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Linearly arranged polytypic CZTSSe nanocrystals.


ABSTRACT: Even colloidal polytypic nanostructures show promising future in band-gap tuning and alignment, researches on them have been much less reported than the standard nano-heterostructures because of the difficulties involved in synthesis. Up to now, controlled synthesis of colloidal polytypic nanocrsytals has been only realized in II-VI tetrapod and octopod nanocrystals with branched configurations. Herein, we report a colloidal approach for synthesizing non-branched but linearly arranged polytypic I(2)-II-IV-VI(4) nanocrystals, with a focus on polytypic non-stoichiometric Cu(2)ZnSnS(x)Se(4-x) nanocrystals. Each synthesized polytypic non-stoichiometric Cu(2)ZnSnS(x)Se(4-x) nanocrystal is consisted of two zinc blende-derived ends and one wurtzite-derived center part. The formation mechanism has been studied and the phase composition can be tuned through adjusting the reaction temperature, which brings a new band-gap tuning approach to Cu(2)ZnSnS(x)Se(4-x) nanocrystals.

SUBMITTER: Fan FJ 

PROVIDER: S-EPMC3518812 | biostudies-other | 2012

REPOSITORIES: biostudies-other

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Even colloidal polytypic nanostructures show promising future in band-gap tuning and alignment, researches on them have been much less reported than the standard nano-heterostructures because of the difficulties involved in synthesis. Up to now, controlled synthesis of colloidal polytypic nanocrsytals has been only realized in II-VI tetrapod and octopod nanocrystals with branched configurations. Herein, we report a colloidal approach for synthesizing non-branched but linearly arranged polytypic  ...[more]

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