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  5. Controlled Synthesis and Size-Dependent Polarization Domain Structure of Colloidal Germanium Telluride Nanocrystals

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Article
en
2011

Controlled Synthesis and Size-Dependent Polarization Domain Structure of Colloidal Germanium Telluride Nanocrystals

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en
2011
Vol 133 (7)
Vol. 133
DOI: 10.1021/ja108309s

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Paul Alivisatos
Paul Alivisatos

University of Chicago

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Mark J. Polking
Haimei Zheng
R. Ramesh
+1 more

Abstract

Germanium telluride (GeTe) exhibits interesting materials properties, including a reversible amorphous-to-crystalline phase transition and a room-temperature ferroelectric distortion, and has demonstrated potential for nonvolatile memory applications. Here, a colloidal approach to the synthesis of GeTe nanocrystals over a wide range of sizes is demonstrated. These nanocrystals have size distributions of 10-20% and exist in the rhombohedral structure characteristic of the low-temperature polar phase. The production of nanocrystals of widely varying sizes is facilitated by the use of Ge(II) precursors with different reactivities. A transition from a monodomain state to a state with multiple polarization domains is observed with increasing size, leading to the formation of richly faceted nanostructures. These results provide a starting point for deeper investigation into the size-scaling and fundamental nature of polar-ordering and phase-change processes in nanoscale systems.

How to cite this publication

Mark J. Polking, Haimei Zheng, R. Ramesh, Paul Alivisatos (2011). Controlled Synthesis and Size-Dependent Polarization Domain Structure of Colloidal Germanium Telluride Nanocrystals. , 133(7), DOI: https://doi.org/10.1021/ja108309s.

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Publication Details

Type

Article

Year

2011

Authors

4

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/ja108309s

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