Search Results - "Salkar, Akshay V."
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Effects of Camphor Oil Addition to Diesel on the Nanostructures and Oxidative Reactivity of Combustion-Generated Soot
Published in Energy & fuels (19-12-2019)“…Less viscous and low cetane (LVLC) fuels have emerged as the promising alternative fuels or additives to fossil fuels. Camphor oil is one such potential LVLC…”
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Nanostructural Disorder and Reactivity Comparison of Flame Soot and Engine Soot Using Diesel and Jatropha Biodiesel/Diesel Blend as Fuels
Published in Energy & fuels (15-10-2020)“…Soot is a major anthropogenic air pollutant that affects human health and contributes to global warming. To understand its formation pathways and reduce…”
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Advances in Electrochemical and Catalytic Performance of Nanostructured FeCo2O4 and Its Composites
Published in Chemistry, an Asian journal (04-10-2021)“…It is well established that the excessive and uncontrolled use of fossil fuels and organic chemicals have put a risk to the earth‘s environment and the life…”
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Effect of 5-membered bicyclic hydrocarbon additives on nanostructural disorder and oxidative reactivity of diffusion flame-generated diesel soot
Published in Fuel (Guildford) (01-09-2020)“…Soot emission from diesel engines is of serious concern, as it is carcinogenic and remains suspended in air for a long time to cause adverse effects on human…”
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Highly selective etherification of fructose and 5‐hydroxymethylfurfural over a novel Pd‐Ru/MXene catalyst for sustainable liquid fuel production
Published in International journal of energy research (01-08-2021)“…Summary Sustainable liquid fuel production from bio‐oil compounds has attracted considerable attention in recent years. The catalytic etherification of…”
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Designing a Rare DNA-Like Double Helical Microfiber Superstructure via Self-Assembly of In Situ Carbon Fiber-Encapsulated WO 3- x Nanorods as an Advanced Supercapacitor Material
Published in ACS applied materials & interfaces (13-01-2021)“…Double helical DNA structure is one of the most beautiful and fascinating nanoarchitecture nature has produced. Mimicking nature's design by the tailored…”
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Pyrazine-based organic electrode material for high-performance supercapacitor applications
Published in Journal of energy storage (01-04-2022)“…•Synthesis of naphtho[2,3-h]naphtho[2′,3′:5,6]quinoxalino[2,3-a]naphtho[2′,3′:5,6] quinoxaline[2,3-c]phenazine-5,12,17,22, 27,30-hexaone (Pyz-ANQ).•Pyz-ANQ…”
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Facile synthesis of fibrous, mesoporous Ni1 − xO nanosponge supported on Ni foam for enhanced pseudocapacitor applications
Published in Journal of materials science (01-09-2020)“…Fibrous mesoporous Ni 1 − x O nanosponge with excellent pseudocapacitive properties was synthesized by controlled calcination of [Ni(H 2 O) 4 (4-nba) 2 ]·2H 2…”
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NH- and CH-Substituted Ureas as Self-Assembly Directing Motifs for Facile Synthesis and Electrocapacitive Applications of Advanced WO3–x One-Dimensional Nanorods
Published in ACS applied energy materials (23-12-2019)“…Designing a solid state crystal architecture at nanoscale, using a soft chemistry approach, is the key step toward their scalable synthesis for sustainable…”
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Advances in Electrochemical and Catalytic Performance of Nanostructured FeCo 2 O 4 and Its Composites
Published in Chemistry, an Asian journal (04-10-2021)“…It is well established that the excessive and uncontrolled use of fossil fuels and organic chemicals have put a risk to the earth‘s environment and the life…”
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Facile synthesis of fibrous, mesoporous Ni.sub.1 - xO nanosponge supported on Ni foam for enhanced pseudocapacitor applications
Published in Journal of materials science (01-09-2020)“…Fibrous mesoporous Ni.sub.1 - xO nanosponge with excellent pseudocapacitive properties was synthesized by controlled calcination of…”
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2D α-MoO3-x truncated microplates and microdisks as electroactive materials for highly efficient asymmetric supercapacitors
Published in Journal of energy storage (01-04-2022)“…•2D α-MoO3-x microstructures (truncated microplates (M1) and microdisks (M2)) are synthesized.•Interaction of protonated urea with [Mo7O24]6-, and [Mo8O26]4-…”
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