National Institute of Technology Rourkela

राष्ट्रीय प्रौद्योगिकी संस्थान राउरकेला

ଜାତୀୟ ପ୍ରଯୁକ୍ତି ପ୍ରତିଷ୍ଠାନ ରାଉରକେଲା

An Institute of National Importance

All Publications

Braja Gopal Mishra

Professor
brajam@nitrkl.ac.in

S. K. Pradhan, K. Das, R. Bariki, D. Majhi, N. Behera, and B. G. Mishra,"Facile low temperature reflux synthesis of Bi self-doped Bi2MoO6 and construction of CaFe2O4/Bi2MoO6 0D QD-2D p-n heterojunction photocatalyst for efficient bisphenol A degradation and Cr(VI) reduction", Applied Surface Science, vol.611, pp.155607, Elsevier 2023, https://doi.org/10.1016/j.apsusc.2022.155607       Article
R. Bariki, S. K. Pradhan, S. Panda, S. K. Nayak, D. Majhi, K. Das, and B. G. Mishra,"In-situ synthesis of structurally oriented hierarchical UiO-66(–NH2)/ CdIn2S4/CaIn2S4 heterostructure with dual S-scheme engineering for photocatalytic renewable H2 production and asulam degradation", Separation and Purification Technology, vol.314, pp.123558, Elsevier, March 2023, https://doi.org/10.1016/j.seppur.2023.123558       Article
R. Bariki, S. K. Pradhan, S. Panda, S. K. Nayak, A. R. Pati, and B. G. Mishra,"Hierarchical UiO-66(-NH2)/CuInS2 S-Scheme photocatalyst with controlled topology for enhanced photocatalytic N2 fixation and H2O2 production", Langmuir, vol.39, pp.7707-7722, American Chemical Socienty 2023, https://doi.org/10.1021/acs.langmuir.3c00519       Article
R. Bariki, Y. P. Bhoi, S. K. Pradhan, S. Panda, S. K. Nayak, K. Das, D. Majhi, and B. G. Mishra,"Oxygen defect rich Bi2S3/SnS2/Bi-self doped Bi2W2O9 multijunction photocatalyst for enhanced degradation of methyl parathion and H2 evolution", Separation and Purification Technology, vol.324, pp.124509, Elsevier 2023, https://doi.org/10.1016/j.seppur.2023.124509       Article
D. Majhi, K. Das, R. Bariki, S. Padhan, A. Mishra, R. Dhiman, P. Dash, B. Nayak, and B. G. Mishra,"A facile reflux method for in situ fabrication of a non-cytotoxic Bi2S3/ß-Bi2O3/ZnIn2S4 ternary photocatalyst: a novel dual Z-scheme system with enhanced multifunctional photocatalytic activity", Journal of Materials Chemistry A, vol.303, pp.120902, Royal Society of Chemistry 2022, https://doi.org/10.1039/D0TA06129H       Article
K. Das, R. Bariki, D. Majhi, A. Mishra, K. Das, R. Dhiman, and B. G. Mishra,"Facile synthesis and application of CdS/Bi20TiO32/Bi4Ti3O12 ternary heterostructure: A synergistic multi-heterojunction photocatalyst for enhanced endosulfan degradation and hydrogen evolution reaction", Applied Catalysis B: Environmental, vol.303, pp.120902, Elsevier B.V. 2022, https://doi.org/10.1016/j.apcatb.2021.120902       Article
K. Das, R. Bariki, S. K. Pradhan, D. Majhi, P. Dash, A. Mishra, R. Dhiman, B. Nayak, and B. G. Mishra,"Boosting the photocatalytic performance of Bi2Fe4O9 through formation of Z-scheme heterostructure with In2S3: Applications towards water decontamination", Chemosphere, vol.306, pp.135600, Elsevier B.V. 2022, https://doi.org/10.1016/j.chemosphere.2022.135600       Article
R. Bariki, K. Das, S. K. Pradhan, B. Prusti, and B. G. Mishra,"MOF-derived hollow tubular In2O3/MIIIn2S4 (MII: Ca, Mn, and Zn) heterostructures: Synergetic charge-transfer mechanism and excellent photocatalytic performance to boost activation of small atmospheric molecules", ACS Applied Energy Materials, vol.5, no.9, pp.11002-11017, American Chemical Society 2022, https://doi.org/10.1021/acsaem.2c01670       Article
D. Majhi, A. K. Mishra, K. Das, R. Bariki, and B. G. Mishra,"Plasmonic Ag nanoparticle decorated Bi2O3/CuBi2O4 photocatalyst for expeditious degradation of 17a-ethinylestradiol and Cr(VI) reduction: Insight into electron transfer mechanism and enhanced photocatalytic activity", Chemical Engineering Journal, vol.413, pp.127506, Elsevier, June 2021, 10.1016/j.cej.2020.127506       Article
D. Majhi, K. Das, R. Bariki, P. Sahu, Y. P. Bhoi, and B. G. Mishra,"Preparation and catalytic application of sulfonated polyvinyl alcohol-Al-pillared a-zirconium phosphate (SPV-AZP) hybrid material towards synthesis of 4,6-diarylpyrimidin-2(1H)-ones", Journal of Porous Materials, vol.27, pp.355-368, Springer 2020, 0.1007/s10934-019-00816-9       Article