Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Raj Sekhar Roy"'
Autor:
Kommula, Bramhaiah, Chakraborty, Sagnik, Banoo, Maqsuma, Raj Sekhar Roy, Supriya Sil, Swarnkar, Abhishek, Rawat, Bhawna, Kailasam, Kamalakannan, Gautam, Ujjal K.
Publikováno v:
ACS Applied Materials & Interfaces; 7/31/2024, Vol. 16 Issue 30, p39470-39481, 12p
Autor:
Maqsuma Banoo, Raj Sekhar Roy, Monika Bhakar, Jaspreet Kaur, Aman Jaiswal, Goutam Sheet, Ujjal K. Gautam
Publikováno v:
Nano Letters. 22:8867-8874
Autor:
Adrija Ghosh, Sanchita Karmakar, Faruk Ahamed Rahimi, Raj Sekhar Roy, Sukhendu Nath, Ujjal K. Gautam, Tapas Kumar Maji
Publikováno v:
ACS Applied Materials & Interfaces. 14:25220-25231
Insights into developing innovative routes for the stabilization of photogenerated charge-separated states by suppressing charge recombination in photocatalysts is a topic of immense importance. Herein, we report the synthesis of a metal-organic fram
Autor:
Maqsuma, Banoo, Raj Sekhar, Roy, Monika, Bhakar, Jaspreet, Kaur, Aman, Jaiswal, Goutam, Sheet, Ujjal K, Gautam
Publikováno v:
Nano letters. 22(22)
Piezocatalytic water splitting is an emerging approach to generate "green hydrogen" that can address several drawbacks of photocatalytic and electrocatalytic approaches. However, existing piezocatalysts are few and with minimal structural flexibility
Autor:
Chathakudath P. Vinod, Raj Sekhar Roy, Ujjal K. Gautam, Arijit K. De, Samita Mishra, Yuvraj Vaishnav, Lipipuspa Sahoo, Sanjit Mondal
Publikováno v:
Journal of Materials Chemistry A. 8:20581-20592
Serendipitous observations offer newer insights into materials properties. Here we describe g-C3N4 nanosheets exhibiting remarkably blue-shifted photoluminescence within the 390–580 nm range centred at 425 nm which matches more closely with its ‘
Autor:
Raj Sekhar Roy, Sanjit Mondal, Samita Mishra, Maqsuma Banoo, Lipipuspa Sahoo, Amit Kumar, C.P. Vinod, Arijit K. De, Ujjal K. Gautam
Publikováno v:
Applied Catalysis B: Environmental. 322:122069
Publikováno v:
Solar Energy. 186:360-369
Polyaniline nanotube/reduced graphene oxide aerogel (PAniNT/rGOA) is studied as a potential counter electrode material for a quasi-solid-state dye-sensitized solar cell (DSSC) fabricated with poly(methyl methacrylate) based polymer gel electrolyte. T