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  • MULANI, IMRANKHAN; RAJPUT, UMASHANKAR; HARNAGEA, LUMINITA; DESHPANDE, APARNA (American Physical Society, 2021-03)
    In this paper, using low-temperature scanning tunneling microscopy, we focus on understanding the native defects in pristine 1T−TiSe2 at the atomic scale. We probe how they perturb charge density waves (CDWs) and lead to ...
  • REJAUL, S.K.; Mondal, Debayan; MULANI, IMRANKHAN; Mahadevan, Priya; DESHPANDE, APARNA (American Chemical Society, 2022-10)
    Emergent properties in topological insulator heterostructures offer fresh insight not only to understand the system as a whole but also to design new approaches to device engineering at the nanoscale. Here we report the ...
  • RAJPUT, UMASHANKAR; Akhtar, Md Faiz; WALVE, VAIBHAV; MULANI, IMRANKHAN; VYAS, GIRIRAJ; Bhowmick, Somnath; Kumar, Prashant; DESHPANDE, APARNA (American Chemical Society, 2024-03)
    Liquid phase exfoliation (LPE) of non-van der Waals materials has added a new feature to the research frontier of two-dimensional materials. However, these LPE reports mostly focus on the structures of these sheets. The ...
  • REJAUL, S. K.; Nharangatt, Bijoy; MULANI, IMRANKHAN; Mahadevan, Priya; DESHPANDE, APARNA (American Chemical Society, 2024-10)
    The precise placement of organic molecules on substrates offers an expansive range of opportunities in the fields of materials science, electronics, catalysis, and nanotechnology. To realize these opportunities, an ...

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