Issue 43, 2015

Advances in nanoscale alloys and intermetallics: low temperature solution chemistry synthesis and application in catalysis

Abstract

Based on the bottom-up chemistry techniques, the size, shape, and composition controlled synthesis of nanoparticles can now be achieved uniformly, which is of great importance to the nanoscience community as well as in modern catalysis research. The low-temperature solution-phase synthesis approach represents one of the most attractive strategies and has been utilized to synthesize nanoscale metals, alloys and intermetallics, including a number of new metastable phases. This perspective will highlight the solution-based nanoparticle synthesis techniques, a low-temperature platform, for the synthesis of size and shape-tunable nanoscale transition metals, alloys, and intermetallics from the literature, keeping a focus on the utility of these nanomaterials in understanding the catalysis. For each solution-based nanoparticle synthesis technique, a comprehensive overview has been given for the reported nanoscale metals, alloys, and intermetallics, followed by critical comments. Finally, their enhanced catalytic activity and durability as novel catalysts have been discussed towards several hydrogenation/dehydrogenation reactions and also for different inorganic to organic reactions. Hence, the captivating advantages of this controllable low-temperature solution chemistry approach have several important implications and together with them this approach provides a promising route to the development of next-generation nanostructured metals, alloys, and intermetallics since they possess fascinating properties as well as outstanding catalytic activity.

Graphical abstract: Advances in nanoscale alloys and intermetallics: low temperature solution chemistry synthesis and application in catalysis

Article information

Article type
Perspective
Submitted
22 Sep 2015
Accepted
29 Sep 2015
First published
08 Oct 2015

Dalton Trans., 2015,44, 18692-18717

Advances in nanoscale alloys and intermetallics: low temperature solution chemistry synthesis and application in catalysis

S. Jana, Dalton Trans., 2015, 44, 18692 DOI: 10.1039/C5DT03699B

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