C Rani, R Kumar - Chemical Communications, 2024 - pubs.rsc.org
Fano resonance is one of the most significant physical phenomena that correlates microscopic processes with macroscopic manifestations for experimental observations using …
Excitation wavelength-dependent Raman spectroscopy has been carried out to study electron–phonon interaction (Fano resonance) in multi-layered bulk 2H–MoS2 nano-flakes …
It will not be an exaggeration to say that there is a component of Raman spectroscopy in every scientist's life, of course with different involvement levels. The “Raman-effect” based …
Materials need to be engineered to make them device-ready. A mescoporous, a combination of meso-and microporous, nickel titanate–titanium oxide (m-NTTO) complex …
A nonlinear Fano interaction has been reported here which is manifest in terms of a parabolic temperature-dependent phonon decay process observable in terms of a Raman …
Discovering materials and device fabrication recipes is essential for achieving the best performing electronic devices. The nickel titanate titanium oxide (NTTO) complex …
It is always interesting to understand how the interplay between two perturbations, affects any physical process and gets manifested in a semiconductor. Temperature-and wavelength …
The already existing heterogeneity in nanomaterials makes it an intriguing yet complex system to study size effect vis-à-vis other external perturbations and thereby local …
Exploring materials and device paradigms for multifunctional electrochemical applications such as supercapacitors and sensing makes materials more suitable for real-life …