonances and local-field "hot spots". |
doi_str_mv | 10.1039/c7nr05451c |
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Polydopamine-based concentric nanoshells with programmable nanogap thickness, elemental composition, and geometrical configuration display multiple Fano resonances and local-field "hot spots".</description><identifier>ISSN: 2040-3364</identifier><identifier>EISSN: 2040-3372</identifier><identifier>DOI: 10.1039/c7nr05451c</identifier><language>eng</language><creationdate>2017-11</creationdate><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,776,780,27901,27902</link.rule.ids></links><search><creatorcontrib>Choi, Chun Kit K</creatorcontrib><creatorcontrib>Zhuo, Xiaolu</creatorcontrib><creatorcontrib>Chiu, Yee Ting Elaine</creatorcontrib><creatorcontrib>Yang, Hongrong</creatorcontrib><creatorcontrib>Wang, Jianfang</creatorcontrib><creatorcontrib>Choi, Chung Hang Jonathan</creatorcontrib><title>Polydopamine-based concentric nanoshells with programmable architectures and plasmonic propertiesElectronic supplementary information (ESI) available: Fixed internal radii of PDA-based plasmonic nanoconstructs employed in simulations, schematic illustrations of constructing PDA-based NSs and concentric NSs, additional characterization data of PDA NPs, Au seed colloids, PDA-based Au NSs, Au NPs, Au@PEG NPs, Au@PDA NPs, Ag@PDA NPs, PDA-based Au NMs and Ag-Au NMs, and PDA-based concentric NSs, simu</title><description>Nanoshells, classically comprising gold as the metallic component and silica as the dielectric material, are important for fundamental studies in nanoplasmonics. They also empower a myriad of applications, including sensing, energy harvesting, and cancer therapy. Yet, laborious preparation precludes the development of next-generation nanoshells with structural complexity, compositional diversity, and tailorable plasmonic behaviors. This work presents an efficient approach to the bottom-up assembly of concentric nanoshells. By employing polydopamine as the dielectric material and exploiting its intrinsic adhesiveness and pH-tunable surface charge, the growth of each shell only takes 3-4 hours at room temperature. A series of polydopamine-based concentric nanoshells with programmable nanogap thickness, elemental composition (gold and silver), and geometrical configuration (number of layers) is prepared, followed by extensive structural characterization. Four of the silver-containing nanostructures are newly reported. Systematic investigations into the plasmonic properties of concentric nanoshells as a function of their structural parameters further reveal multiple Fano resonances and local-field "hot spots", infrequently reported plasmonic features for individual nanostructures fabricated using bottom-up wet chemistry. These results establish materials design rules for engineering complex plasmon-based systems originating from the integration of multiple plasmonic elements into defined locations within a compact nanostructure.
Polydopamine-based concentric nanoshells with programmable nanogap thickness, elemental composition, and geometrical configuration display multiple Fano resonances and local-field "hot spots".</description><issn>2040-3364</issn><issn>2040-3372</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2017</creationdate><recordtype>article</recordtype><sourceid/><recordid>eNqFUktP20AQNqhIPNoLd6ThBlLSOjgE0RMRhJYDKFJ6jya7m3iqfWln3RJ-Nz-gazuKoYf2tLMz32vHzrLjQf55kBfXX8SVDfnl8HIgdrODi3yY94vi6uLDth4N97ND5p95ProuRsXBzuvU6bV0Hg1Z1V8gKwnCWaFsDCTAonVcKq0ZflMswQe3CmgMLrQCDKKkqESsgmJAK8FrZONsIiagVyGS4olOiNA0ufJeK5O0MayB7NIFg5GchbPJ7OEc8BeSrqW_wj09pyRkowoWNQSUROCWML0bb1J2XnXIlJljqERkUMZrt27YwGQq3VhwD1iUqvYTQFpXCd4OatktnezqjcfTrH3Xm42kVg9QSqq5KZkoMaBIMemlfYrEiJuk8DRN4HEFrJq1au1Ipk5nkGaNYH222Jvp5FtXbzVWXf2e_dgmHK_67a3XXDvM39HrjXzM9paoWX3anEfZyf3kx-33fmAx94FM-jzz7lcqjrLTf83nXi6L_2n8Ac384Ho</recordid><startdate>20171109</startdate><enddate>20171109</enddate><creator>Choi, Chun Kit K</creator><creator>Zhuo, Xiaolu</creator><creator>Chiu, Yee Ting Elaine</creator><creator>Yang, Hongrong</creator><creator>Wang, Jianfang</creator><creator>Choi, Chung Hang Jonathan</creator><scope/></search><sort><creationdate>20171109</creationdate><title>Polydopamine-based concentric nanoshells with programmable architectures and plasmonic propertiesElectronic supplementary information (ESI) available: Fixed internal radii of PDA-based plasmonic nanoconstructs employed in simulations, schematic illustrations of constructing PDA-based NSs and concentric NSs, additional characterization data of PDA NPs, Au seed colloids, PDA-based Au NSs, Au NPs, Au@PEG NPs, Au@PDA NPs, Ag@PDA NPs, PDA-based Au NMs and Ag-Au NMs, and PDA-based concentric NSs, simu</title><author>Choi, Chun Kit K ; Zhuo, Xiaolu ; Chiu, Yee Ting Elaine ; Yang, Hongrong ; Wang, Jianfang ; Choi, Chung Hang Jonathan</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-rsc_primary_c7nr05451c3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2017</creationdate><toplevel>online_resources</toplevel><creatorcontrib>Choi, Chun Kit K</creatorcontrib><creatorcontrib>Zhuo, Xiaolu</creatorcontrib><creatorcontrib>Chiu, Yee Ting Elaine</creatorcontrib><creatorcontrib>Yang, Hongrong</creatorcontrib><creatorcontrib>Wang, Jianfang</creatorcontrib><creatorcontrib>Choi, Chung Hang Jonathan</creatorcontrib></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Choi, Chun Kit K</au><au>Zhuo, Xiaolu</au><au>Chiu, Yee Ting Elaine</au><au>Yang, Hongrong</au><au>Wang, Jianfang</au><au>Choi, Chung Hang Jonathan</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Polydopamine-based concentric nanoshells with programmable architectures and plasmonic propertiesElectronic supplementary information (ESI) available: Fixed internal radii of PDA-based plasmonic nanoconstructs employed in simulations, schematic illustrations of constructing PDA-based NSs and concentric NSs, additional characterization data of PDA NPs, Au seed colloids, PDA-based Au NSs, Au NPs, Au@PEG NPs, Au@PDA NPs, Ag@PDA NPs, PDA-based Au NMs and Ag-Au NMs, and PDA-based concentric NSs, simu</atitle><date>2017-11-09</date><risdate>2017</risdate><volume>9</volume><issue>43</issue><spage>16968</spage><epage>1698</epage><pages>16968-1698</pages><issn>2040-3364</issn><eissn>2040-3372</eissn><abstract>Nanoshells, classically comprising gold as the metallic component and silica as the dielectric material, are important for fundamental studies in nanoplasmonics. They also empower a myriad of applications, including sensing, energy harvesting, and cancer therapy. Yet, laborious preparation precludes the development of next-generation nanoshells with structural complexity, compositional diversity, and tailorable plasmonic behaviors. This work presents an efficient approach to the bottom-up assembly of concentric nanoshells. By employing polydopamine as the dielectric material and exploiting its intrinsic adhesiveness and pH-tunable surface charge, the growth of each shell only takes 3-4 hours at room temperature. A series of polydopamine-based concentric nanoshells with programmable nanogap thickness, elemental composition (gold and silver), and geometrical configuration (number of layers) is prepared, followed by extensive structural characterization. Four of the silver-containing nanostructures are newly reported. Systematic investigations into the plasmonic properties of concentric nanoshells as a function of their structural parameters further reveal multiple Fano resonances and local-field "hot spots", infrequently reported plasmonic features for individual nanostructures fabricated using bottom-up wet chemistry. These results establish materials design rules for engineering complex plasmon-based systems originating from the integration of multiple plasmonic elements into defined locations within a compact nanostructure.
Polydopamine-based concentric nanoshells with programmable nanogap thickness, elemental composition, and geometrical configuration display multiple Fano resonances and local-field "hot spots".</abstract><doi>10.1039/c7nr05451c</doi><tpages>13</tpages></addata></record> |
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title | Polydopamine-based concentric nanoshells with programmable architectures and plasmonic propertiesElectronic supplementary information (ESI) available: Fixed internal radii of PDA-based plasmonic nanoconstructs employed in simulations, schematic illustrations of constructing PDA-based NSs and concentric NSs, additional characterization data of PDA NPs, Au seed colloids, PDA-based Au NSs, Au NPs, Au@PEG NPs, Au@PDA NPs, Ag@PDA NPs, PDA-based Au NMs and Ag-Au NMs, and PDA-based concentric NSs, simu |
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