Journal article 949 views
Processing and Characterization of Stable, pH-Sensitive Layer-by-Layer Modified Colloidal Quantum Dots
Ashvin T Nagaraja,
Aishwarya Sooresh,
Kenith Meissner,
Michael J McShane
ACS Nano, Volume: 7, Issue: 7, Pages: 6194 - 6202
Swansea University Author: Kenith Meissner
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DOI (Published version): 10.1021/nn402061t
Abstract
Processing and Characterization of Stable, pH-Sensitive Layer-by-Layer Modified Colloidal Quantum Dots
Published in: | ACS Nano |
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ISSN: | 1936-0851 1936-086X |
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2013
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URI: | https://cronfa.swan.ac.uk/Record/cronfa16245 |
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<?xml version="1.0"?><rfc1807><datestamp>2016-08-17T13:57:31.4386657</datestamp><bib-version>v2</bib-version><id>16245</id><entry>2013-10-01</entry><title>Processing and Characterization of Stable, pH-Sensitive Layer-by-Layer Modified Colloidal Quantum Dots</title><swanseaauthors><author><sid>30fdfec0d8b19b59b57a818e054d4af3</sid><firstname>Kenith</firstname><surname>Meissner</surname><name>Kenith Meissner</name><active>true</active><ethesisStudent>false</ethesisStudent></author></swanseaauthors><date>2013-10-01</date><deptcode>FGSEN</deptcode><abstract></abstract><type>Journal Article</type><journal>ACS Nano</journal><volume>7</volume><journalNumber>7</journalNumber><paginationStart>6194</paginationStart><paginationEnd>6202</paginationEnd><publisher/><issnPrint>1936-0851</issnPrint><issnElectronic>1936-086X</issnElectronic><keywords/><publishedDay>31</publishedDay><publishedMonth>12</publishedMonth><publishedYear>2013</publishedYear><publishedDate>2013-12-31</publishedDate><doi>10.1021/nn402061t</doi><url/><notes>This paper reports the development of a layer-by-layer coating technique for quantum dots. We believe this work to be the first extensive report of layer-by-layer coating of individual quantum dots. The research is the first major result from the NSF grant studying energy transfer dynamics for encapsulated sensing systems (McShane and Meissner co-PIs). Layer-by-layer coating of the individual quantum dots enables precise distance control for energy transfer research. The work also allows size and charge control for quantum dot biocompatibility studies.</notes><college>COLLEGE NANME</college><department>Science and Engineering - Faculty</department><CollegeCode>COLLEGE CODE</CollegeCode><DepartmentCode>FGSEN</DepartmentCode><institution>Swansea University</institution><apcterm/><lastEdited>2016-08-17T13:57:31.4386657</lastEdited><Created>2013-10-01T20:36:48.8719481</Created><path><level id="1">Faculty of Science and Engineering</level><level id="2">School of Engineering and Applied Sciences - Uncategorised</level></path><authors><author><firstname>Ashvin T</firstname><surname>Nagaraja</surname><order>1</order></author><author><firstname>Aishwarya</firstname><surname>Sooresh</surname><order>2</order></author><author><firstname>Kenith</firstname><surname>Meissner</surname><order>3</order></author><author><firstname>Michael J</firstname><surname>McShane</surname><order>4</order></author></authors><documents/><OutputDurs/></rfc1807> |
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2016-08-17T13:57:31.4386657 v2 16245 2013-10-01 Processing and Characterization of Stable, pH-Sensitive Layer-by-Layer Modified Colloidal Quantum Dots 30fdfec0d8b19b59b57a818e054d4af3 Kenith Meissner Kenith Meissner true false 2013-10-01 FGSEN Journal Article ACS Nano 7 7 6194 6202 1936-0851 1936-086X 31 12 2013 2013-12-31 10.1021/nn402061t This paper reports the development of a layer-by-layer coating technique for quantum dots. We believe this work to be the first extensive report of layer-by-layer coating of individual quantum dots. The research is the first major result from the NSF grant studying energy transfer dynamics for encapsulated sensing systems (McShane and Meissner co-PIs). Layer-by-layer coating of the individual quantum dots enables precise distance control for energy transfer research. The work also allows size and charge control for quantum dot biocompatibility studies. COLLEGE NANME Science and Engineering - Faculty COLLEGE CODE FGSEN Swansea University 2016-08-17T13:57:31.4386657 2013-10-01T20:36:48.8719481 Faculty of Science and Engineering School of Engineering and Applied Sciences - Uncategorised Ashvin T Nagaraja 1 Aishwarya Sooresh 2 Kenith Meissner 3 Michael J McShane 4 |
title |
Processing and Characterization of Stable, pH-Sensitive Layer-by-Layer Modified Colloidal Quantum Dots |
spellingShingle |
Processing and Characterization of Stable, pH-Sensitive Layer-by-Layer Modified Colloidal Quantum Dots Kenith Meissner |
title_short |
Processing and Characterization of Stable, pH-Sensitive Layer-by-Layer Modified Colloidal Quantum Dots |
title_full |
Processing and Characterization of Stable, pH-Sensitive Layer-by-Layer Modified Colloidal Quantum Dots |
title_fullStr |
Processing and Characterization of Stable, pH-Sensitive Layer-by-Layer Modified Colloidal Quantum Dots |
title_full_unstemmed |
Processing and Characterization of Stable, pH-Sensitive Layer-by-Layer Modified Colloidal Quantum Dots |
title_sort |
Processing and Characterization of Stable, pH-Sensitive Layer-by-Layer Modified Colloidal Quantum Dots |
author_id_str_mv |
30fdfec0d8b19b59b57a818e054d4af3 |
author_id_fullname_str_mv |
30fdfec0d8b19b59b57a818e054d4af3_***_Kenith Meissner |
author |
Kenith Meissner |
author2 |
Ashvin T Nagaraja Aishwarya Sooresh Kenith Meissner Michael J McShane |
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Journal article |
container_title |
ACS Nano |
container_volume |
7 |
container_issue |
7 |
container_start_page |
6194 |
publishDate |
2013 |
institution |
Swansea University |
issn |
1936-0851 1936-086X |
doi_str_mv |
10.1021/nn402061t |
college_str |
Faculty of Science and Engineering |
hierarchytype |
|
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facultyofscienceandengineering |
hierarchy_top_title |
Faculty of Science and Engineering |
hierarchy_parent_id |
facultyofscienceandengineering |
hierarchy_parent_title |
Faculty of Science and Engineering |
department_str |
School of Engineering and Applied Sciences - Uncategorised{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Engineering and Applied Sciences - Uncategorised |
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published_date |
2013-12-31T03:18:35Z |
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1763750461510254592 |
score |
11.035874 |