School Of Basic And Applied Sciences
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Item Photo-electrochemical Property of Microwave Synthesized Muga Silk Nanoparticles/ZnO/ITO/PET Structure(Taylor and Francis Ltd., 2020-12-10T00:00:00) Asapur, Prithvi C.; Shiyani, Tulshi; Mahapatra, S.K.; Bogle, Kashinath A.; Banerjee, IndraniMuga silk nanoparticles (MSNP) in the size range of 28�142 nm were synthesized via microwave-assisted radiolysis method. Interestingly, these nanoparticles acquire cuboidal shape and exhibit photoresponsive property, under white light illumination of power 56 mW/cm2 in a photo-electrochemical cell, when fabricated in MSNP/ZnO/ITO/PET flexible device structure. The device was found to be active under visible light illumination and gives photoresponsivity of 0.119 �A/W with the rise/decay time of 0.9/0.6 s, respectively. Such photoresponse of MSNP could serve as an optoelectric biomolecule, which would find its application for next-generation wearable and implantable optoelectronic devices. � 2022 IETE.Item Natural Basil as Photosensitizer with ZnO Thin Films for Solar Cell Applications(Taylor and Francis Ltd., 2020-06-04T00:00:00) Shiyani, Tulshi; Mahapatra, S.K.; Banerjee, IndraniThe hybrid solar cell has been fabricated using natural dye extracted from basil or ocimum leaves and ZnO thin film. The extracted natural dye was deposited on ZnO thin films and dried at room temperature. The semiconductor layer of ZnO was fabricated on FTO-coated glass substrate using magnetron sputtering with a thickness of 500 nm. A photocathode was prepared from the Au�Pd mixture using sputtering for a top electrode. ZnO has been confirmed using X-ray diffraction and UV�visible absorption spectroscopy measurements. The photovoltaic characteristics of the prepared DSSCs were studied by measuring the I�V characteristics under the illumination of halogen light. Photocurrent and photovoltage both are increased in the cell. The value of short-circuit current (I sc), open-circuit voltage (V oc), and photon energy conversion efficiency (?) were calculated for a dye-sensitized solar cell (DSSC). DSSCs provide the promising light to electrical energy conversion efficiency due to their low-cost fabrication, environmentally friendly elements, and low maintenance. DSSC offers transparent solar cell modules with the capabilities of the use of hybrid composition such as organic and inorganic materials. The basil/ZnO-based hybrid devices can also be useful for photoelectrochemical cell and water splitting applications. � 2022 IETE.