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Article

Maikap, A. and Mukherjee, K. and Mondal, B. and Mandal, N. and Meikap, A.K. (2019) A novel non-enzymatic zinc oxide thin film based electrochemical recyclable strip with device interface for quantitative detection of catechol in water. Biosensors and Bioelectronics, 128. pp. 32-36.

Sengupta, D. and Mondal, B. and Mukherjee, K. (2017) Genesis of flake-like morphology and dye-sensitized solar cell performance of Al-doped ZnO particles: a study. Journal of Nanoparticle Research, 19. 100 (1-13).

Das, P. and Mondal, B. and Mukherjee, K. (2017) Chemi-resistive response of rutile titania nano-particles towards isopropanol and formaldehyde: a correlation with the volatility and chemical reactivity of vapors. Materials Research Express, 4 (1). 015503.

Sengupta, D. and Das, P. and Mondal, B. and Mukherjee, K. (2016) Effects of doping, morphology and film-thickness of photo-anode materials for dye sensitized solar cell application – A review. Renewable and Sustainable Energy Reviews, 60. pp. 356-376.

Mandal, N. and Mondal, S. and Mondal, A. and Mukherjee, K. and Mondal, B. (2016) Response surface modeling of Cu(II) removal from wastewater using fish scale-derived hydroxyapatite: application of Box–Behnken experimental design. Desalination and Water Treatment, 57 (33). pp. 15410-15423.

Das , P. and Mondal, B. and Mukherjee, K. (2016) Hierarchical zinc oxide nano-tips and micro-rods: hydrothermal synthesis and improved chemi-resistive response towards ethanol. RSC Advances, 6 (2). pp. 1408-1414.

Maikap, A. and Mukherjee, K. and Mondal, B. and Mandal, N. (2016) Zinc oxide thin film based nonenzymatic electrochemical sensor for the detection of trace level catechol. RSC Advances, 6 (69). 64611-64616 .

Mahata , S. and Mondal, B. and Mahata, S.S. and Usha, K. and Mandal, N. and Mukherjee, K. (2015) Chemical modification of titanium isopropoxide for producing stable dispersion of titania nano-particles. Materials Chemistry and Physics, 151. pp. 267-274.

Atyam, K.K. and Ghosh, A. and Mukherjee, K. and Majumder, S.B. (2015) Hematite iron oxide nano-particles: facile synthesis and their chemi-resistive response towards hydrogen. Materials Research Express, 2 (5). 55901(1-7).

Das, P. and Sengupta, D. and Kasinadhuni, U. and Mondal, B. and Mukherjee, K. (2015) Nano-crystalline thin and nano-particulate thick TiO2 layer: Cost effective sequential deposition and study on dye sensitized solar cell characteristics. Materials Research Bulletin, 66. pp. 32-38.

Sengupta, D. and Mondal, B. and Mukherjee, K. (2015) Visible light absorption and photo-sensitizing properties of spinach leaves and beetroot extracted natural dyes. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 148. pp. 85-92.

Usha, K. and Mondal, B. and Sengupta, D. and Das, P. and Mukherjee, K. and Kumbhakar, P. (2014) Development of multilayered nanocrystalline TiO2 thin films for photovoltaic application. Optical Materials, 36 (6). pp. 1070-1075.

Karmakar, M. and Das, P. and Pal, M. and Mondal, B. and Majumder, S.B. and Mukherjee, K. (2014) Acetone and ethanol sensing characteristics of magnesium zinc ferrite nano-particulate chemi-resistive sensor. J Mater Sci, 49. pp. 5766-5771.

Karmakar, M. and Mondal, B. and Pal, M. and Mukherjee, K. (2014) Acetone and ethanol sensing of barium hexaferrite particles: A case study considering the possibilities of non-conventional hexaferrite sensor. Sensors and Actuators B: Chemical, 190. pp. 627-633. ISSN 0925-4005

Das, P. and Mondal, B. and Mukherjee, K. (2014) Facile synthesis of pseudo-peanut shaped hematite iron oxide nano-particles and their promising ethanol and formaldehyde sensing characteristics. RSC Advances, 4. pp. 31879-31886.

Sengupta, D. and Das, P. and Kasinadhuni, U. and Mondal, B. and Mukherjee, K. (2014) Morphology induced light scattering by zinc oxide polydisperse particles: Promising for dye sensitized solar cell application. Journal of Renewable and Sustainable Emergy , 6. 063114 (1-10).

Mondal, B. and Mandal, N. and Mondal, S. and Mukherjee, K. and Mukhopadhyay, S. and Dey, A. (2014) Optimisation of process parameters for fabrication of nanocrystalline TiO2–hydoxyapatite based scaffold using response surface methodology. Advances in Applied Ceramics, 113 (3). pp. 129-138.

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