Sign in to use this feature.

Years

Between: -

Subjects

remove_circle_outline
remove_circle_outline
remove_circle_outline

Journals

Article Types

Countries / Regions

Search Results (2)

Search Parameters:
Authors = Gunjan Varshney

Order results
Result details
Results per page
Select all
Export citation of selected articles as:
16 pages, 569 KiB  
Article
Scalar Field Models of Barrow Holographic Dark Energy in f(R,T) Gravity
by Umesh Kumar Sharma, Mukesh Kumar and Gunjan Varshney
Universe 2022, 8(12), 642; https://doi.org/10.3390/universe8120642 - 2 Dec 2022
Cited by 15 | Viewed by 2066
Abstract
This research study investigates Barrow holographic dark energy with an energy density of ρΛ=CH2Δ by considering the Hubble horizon as the IR cut-off in the f(R,T) gravity framework. We employ Barrow [...] Read more.
This research study investigates Barrow holographic dark energy with an energy density of ρΛ=CH2Δ by considering the Hubble horizon as the IR cut-off in the f(R,T) gravity framework. We employ Barrow holographic dark energy to obtain the equation of the state for the Barrow holographic energy density in a flat FLRW Universe. Concretely, we study the correspondence between quintessence, k-essence, and dilation scalar field models with the Barrow holographic dark energy in a flat f(R,T) Universe. Furthermore, we reconstruct the dynamics and potential for all these models for different values of the Barrow parameter: Δ. Via this study, we can show that for Barrow holographic quintessence, k-essence, and dilation scalar field models, if the corresponding model parameters satisfy some limitations, the accelerated expansion can be achieved. Full article
Show Figures

Figure 1

31 pages, 7819 KiB  
Review
Assessment of Bio-Based Polyurethanes: Perspective on Applications and Bio-Degradation
by Raminder Kaur, Pooja Singh, Surya Tanwar, Gunjan Varshney and Sarla Yadav
Macromol 2022, 2(3), 284-314; https://doi.org/10.3390/macromol2030019 - 4 Jul 2022
Cited by 107 | Viewed by 16672
Abstract
Among numerous synthetic macromolecules, polyurethane in its different forms has proven its sheer dominance and established a reputation as a reliable and trusted material due to its proficiency in terms of superior properties, which include: high mechanical strength and abrasion resistance, good durability, [...] Read more.
Among numerous synthetic macromolecules, polyurethane in its different forms has proven its sheer dominance and established a reputation as a reliable and trusted material due to its proficiency in terms of superior properties, which include: high mechanical strength and abrasion resistance, good durability, good adhesion, good thermal stability, excellent chemical and weathering resistance. Synthetic polyurethane materials are non-biodegradable, poisonous, and use petrochemical-based raw materials, which are now depleting, leading to a surge in polyurethane production costs. Bio-based polyurethanes (PU) have been synthesized by researchers in recent decades and have mostly overtaken petrochemical-based PU in terms of challenges such as solid pollution, economic effectiveness, and availability of raw materials. Enormous kinds of available bio-renewable sources as predecessors for the production of polyols and isocyanates have been explored for the development of “greener” PU materials; these bio-based polyurethanes have significant potential to be used as future PU products, with a partial or total replacement of petroleum-based polyurethanes, due to increasing concern about the environment, their relatively low cost and biodegradability. This critical review concentrates on the possibilities of renewable sources to be used for polyurethane production and gives a clear perspective on the journey, utilization, and recent advancements in the field of different bio-based polyurethane polymers that have arisen over the last decade. Full article
Show Figures

Graphical abstract

Back to TopTop