- Dspace@NITW
The Institutional Repository (DSpace@NITW) showcases, organizes, and preserves the Institute's research output, facilitating access to its valuable intellectual contributions. It supports scholarly communication and ensures long-term preservation for future generations.
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One of the main challenges in silver nanoparticle research is developing a quick, scalable, and environmentally friendly synthesis method that also produces stable particles suitable for various applications. To address this challenge, we propose an eco-friendly, simple and efficient approach using the metal-displacement process that enables room-temperature formation of uniformly dispersed and oxidation resistant Ag NPs (25-50 nm). In this method, magnesium (Mg) acts as a sacrif...
Identifying triboelectricmaterial pairs capable of deliveringhighperformanceremainsakeychallengeforadvancing triboelectricnanogenerator(TENG)technologies.Toaddress the challenge, we have investigated a triboelectric pair comprising tribo-negative PDMS/MXene(Ti3C2Tx) with a potent tribo positive material, triphenylamine−phenyl−benzothiazole (TPA Ph-BTZ). In this work, the triboelectric propertiesof TPA-Ph BTZwerefirstsystematicallydeterminedbypairingitwithaseries of standard frictionalmater...
The present study addresses the industrial waste management of nonbiodegradable expired/waste silicone sealants (SS) through triboelectric nanogenerator technology (TENG). It explores the upcycling of waste SS as a frictional layer in a TENG to harness mechanical energy for sustainable applications. Among all the fabricated TENG devices, the SS-fluorinated ethylene propylene (FEP) frictional pair generated a maximum Voc of 320V and Isc of 145μA, with an instantaneous power density of 5.7W/...
The search for efficient, stable, and positive triboelectric materials is urgently needed to advance triboelectric nanogenerator (TENG) technology. Addressing this gap not only enhances device performance but also supports broader sustainability objectives, aligning with SDG-driven efforts toward clean energy, innovation, and responsible material use. While progress has been made with many negative triboelectric materials, the development of their positive counterparts remains limited. T...
Reducing the cost of the synthesis process and device fabrication plays an essential role in modestly developing products. In the present report, a simple and low-cost approach for the synthesis of ZnO nanosheets and the fabrication of a piezoelectric nanogenerator is developed. The ZnO nanosheets are synthesized by hot plate assisted hydrothermal method and characterized for their morphology, crystallinity, composition. The fabricated nanogenerator device produced an open-circuit voltage...
The present report aims at the application of piezoelectric nanogenerators for non-destructive material discrimination. The detailed characteristics of zinc oxide (ZnO) nanosheet-based piezoelectric nanogenerator and its applications in mechanical energy harvesting and sensing are considered as major objectives of the present study. The nanogenerator is fabricated with ZnO nanosheet film prepared by hydrothermal method with necessary electrodes. The nanogenerator response as a function o...
The increasing food packaging waste is a severe concern for air, water, and soil pollution. In this research work, a triboelectric nanogenerator (TENG) is fabricated using waste food packaging Aluminium cover foils and laboratory parafilm for the first time. The device novelty lies in the selection of the materials; parafilm and food packing Aluminium cover foils. The proposed TENG produced an output voltage and instantaneous power density of∼4 Vand 11.8nWcm−2, respectively, by hand exci...
This present work reports the preparation and characterization of bamboo powder from bamboo fibers using a ball mill technique. The bamboo fiber powder is prepared with different ballmilling times of 3, 6, and 12 h. The morphology, crystallinity, functional groups, thermal analysis, absorbance, and photoluminescence of the obtained bamboo powders are analyzed.Morphological studies confirmed the decrement in the average particle size with an increase in ball milling duration. X-ray diffra...
In this report, Lawsonia inermis leaves extract is employed for the first time to synthesize Magnesium Oxide (MgO) nanoparticles (NPs) in a green approach. The green synthesis of MgO NPs with Lawsonia inermis leaves extract has extra benefits like eco-friendly, cost-effective, rapid synthesis, safer, and give natural stabilization and capping action. MgO NPs were also prepared by the chemical method for the comparative study of properties. Sodium hydroxide was used as a reducing agent, an...
Diabetes can be treated effectively by the nanoparticles (NPs), which have been converted into nanomedicine. The present study describes the synthesis of Zinc oxide nanoparticles (ZnO NPs) using Bambusa arundinacea (BA), their antidiabetic, antibacterial, and anticancer potential. Histopathological studies of synthesized ZnO NPs and BA extract were carried out on male Wistar rats. The Wistar rats were divided into normal, toxicant, standard, and test groups. It is observed that the ZnO NP...
Here, we report the simple and flexible nanogenerator based on ZnO nanosheet networks. ZnO nanosheets are synthesized by simple, cost-effective and single-step hydrothermal method on flexible conducting Aluminum substrates at a low growth temperature of 80 °C. Nanogenerator is fabricated using ZnO nanosheet networks as an active piezoelectric element with necessary electrodes. Fabricated nanogenerator tested under real-time mechanical forces such as finger tapping, muscle stretching, foot...
In the present report, for the first time aqueous extract of Curcuma longa powder is used for the synthesis of Copper nanoparticles (Cu NPs) using a simple and cost effective method. Morphology, size, crystallinity, composition and microstructure of the synthesized Cu Nps are studied. Size of the particles are in the range of 5–20 nm. In addition to the above, antibacterial activity of the obtained Cu NPs is tested for both gram-positive and gram-negative microorganisms. Zone of inhibitio...
Plastic materials have found in every aspect of our daily life and the accumulation of plastics in the environment has led to great threat to the planet. Therefore, need for development of biodegradable plastics is essential to replace the petroleum based plastics. In this report, Zinc oxide (ZnO) nanorods were grown on the bio-degradable poly(lactic) acid (PLA) substrates for the first time by using low-temperature solution growth method. Growth of nanorods was carried out on two types o...
The increasing accumulation of medical waste, especially discarded pharmaceutical blister packs, poses both environmental risks and missed opportunities for resource recovery. In this work, we demonstrate, for the first time, the direct upcycling of tablet blister waste into a potential frictional layer in triboelectric nanogenerators (TENGs). The polymer structure of blister packs, combined with Silicone rubber as a counter frictional layer, enabled the fabrication of durable TENG devic...
Transition metal dichalcogenides (TMDs), particularly vanadium tetrasulfide (VS4), have demonstrated potential for versatile applications in photochemical, electrochemical, energy harvesting, and energy storage applications over a period of time owing to their unique structural and redox properties. In this study, VS4 was integrated with nickel aluminium layered double hydroxide (LDH) at varying concentrations (2.5 wt%, 5 wt%, and 7.5 wt%) via a hydrothermal approach to enhance its capaci...
The increasing demand for sustainable energy solutions has spurred research into advanced energyharvesting technologies, with triboelectric nanogenerators (TENGs) emerging as a promising option for converting ambient mechanical energy into electrical power. The present study explores the potential of a novel composite material comprising nickel–aluminum layered double hydroxides (NiAl-LDH) and MXene (Ti3C2) to improve TENG performance. Integrating highly conductive, high-surface-area twod...
The detection and analysis of volatile biomarkers in exhaled breath have emerged as promising non-invasive strategies for early disease diagnosis, therapeutic monitoring, and personalized healthcare. Traditional gas sensing platforms, however, often face limitations including dependency on external power sources, bulky designs, and inadequate sensitivity or selectivity under physiological conditions. This work provides a complete overview of recent improvements in self-powered gas sensors...
This study uses a novel approach to synthesize copper nanoparticles (Cu NPs) using tartaric acid as a reducing and capping agent via a metal displacement method. The uniqueness of this approach lies in its clean and efficient synthesis route that enables the formation of metallic copper nanoparticles under mild conditions by employing tartaric acid as a dual-functioning complexing and capping agent, and utilizing a spontaneous metal displacement reaction with aluminum. The quality of the ...
Electronic waste (e-waste) and the use of portable electronic devices are rapidly increasing due to technological advancements globally, leading to harmful effects on the environment. E-waste causes severe environmental damage, such as the pollution of soil, water, and air. Therefore, there is an urge for effective e-waste management, recycling, and sustainable consumption. In this report, We developed high-performance triboelectric nanogenerators (TENGs) utilizing discarded laptop LCD ...
A novel, environmentally friendly, near-infrared (NIR) solar reflective yellow pigment has been successfully developed by incorporating bismuth (Bi3+) and vanadium (V5+) into the yttrium phosphate (YPO4) host lattice. Y(1 x)BixP(1 y)VyO4 (x = y = 0–1) materials with different composition were synthesized using two distinct approaches: the flux-assisted solid-state method (SSM) and the co-precipitation technique (CPS), and the results were compared. A drastic shift in the absorption cu...
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