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Dive into the research topics where Dor Amram is active.

Publication


Featured researches published by Dor Amram.


ACS Nano | 2014

Core(Fe)–Shell(Au) Nanoparticles Obtained from Thin Fe/Au Bilayers Employing Surface Segregation

Dor Amram; E. Rabkin

Core(Fe)-shell(Au) nanoparticles are obtained by solid-state dewetting of thin Fe/Au bilayer films deposited on a sapphire substrate. The core-shell morphology is achieved by employing the equilibrium segregation phenomenon, where Au atoms form a homogeneous thin shell on the surfaces of an Fe nanoparticle and at its interface with the substrate, reducing the total interfacial energy of the system. The obtained nanoparticles are single crystalline (structurally perfect), thermally stable, and of high purity. Their size may be tuned by changing the initial film thickness. We demonstrate that the nanoparticles can subsequently be stripped from the substrate, and/or be modified by attaching thiol-containing organic molecules for use in various nanotechnology-related applications. The method presented herein may easily be extended to other metal combinations, especially those relevant for catalysis, thus helping to reduce precious-metal (e.g., Au, Pt, Rh) content in the catalyst.


Acta Materialia | 2012

Anisotropic hole growth during solid-state dewetting of single-crystal Au–Fe thin films

Dor Amram; L. Klinger; E. Rabkin


Acta Materialia | 2014

Grain boundary grooving in thin films revisited: The role of interface diffusion

Dor Amram; L. Klinger; Nimrod Gazit; H. Gluska; E. Rabkin


Scripta Materialia | 2011

Kinetics of a retracting solid film edge: The case of high surface anisotropy

L. Klinger; Dor Amram; E. Rabkin


Acta Materialia | 2013

On the role of Fe in the growth of single crystalline heteroepitaxial Au thin films on sapphire

Dor Amram; E. Rabkin


Acta Materialia | 2013

Phase transformations in Au(Fe) nano- and microparticles obtained by solid state dewetting of thin Au–Fe bilayer films

Dor Amram; L. Klinger; E. Rabkin


Acta Materialia | 2014

Solid state dewetting and stress relaxation in a thin single crystalline Ni film on sapphire

E. Rabkin; Dor Amram; E. Alster


Acta Materialia | 2015

The α ↔ γ transformation in Fe and Fe–Au thin films, micro- and nanoparticles – an in situ study

Dor Amram; Oleg Kovalenko; E. Rabkin


JOM | 2016

Phase Transformations in Au-Fe Particles and Thin Films: Size Effects at the Micro- and Nano-scales

Dor Amram; E. Rabkin


Scripta Materialia | 2015

Capillary-driven growth of metallic nanowires

Dor Amram; Oleg Kovalenko; L. Klinger; E. Rabkin

Collaboration


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E. Rabkin

Technion – Israel Institute of Technology

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L. Klinger

Technion – Israel Institute of Technology

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Oleg Kovalenko

Technion – Israel Institute of Technology

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H. Gluska

Technion – Israel Institute of Technology

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M. Beregovsky

Technion – Israel Institute of Technology

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Nimrod Gazit

Technion – Israel Institute of Technology

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Yaron Amouyal

Technion – Israel Institute of Technology

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E. Alster

California Institute of Technology

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