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Dual-mode crystal-bound and X-type passivation of quantum dots.


ABSTRACT: In this report, we present a new path to the control of quantum dot surface chemistry that can lead to a better understanding of nanoscale interfaces and the development of improved photocatalysts. Control of the synthetic methodology leads to QDs that are concomitantly ligated by crystal-bound organics at the surface anion sites and small X-type ligands on the surface cation sites.

SUBMITTER: Turo MJ 

PROVIDER: S-EPMC5494846 | biostudies-literature | 2016 Oct

REPOSITORIES: biostudies-literature

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Dual-mode crystal-bound and X-type passivation of quantum dots.

Turo Michael J MJ   Shen Xiao X   Brandon Nazharie K NK   Castillo Stephanie S   Fall Amadou M AM   Pantelides Sokrates T ST   Macdonald Janet E JE  

Chemical communications (Cambridge, England) 20161001 82


In this report, we present a new path to the control of quantum dot surface chemistry that can lead to a better understanding of nanoscale interfaces and the development of improved photocatalysts. Control of the synthetic methodology leads to QDs that are concomitantly ligated by crystal-bound organics at the surface anion sites and small X-type ligands on the surface cation sites. ...[more]

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