Tricolor White-Light-Emitting Carbon Dots with Multiple-Cores@Shell Structure for WLED Application
The past few years have witnessed the rapid development of carbon dots (CDs) due to their outstanding optical properties and a wide range of applications. However, the design and control of CDs with long-wavelength multicolor emission are still huge challenges to be addressed for their practical use...
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Veröffentlicht in: | ACS applied materials & interfaces 2018-06, Vol.10 (23), p.19796-19805 |
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creator | Zhang, Tianyi Zhao, Feifei Li, Li Qi, Bin Zhu, Dongxia Lü, Jianhua Lü, Changli |
description | The past few years have witnessed the rapid development of carbon dots (CDs) due to their outstanding optical properties and a wide range of applications. However, the design and control of CDs with long-wavelength multicolor emission are still huge challenges to be addressed for their practical use in different fields. Here, novel nitrogen-doped multiple-core@shell-structured AC-CDs with tricolor emissions of red, green, and blue were constructed via one-pot hydrothermal method from 5-amino-1,10-phenanthroline and citric acid as reactants and the growth process of AC-CDs was monitored with the reaction time in the synthetic system. The origin of different fluorescence emissions was explored using the unique coordination ability of the surface groups of AC-CDs. An obvious concentration dependence of fluorescent properties was observed for the as-prepared AC-CDs, and a highly fluorescent quantum yield (QY) of 67% for red emission at 630 nm can be obtained by adjusting concentration of AC-CDs. The pure white-light emission (0.33, 0.33; Commission Internationale de l’Elcairage coordinate) was carried out from single carbon dot with QY of 29% through regulation of the excitation and concentration of multiple-core@shell-structured AC-CDs. In addition, because of their excellent photoluminescent properties, the white-emitting AC-CDs as emitting phosphor can be easily used in the fabrication of white-light-emitting diode with good anti-photobleaching and temperature stability. |
doi_str_mv | 10.1021/acsami.8b03529 |
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However, the design and control of CDs with long-wavelength multicolor emission are still huge challenges to be addressed for their practical use in different fields. Here, novel nitrogen-doped multiple-core@shell-structured AC-CDs with tricolor emissions of red, green, and blue were constructed via one-pot hydrothermal method from 5-amino-1,10-phenanthroline and citric acid as reactants and the growth process of AC-CDs was monitored with the reaction time in the synthetic system. The origin of different fluorescence emissions was explored using the unique coordination ability of the surface groups of AC-CDs. An obvious concentration dependence of fluorescent properties was observed for the as-prepared AC-CDs, and a highly fluorescent quantum yield (QY) of 67% for red emission at 630 nm can be obtained by adjusting concentration of AC-CDs. The pure white-light emission (0.33, 0.33; Commission Internationale de l’Elcairage coordinate) was carried out from single carbon dot with QY of 29% through regulation of the excitation and concentration of multiple-core@shell-structured AC-CDs. 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Mater. Interfaces</addtitle><description>The past few years have witnessed the rapid development of carbon dots (CDs) due to their outstanding optical properties and a wide range of applications. However, the design and control of CDs with long-wavelength multicolor emission are still huge challenges to be addressed for their practical use in different fields. Here, novel nitrogen-doped multiple-core@shell-structured AC-CDs with tricolor emissions of red, green, and blue were constructed via one-pot hydrothermal method from 5-amino-1,10-phenanthroline and citric acid as reactants and the growth process of AC-CDs was monitored with the reaction time in the synthetic system. The origin of different fluorescence emissions was explored using the unique coordination ability of the surface groups of AC-CDs. An obvious concentration dependence of fluorescent properties was observed for the as-prepared AC-CDs, and a highly fluorescent quantum yield (QY) of 67% for red emission at 630 nm can be obtained by adjusting concentration of AC-CDs. The pure white-light emission (0.33, 0.33; Commission Internationale de l’Elcairage coordinate) was carried out from single carbon dot with QY of 29% through regulation of the excitation and concentration of multiple-core@shell-structured AC-CDs. In addition, because of their excellent photoluminescent properties, the white-emitting AC-CDs as emitting phosphor can be easily used in the fabrication of white-light-emitting diode with good anti-photobleaching and temperature stability.</description><issn>1944-8244</issn><issn>1944-8252</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2018</creationdate><recordtype>article</recordtype><recordid>eNp1kM1PwyAYxonRuPlx9Wg4GpNOCrRdby7d_EhqPGzGIwFGN5a2VKAx_veydO7mCXj5PU-e9wHgJkaTGOH4gUvHGz2ZCkQSnJ-AcZxTGk1xgk-Pd0pH4MK5HUIpwSg5ByOcZzlOUzoGYmW1NLWx8HOrvYpKvdn6aNFo73W7gQW3wrRwbryD39pv4Vtfe93VKiqMVe5xuVV1DZfe9tL3VsFqb1Qu5nDWdbWW3GvTXoGzitdOXR_OS_DxtFgVL1H5_vxazMqIE4J8pCTKhKSIrBUXPOFU8JzmtOIhqVIoTkP4aSaqJAxExRUJzyrJ0Tr80SxF5BLcDb6dNV-9cp412smQj7fK9I5hRBOcIUxIQCcDKq1xzqqKdVY33P6wGLF9r2zolR16DYLbg3cvGrU-4n9FBuB-AIKQ7Uxv27Dqf26_-AWDNg</recordid><startdate>20180613</startdate><enddate>20180613</enddate><creator>Zhang, Tianyi</creator><creator>Zhao, Feifei</creator><creator>Li, Li</creator><creator>Qi, Bin</creator><creator>Zhu, Dongxia</creator><creator>Lü, Jianhua</creator><creator>Lü, Changli</creator><general>American Chemical Society</general><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope><orcidid>https://orcid.org/0000-0003-3160-9495</orcidid><orcidid>https://orcid.org/0000-0003-1978-0628</orcidid></search><sort><creationdate>20180613</creationdate><title>Tricolor White-Light-Emitting Carbon Dots with Multiple-Cores@Shell Structure for WLED Application</title><author>Zhang, Tianyi ; Zhao, Feifei ; Li, Li ; Qi, Bin ; Zhu, Dongxia ; Lü, Jianhua ; Lü, Changli</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-a330t-ec07bc403deaba5a4ba9494fa926ee01663287bf5a92bfae3328f590de0147603</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2018</creationdate><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Zhang, Tianyi</creatorcontrib><creatorcontrib>Zhao, Feifei</creatorcontrib><creatorcontrib>Li, Li</creatorcontrib><creatorcontrib>Qi, Bin</creatorcontrib><creatorcontrib>Zhu, Dongxia</creatorcontrib><creatorcontrib>Lü, Jianhua</creatorcontrib><creatorcontrib>Lü, Changli</creatorcontrib><collection>PubMed</collection><collection>CrossRef</collection><collection>MEDLINE - Academic</collection><jtitle>ACS applied materials & interfaces</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Zhang, Tianyi</au><au>Zhao, Feifei</au><au>Li, Li</au><au>Qi, Bin</au><au>Zhu, Dongxia</au><au>Lü, Jianhua</au><au>Lü, Changli</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Tricolor White-Light-Emitting Carbon Dots with Multiple-Cores@Shell Structure for WLED Application</atitle><jtitle>ACS applied materials & interfaces</jtitle><addtitle>ACS Appl. Mater. Interfaces</addtitle><date>2018-06-13</date><risdate>2018</risdate><volume>10</volume><issue>23</issue><spage>19796</spage><epage>19805</epage><pages>19796-19805</pages><issn>1944-8244</issn><eissn>1944-8252</eissn><abstract>The past few years have witnessed the rapid development of carbon dots (CDs) due to their outstanding optical properties and a wide range of applications. However, the design and control of CDs with long-wavelength multicolor emission are still huge challenges to be addressed for their practical use in different fields. Here, novel nitrogen-doped multiple-core@shell-structured AC-CDs with tricolor emissions of red, green, and blue were constructed via one-pot hydrothermal method from 5-amino-1,10-phenanthroline and citric acid as reactants and the growth process of AC-CDs was monitored with the reaction time in the synthetic system. The origin of different fluorescence emissions was explored using the unique coordination ability of the surface groups of AC-CDs. An obvious concentration dependence of fluorescent properties was observed for the as-prepared AC-CDs, and a highly fluorescent quantum yield (QY) of 67% for red emission at 630 nm can be obtained by adjusting concentration of AC-CDs. The pure white-light emission (0.33, 0.33; Commission Internationale de l’Elcairage coordinate) was carried out from single carbon dot with QY of 29% through regulation of the excitation and concentration of multiple-core@shell-structured AC-CDs. 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title | Tricolor White-Light-Emitting Carbon Dots with Multiple-Cores@Shell Structure for WLED Application |
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