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Sio2 tio2 core shell
Sio2 tio2 core shell













sio2 tio2 core shell

Technol., 18, 336–350 (2015).Silica-titania core-shell nanospheres, CSNp, were prepared via a simple and environmentally friendly two step route. Jedsadaratanachai, Heat transfer enhancement of TiO 2/water nanofluid in a heat exchanger tube equipped with overlapped dual twisted-tapes, Int. Mamat, Heat transfer performance of TiO 2–SiO 2 nanofluid in water–ethylene glycol mixture, J. Najafi, Heat transfer and friction factor of water based TiO 2 and SiO 2 nanofluids under turbulent flow in a tube, Int. Baia, Impact of drying procedure on the morphology and structure of TiO 2 xerogels and the performance of dyesensitized solar cells, J. Wahyuono, Dye-Sensitized Solar Cells (DSSC) Fabrication with TiO 2 and ZnO Nanoparticles for High Conversion Efficiency, Master Thesis-ITS, Surabaya, Indonesia (2013). Rao, Experimental investigation of heat transfer coefficient and friction factor of ethylene glycol–water based TiO 2 nanofluid in double pipe heat exchanger with and without helical coil inserts, Int. Kim, Preparation and characterization of SiO 2/TiO 2 core–shell particles with controlled shell thickness, Mater. Sharma, Heat transfer performance of TiO 2–SiO 2 nanofluids in a tube with wire coil inserts, Appl.

sio2 tio2 core shell

Mamat, Experimental investigation of heat transfer and friction factor of TiO 2–SiO 2 nanofluids in water:ethylene glycol mixture, Int. Mamat, Experimental investigation of nanoparticle mixture ratios on TiO 2–SiO 2 nanofluids heat transfer performance under turbulent flow, Int. Akbarzade, Experimental investigation of force convection heat transfer in a car radiator filled with SiO 2–water nanofluid, Int. Akbari, An investigation on stability, electrical and thermal characteristics of transformer insulting oil nanofluids, Int. Khayat, Convective heat transfer of oil based nanofluid flow inside a circular tube, Int. Ardehali, Modeling of TiO 2–water nanofluid effect on heat transfer and pressure drop, Int. Sharma, Experimental investigation on heat transfer performance of TiO 2 nanofluids in water–ethylene glycol mixture, Int. Sonawane, Intensification of convective heat transfer in water/ethylene glycol based nanofluids containing TiO 2 nanoparticles, Chem. Rao, Experimental studies on thermal conductivity of blends of ethylene glycol–water-based TiO 2 nanofluid, Int. Mohamad, Effects of working temperature on thermo-physical properties and forced convection heat transfer of TiO 2 nanofluids in water–ethylene glycol mixture, Appl. Aloueyan, Experimental investigation on heat transfer characteristics and pressure drop of BPHE (brazed plate heat exchanger) using TiO 2–water nanofluid, Exp. Wongwises, Measurement of temperature-dependent thermal conductivity and viscosity of TiO 2–water nanofluids, Exp. Kheiri, Numerical comparison of turbulent heat transfer and flow characteristics of SiO 2/water nanofluid within helically corrugated tubes and plain tube, Int. Wongwises, Experimental and numerical investigation of nanofluids heat transfer characteristics for application in solar heat exchangers, Int. Altway, Optimization of the single staggered wire and tube heat exchanger, MATEC Web Conf., 58, 01017 (2016).Į. Altway, Modelling of the single staggered wire and tube heat exchanger, Int.















Sio2 tio2 core shell