Synthetic routes to iron chalcogenide nanoparticles and thin films
Author:
Affiliation:
1. School of Chemistry
2. University of Manchester
3. Manchester
4. UK
5. School of Materials
6. Department of Chemistry
7. University of Zululand
8. Kwadlangezwa
9. 3886 South Africa
Abstract
This perspective summarises the key synthetic routes to iron chalcogenide thin films/nanoparticles by highlighting the key aspects that lead to control over phase/morphology.
Funder
Engineering and Physical Sciences Research Council
Royal Society
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2016/DT/C6DT03486A
Reference104 articles.
1. Low-Dimensional Hyperthin FeS2 Nanostructures for Efficient and Stable Hydrogen Evolution Electrocatalysis
2. Iron Pyrite Nanocubes: Size and Shape Considerations for Photovoltaic Application
3. Electrochemical characteristics of room temperature Li/FeS2 batteries with natural pyrite cathode
4. Kinetic frustration and the nature of the magnetic and paramagnetic states in iron pnictides and iron chalcogenides
5. Nanostructured metal chalcogenides: synthesis, modification, and applications in energy conversion and storage devices
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