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Magnetic field effect on nanoparticles migration and heat transfer of water/alumina nanofluid in a channelMALVANDI, A; GANJI, D. D.Journal of magnetism and magnetic materials. 2014, Vol 362, pp 172-179, issn 0304-8853, 8 p.Article

Ultrabroadband Photonic Structures To Achieve High-Performance Daytime Radiative CoolingREPHAELI, Eden; RAMAN, Aaswath; SHANHUI FAN et al.Nano letters (Print). 2013, Vol 13, Num 4, pp 1457-1461, issn 1530-6984, 5 p.Article

Flash Ignition of Freestanding Porous Silicon Films: Effects of Film Thickness and PorosityOHKURA, Yuma; WEISSE, Jeffrey M; LILI CAI et al.Nano letters (Print). 2013, Vol 13, Num 11, pp 5528-5533, issn 1530-6984, 6 p.Article

Transient Thermal Impedance Measurements on Low-Temperature-Sintered Nanoscale Silver JointsYUNHUI MEI; TAO WANG; XIAO CAO et al.Journal of electronic materials. 2012, Vol 41, Num 11, pp 3152-3160, issn 0361-5235, 9 p.Article

Thermal conductivity of non-Newtonian nanofluids: Experimental data and modeling using neural networkHOJJAT, M; ETEMAD, S. Gh; BAGHERI, R et al.International journal of heat and mass transfer. 2011, Vol 54, Num 5-6, pp 1017-1023, issn 0017-9310, 7 p.Article

CuS/Cu2S nanofluids: Synthesis and thermal conductivityXIAOHAO WEI; TIANTIAN KONG; HAITAO ZHU et al.International journal of heat and mass transfer. 2010, Vol 53, Num 9-10, pp 1841-1843, issn 0017-9310, 3 p.Article

The Classical Nature of Thermal Conduction in NanofluidsEAPEN, Jacob; RUSCONI, Roberto; PIAZZA, Roberto et al.Journal of heat transfer. 2010, Vol 132, Num 10, issn 0022-1481, 102402.1-102402.14Article

Experimental Study of Heat Conduction in Aqueous Suspensions of Aluminum Oxide NanoparticlesSUNGTAEK JU, Y; KIM, Jichul; HUNG, Ming-Tsung et al.Journal of heat transfer. 2008, Vol 130, Num 9, issn 0022-1481, 092403.1-092403.6Article

Numerical study of phonon radiative transfer in porous nanostructuresLI, Sheng-Yen; CHU, Hsin-Sen; YAN, Wei-Mon et al.International journal of heat and mass transfer. 2008, Vol 51, Num 15-16, pp 3924-3931, issn 0017-9310, 8 p.Article

Thermal rectifiers from deformed carbon nanohornsGANG WU; BAOWEN LI.Journal of physics. Condensed matter (Print). 2008, Vol 20, Num 17, issn 0953-8984, 175211.1-175211.4Article

Size effect on thermodynamic properties of free nanocrystalsKARASEVSKII, A. I; LUBASHENKO, V. V.The European physical journal. B, Condensed matter physics (Print). 2008, Vol 66, Num 3, pp 375-383, issn 1434-6028, 9 p.Article

A note on heat transfer modelling of Newtonian nanofluids in laminar free convectionPOLIDORI, G; FOHANNO, S; NGUYEN, C. T et al.International journal of thermal sciences. 2007, Vol 46, Num 8, pp 739-744, issn 1290-0729, 6 p.Article

Buoyancy-driven heat transfer of water-based Al2O3 nanofluids in a rectangular cavityKYO SIK HWANG; LEE, Ji-Hwan; SEOK PIL JANG et al.International journal of heat and mass transfer. 2007, Vol 50, Num 19-20, pp 4003-4010, issn 0017-9310, 8 p.Article

A new model for heat conduction of nanofluids based on fractal distributions of nanoparticlesJIE XU; BOMING YU; MINGQING ZOU et al.Journal of physics. D, Applied physics (Print). 2006, Vol 39, Num 20, pp 4486-4490, issn 0022-3727, 5 p.Article

Giant extrinsic negative thermal expansion in vanadium pentoxide nanocrystalline filmsBAHGAT, A. A; AL-HAJRY, A; EL-DESOKY, M. M et al.Physica status solidi. A, Applications and materials science (Print). 2006, Vol 203, Num 8, pp 1999-2006, issn 1862-6300, 8 p.Article

Ultralow Thermal Conductivity of Multilayers with Highly Dissimilar Debye TemperaturesDECHAUMPHAI, Edward; DYLAN LU; KAN, Jimmy J et al.Nano letters (Print). 2014, Vol 14, Num 5, pp 2448-2455, issn 1530-6984, 8 p.Article

Kinetics of growth and consumption of Ni rich phasesTELLOUCHE-DERAFA, G; HOUMMADA, K; DERAFA, A et al.Microelectronic engineering. 2014, Vol 120, pp 146-149, issn 0167-9317, 4 p.Conference Paper

Thermodynamic anomaly of the free damped quantum particle: the bath perspectiveINGOLD, G.-L.The European physical journal. B, Condensed matter physics (Print). 2012, Vol 85, Num 1, issn 1434-6028, 30.1-30.7Article

Non-Fourier Heat Conduction in Carbon NanotubesWANG, Hai-Dong; CAO, Bing-Yang; GUO, Zeng-Yuan et al.Journal of heat transfer. 2012, Vol 134, Num 5, issn 0022-1481, 051004.1-051004.6Conference Paper

Nose―Hoover thermostat length effect on thermal conductivity of single wall carbon nanotubesSHELLY, Robert A; TOPRAK, Kasim; BAYAZITOGLU, Yildiz et al.International journal of heat and mass transfer. 2010, Vol 53, Num 25-26, pp 5884-5887, issn 0017-9310, 4 p.Article

An Analysis of Heat Conduction Models for NanofluidsQUARESMA, João N. N; MACEDO, Emanuel N; DA FONSECA, Henrique M et al.Heat transfer engineering. 2010, Vol 31, Num 14, pp 1125-1136, issn 0145-7632, 12 p.Article

Specific heat of nanocrystalsAVRAMOV, I; MICHAILOV, M.Journal of physics. Condensed matter (Print). 2008, Vol 20, Num 29, issn 0953-8984, 295224.1-295224.4Article

Heat transfer in reactive Co/Al nanolaminatesHOBBS, M. L; ADAMS, D. P; MCDONALD, J. P et al.WIT transactions on engineering sciences. 2008, Vol v. 61, pp 127-136, issn 1746-4471, isbn 978-1-8456-4122-1 1-8456-4122-1, 1Vol, 10 p.Conference Paper

Size dependence of thermal expansion of nanostructuresPATHAK, Sandeep; SHENOY, Vijay B.Physical review B. Condensed matter and materials physics. 2005, Vol 72, Num 11, pp 113404.1-113404.4, issn 1098-0121Article

The atomistic study on the thermal expansion behaviors of nanowiresCHANG, I-Ling; CHANG, Fu-Rong.Computational materials science. 2012, Vol 54, pp 266-270, issn 0927-0256, 5 p.Article

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