Parth Shah, Krishna Modi, Rahul P. Patel, Pratik M. Pataniya, Vasant Sathe,
C. K. Sumesh. Scalable and cost-effective synthesis of flexible paper-based
Indium-doped SnS photodetectors in the VIS–NIR range, Surfaces and
Interfaces, 42 (2023) 103408.
Parth V. Shah, Pratik Pataniya, Narayan N. Som, Vasant Sathe,
Sumesh C. K. Flexible and Hand-Printed Photodetector Based on Mg–SnS
Nanoflakes, ACS Applied Nano Materials, 7 (2024) 5967–5981.
Parth V. Shah, Dhruv Detroja, Namuduri Sai Anuraag, Nand Kishore Prasad, Pratik M.
Pataniya, C. K. Sumesh. Vis–NIR Broadband Foldable Photodetector Based on
the WS2/PANI Composite, ACS Applied Electronic Materials, 6 (2024)
7113–7123.
Parth V. Shah, Pratik M.
Pataniya, Sohel Siraj, Parikshit Sahatiya, Vasant Sathe, C. K. Sumesh.
High-performance flexible and broadband photodetectors on paper substrates
using FeSnS bimetallic sulfide nanosheets, Optical Materials, 157 (2024)
116384.
Parth Shah, Dhruv Detroja,
Ayushi Shah, Sohel Siraj, Parikshit Sahatiya, Pratik Pataniya, C. K. Sumesh.
Flexible cellulose paper-based broadband photodetectors functionalized with
NiFe2O4:PANI nanocomposites, Sensors and Actuators A: Physical, 383 (2025)
116193.
Parth V. Shah, Pratik M.
Pataniya, Vasant G. Sathe, Parikshit Sahatiya, Sumesh C. K. SnSe
Nanosheet-Based Microflowers for Flexible Paper Photodetectors with
Efficient Broadband Visible–NIR Sensitivity, ACS Applied Nano Materials, 8
(2025) 24391–24401.
Shah, P., Bhakhar, S. A.,
Pataniya, P. M., et al. Hand-printed paper-based devices: Toward green
flexible electronics and sensing applications, International Journal of
Minerals, Metallurgy and Materials, 32 (2025) 2341–2365.
Mehul Dave, Parth
V. Shah, N. S. Anuraag, N. K. Prasad, Pratik M. Pataniya, C. K.
Sumesh. Paper-based flexible photodetector functionalized by WS2/Ti3C2T?
2D–2D heterostructures, Optical Materials, 150 (2024) 115244.
Rahul Patel, Parth
Shah, Sohel Siraj, Parikshit Sahatiya, Pratik M. Pataniya, C. K.
Sumesh. Fabrication of a wearable and foldable photodetector based on a
WSe2–MXene 2D–2D heterostructure using a scalable handprint technique,
Nanoscale, 16 (2024) 10011–10029.