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Influence of particle morphology on solar thermal conversion performance and sensible heat storage capacity: A case study of TiO2@Go binary nanofluid

Zilong Zeng, Libo Lu, Xiaofei Cao, Tian Xie, Xinlong Lu, Liwu Zhou, Jiarui Cheng, Lijing Ma, Dengwei Jing

2024Journal of Colloid and Interface Science13 citationsDOI

Topics & Concepts

NanofluidMaterials scienceThermal energy storageBinary numberParticle (ecology)ThermalSensible heatChemical engineeringThermodynamicsHeat capacityParticle sizeMechanicsPhysicsMathematicsEngineeringGeologyArithmeticOceanographySolar Thermal and Photovoltaic SystemsSolar-Powered Water Purification MethodsPhase Change Materials Research
Influence of particle morphology on solar thermal conversion performance and sensible heat storage capacity: A case study of TiO2@Go binary nanofluid | Litcius