000850668 000__ 03120cam\a2200505Ii\4500 000850668 001__ 850668 000850668 005__ 20230306144952.0 000850668 006__ m\\\\\o\\d\\\\\\\\ 000850668 007__ cr\cn\nnnunnun 000850668 008__ 180914s2018\\\\si\a\\\\ob\\\\001\0\eng\d 000850668 019__ $$a1052566700$$a1052876124 000850668 020__ $$a9789811326370$$q(electronic book) 000850668 020__ $$a9811326371$$q(electronic book) 000850668 020__ $$z9789811326363 000850668 020__ $$z9811326363 000850668 0247_ $$a10.1007/978-981-13-2637-0$$2doi 000850668 035__ $$aSP(OCoLC)on1052553307 000850668 035__ $$aSP(OCoLC)1052553307$$z(OCoLC)1052566700$$z(OCoLC)1052876124 000850668 040__ $$aGW5XE$$beng$$erda$$epn$$cGW5XE$$dEBLCP$$dN$T$$dNLE$$dN$T$$dYDX 000850668 049__ $$aISEA 000850668 050_4 $$aTA418.9.N35 000850668 08204 $$a620.1/15$$223 000850668 1001_ $$aLi, Hai-Peng,$$eauthor. 000850668 24510 $$aPhonon thermal transport in silicon-based nanomaterials /$$cHai-Peng Li, Rui-Qin Zhang. 000850668 264_1 $$aSingapore :$$bSpringer,$$c2018. 000850668 300__ $$a1 online resource (x, 86 pages) :$$billustrations. 000850668 336__ $$atext$$btxt$$2rdacontent 000850668 337__ $$acomputer$$bc$$2rdamedia 000850668 338__ $$aonline resource$$bcr$$2rdacarrier 000850668 4901_ $$aSpringerBriefs in physics,$$x2191-5423 000850668 504__ $$aIncludes bibliographical references and index. 000850668 5050_ $$aIntro; Foreword; Acknowledgements; Contents; 1 Introduction; References; 2 Theoretical and Experimental Methods for Determining the Thermal Conductivity of Nanostructures; 2.1 Concepts and Foundations; 2.1.1 Thermal Conductivity; 2.1.2 Phonon and Electron Contributions; 2.1.3 Diffusive and Ballistic Phonon Transport; 2.1.4 Kinetic Behavior of Phonon Transport; 2.2 Theoretical Methods for Determining Nanoscale Thermal Conductivity; 2.2.1 Overview of Current Theoretical Methods; 2.2.2 Phonon Boltzmann Transport Equation; 2.2.3 Molecular Dynamics Simulations 000850668 5058_ $$a2.2.4 Non-equilibrium Green's Function Method2.3 Experimental Methods for Determining Nanoscale Thermal Conductivity; 2.3.1 Thermal Bridge Method; 2.3.2 Optothermal Raman Technique; 2.3.3 Three Omega Technique; 2.4 Concluding Remarks; References; 3 Thermal Stability and Phonon Thermal Transport in Spherical Silicon Nanoclusters; 3.1 Structure and Thermal Stability of Pristine Silicon Nanoclusters; 3.1.1 Structures and Melting Properties; 3.1.2 Size-Induced Structural Transition; 3.1.3 Structural Stability from Hydrogenation; 3.2 Phonon Thermal Conductivity of Pristine Silicon Nanoclusters 000850668 5058_ $$a5.3 Phonon Thermal Transport in Isotope-Doped Silicene NanoribbonsReferences; 6 Summary and Concluding Remarks; Index 000850668 506__ $$aAccess limited to authorized users. 000850668 588__ $$aOnline resource; title from PDF title page (SpringerLink, viewed September 14, 2018). 000850668 650_0 $$aNanosilicon$$xThermal properties. 000850668 650_0 $$aNanosilicon$$xElectric properties. 000850668 7001_ $$aZhang, Rui-Qin,$$eauthor. 000850668 77608 $$iPrint version: $$z9811326363$$z9789811326363$$w(OCoLC)1048936775 000850668 830_0 $$aSpringerBriefs in physics. 000850668 852__ $$bebk 000850668 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-981-13-2637-0$$zOnline Access$$91397441.1 000850668 909CO $$ooai:library.usi.edu:850668$$pGLOBAL_SET 000850668 980__ $$aEBOOK 000850668 980__ $$aBIB 000850668 982__ $$aEbook 000850668 983__ $$aOnline 000850668 994__ $$a92$$bISE