In this research work, MXene with a chemical formula of Ti3C2 is used for the first time with silicone oil to improve thermo-physical properties of MXene based silicone oil. This paper focuses on preparation, characterization, thermal properties, thermal stability and performance investigation of new class of silicone oil nanofluids induced with MXene in three different concentrations for a Concentrated Solar Photovoltaic Thermal (CPVT) collector. The thermal conductivity of the silicone oil-based MXene nanofluids is measured using a Transient Hot Bridge (THB) 500. Viscosity is measured using a Rheometer at various temperatures including 25, 50, 75, 100, and 125 degrees C. PerkinElmer Lambda 750 is used to measure optical absorbance. The hi...
The use of nanofluids as a heat transfer agent has spread and expanded as its thermal conductivity i...
Solar concentrator collectors have the potential of meeting the medium- and high-temperature thermal...
In many applications of high voltage engineering, electrical and thermal stresses increase due to an...
This research work introduces emerging two-dimensional (2D) MXene (Ti3C2) and Therminol55 oil-based ...
In this research, a new class of nanofluid is successfully formulated from Soybean oil and MXene (Ti...
In recent years, solar energy technologies have developed an emerging edge. The incessant research t...
Since technology progresses, the need to optimize the thermal system’s heat transfer efficiency is c...
Nanofluids have become widely used in different applications. One of these applications, it may be u...
The addition of ionic liquids with MXene nanofluid has a substantial impact on the solar thermal col...
Advancements in the formulated nanofluids have led to the dominant technologies to consider these su...
MXene, a recently created nanomaterial, offers significant potential for thermal, electrical, and a ...
IIT Ropar; DST-SERB; Indo-US Science and Technology Forum (IUSSTF); Thapar Institute of Engineering ...
Energy storage is a global critical issue and important area of research as most of the renewable so...
The objective of the present research work is to investigate a novel high-efficiency nanofluid in a ...
One of the most challenging problems that limit the practical application of carbon-based phototherm...
The use of nanofluids as a heat transfer agent has spread and expanded as its thermal conductivity i...
Solar concentrator collectors have the potential of meeting the medium- and high-temperature thermal...
In many applications of high voltage engineering, electrical and thermal stresses increase due to an...
This research work introduces emerging two-dimensional (2D) MXene (Ti3C2) and Therminol55 oil-based ...
In this research, a new class of nanofluid is successfully formulated from Soybean oil and MXene (Ti...
In recent years, solar energy technologies have developed an emerging edge. The incessant research t...
Since technology progresses, the need to optimize the thermal system’s heat transfer efficiency is c...
Nanofluids have become widely used in different applications. One of these applications, it may be u...
The addition of ionic liquids with MXene nanofluid has a substantial impact on the solar thermal col...
Advancements in the formulated nanofluids have led to the dominant technologies to consider these su...
MXene, a recently created nanomaterial, offers significant potential for thermal, electrical, and a ...
IIT Ropar; DST-SERB; Indo-US Science and Technology Forum (IUSSTF); Thapar Institute of Engineering ...
Energy storage is a global critical issue and important area of research as most of the renewable so...
The objective of the present research work is to investigate a novel high-efficiency nanofluid in a ...
One of the most challenging problems that limit the practical application of carbon-based phototherm...
The use of nanofluids as a heat transfer agent has spread and expanded as its thermal conductivity i...
Solar concentrator collectors have the potential of meeting the medium- and high-temperature thermal...
In many applications of high voltage engineering, electrical and thermal stresses increase due to an...