IIT Guwahati explores ways to develop perovskite materials for light emission
The authors discussed methods by which water can be used to bring about structural and morphological changes to perovskite, thereby enhancing its stability and optoelectronic properties.
A research team from the Indian Institute of Technology (IIT) Guwahati led by Tushar Debnath, Ramanujan faculty, Centre for Nanotechnology, IIT Guwahati, is exploring novel methods to fine tune perovskite nanocrystals for optoelectronics applications.
There is extensive research all over the world in developing materials for use in solar cells and light-emitting devices. Of the many materials being developed, perovskites are the most common ones.
What are perovskites?
Perovskites are a family of crystals that have optoelectronic properties that are suitable for light-emitting and light-absorbing applications. Perovskite nanocrystals (PNCs) – crystals that are a hundred thousand times smaller than the width of a human hair – are in particular being extensively explored because of their specific optoelectronic properties such as tunable bandgaps, narrow emission, and strong light-absorption coefficients.
Despite promise, the use of perovskite nanocrystals in solar cells and light-emitting applications has been hindered by their poor stability in air and moisture. While many research groups have been working towards overcoming the water sensitivity of perovskite nanocrystals, the IIT Guwahati team studied ways in which water sensitivity can be used constructively.
The team capitalised on the highly ionic nature of the perovskite crystal structure to engineer water-triggered chemical transformation to produce stable and bright PNCs. They have reviewed earlier research on interfacial chemistry between aqueous and non-aqueous phases and the effects of doping on the interaction between water and the perovskite nanocrystals.
Debnath said, “Our review shows that water can be ‘good’ for perovskites if we can utilise it properly and may lead to the development of several engineered structures.”
The authors discussed methods by which water can be used to bring about structural and morphological changes to perovskite, thereby enhancing its stability and optoelectronic properties.
The researchers have proposed various water-trigger approaches can be easily extended to tailor many perovskites with different compositions and to make several perovskite heterostructures. Moreover, the optoelectronic properties of doped perovskite nanocrystals can be triggered by water-assisted ligand shuttling approach. Such approaches would not only lead to tunability of optical property but also enhanced stability against water and moisture.
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