000781053 000__ 04667cam\a2200469Ii\4500 000781053 001__ 781053 000781053 005__ 20230306143215.0 000781053 006__ m\\\\\o\\d\\\\\\\\ 000781053 007__ cr\nn\nnnunnun 000781053 008__ 170426s2017\\\\gw\a\\\\o\\\\\001\0\eng\d 000781053 019__ $$a985316139$$a985394821$$a985497280$$a985673553$$a985868779$$a986202125$$a986300425$$a986708384$$a986929949$$a986974772 000781053 020__ $$a9783662527801$$q(electronic book) 000781053 020__ $$a3662527804$$q(electronic book) 000781053 020__ $$z9783662527795 000781053 020__ $$z3662527790 000781053 035__ $$aSP(OCoLC)ocn984342541 000781053 035__ $$aSP(OCoLC)984342541$$z(OCoLC)985316139$$z(OCoLC)985394821$$z(OCoLC)985497280$$z(OCoLC)985673553$$z(OCoLC)985868779$$z(OCoLC)986202125$$z(OCoLC)986300425$$z(OCoLC)986708384$$z(OCoLC)986929949$$z(OCoLC)986974772 000781053 040__ $$aN$T$$beng$$erda$$epn$$cN$T$$dGW5XE$$dEBLCP$$dYDX$$dUAB 000781053 049__ $$aISEA 000781053 050_4 $$aTA418.9.N35 000781053 08204 $$a620.1/1597$$223 000781053 24500 $$aMagnetic characterization techniques for nanomaterials /$$cChalla S.S.R. Kumar, editor. 000781053 264_1 $$aBerling, Germany :$$bSpringer,$$c2017. 000781053 300__ $$a1 online resource (x, 566 pages) :$$billustrations. 000781053 336__ $$atext$$btxt$$2rdacontent 000781053 337__ $$acomputer$$bc$$2rdamedia 000781053 338__ $$aonline resource$$bcr$$2rdacarrier 000781053 500__ $$aIncludes index. 000781053 5050_ $$aContributors; 1 Rotational Anisotropy Nonlinear Harmonic Generation; 1 Definition of the Subject; 2 Overview; 3 Introduction; 4 Experimental and Instrumental Methodology; 4.1 The Nonlinear Optical Response of Crystals; 4.1.1 Effect of Static Fields; 4.1.2 Rotational Anisotropy Signal; 4.2 Optical Setups; 4.2.1 Light Sources and Detection; 4.2.2 Time Resolution; 5 Key Research Findings; 5.1 Crystallographic Measurements of Hard Condensed Matter; 5.1.1 Changes in Electronic Structure: The 3D Topological Insulator Bi2Se3 000781053 5058_ $$a5.1.2 Structural Refinement: The 5d Transition Metal Oxide Sr2IrO45.1.3 Surface and Interface Characterization: Rotational Anisotropy Sum-Frequency Generation as a Probe of Adsorbed Molecular ...; 5.1.4 Influence of Current Biasing on 2D Materials: Graphene; 5.1.5 Structural Characterization of 2D Materials: MoS2; 5.1.6 Chirality and Super-resolution Imaging: Nanostructures; 5.1.7 RA-SHG Imaging: Application to SiC Polytypes; 5.2 Electronic Effects and Magnetic Order in Hard Condensed Matter; 5.2.1 Influence of Excitonic States on SHG: ZnO 000781053 5058_ $$a5.2.2 Interplay Between Various Degrees of Freedom: Multiferroics5.2.3 Probing Externally Generated Sources of SHG: Magnetic Thin Films; 6 Conclusions and Future Perspective; References; 2 Magnetic Rotational Spectroscopy for Probing Rheology of Nanoliter Droplets and Thin Films; 1 Magnetic Rotational Spectroscopy; 1.1 Definition of the Topic; 2 Introduction; 2.1 Magnetic Rotational Spectroscopy for Newtonian Fluids; 2.2 Ferromagnetic Particles; 2.3 Paramagnetic Rods; 2.4 Time Dependent Viscosity ; 2.5 Viscoelasticity; 2.6 Static Magnetic Field; 2.7 Rotating Magnetic Field 000781053 5058_ $$a3 Experimental and Instrumental Methodology3.1 Magnetic Rotational Spectrometer ; 3.2 Probes ; 3.2.1 Spherical Probes; 3.2.2 Elongated Probes; 3.2.3 Selecting the Right Probes for Particular Applications; 3.2.4 Characterization of Rod-Like Magnetic Probes Using MRS: Self-Calibration; 4 Key Research Findings; 4.1 Characterization of Fluids with Low Viscosity; 4.2 Characterization of Thin Films Thickening with Time; 4.3 Measurements of Interfacial Viscosity; 5 Conclusions; References; 3 Iron Oxide Nanoparticle-Based MRI Contrast Agents: Characterization and In Vivo Use 000781053 5058_ $$a1 Definition of the Topic2 Overview; 3 Introduction; 3.1 Basic Principles; 3.2 Iron Oxide Nanoparticles; 4 Experimental and Instrumental Methodology; 4.1 Magnetic Resonance Imaging; 4.1.1 Theoretical Basis of NMR; 4.1.2 Relaxation Phenoma and Relaxometry; Relaxometry; 4.2 Size Characterization; 4.2.1 Transmission Electron Microscopy; 4.2.2 Dynamic Light Scattering; 4.3 Magnetic Characterization; 4.3.1 Introduction; 4.4 Surface Engineering; 5 Key Research Findings; 5.1 Nanoparticles for T2-Weighted MRI; 5.1.1 Lymph Node Imaging; 5.1.2 Atherosclerosis Plaque Detection 000781053 506__ $$aAccess limited to authorized users. 000781053 588__ $$aOnline resource; title from PDF title page (SpringerLink, viewed May 2, 2017). 000781053 650_0 $$aNanostructured materials$$xMagnetic properties. 000781053 7001_ $$aKumar, C. S. S. R.$$q(Challa S. S. R.),$$eeditor. 000781053 77608 $$iPrint version:$$z9783662527795$$z3662527790$$w(OCoLC)950953513 000781053 852__ $$bebk 000781053 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-3-662-52780-1$$zOnline Access$$91397441.1 000781053 909CO $$ooai:library.usi.edu:781053$$pGLOBAL_SET 000781053 980__ $$aEBOOK 000781053 980__ $$aBIB 000781053 982__ $$aEbook 000781053 983__ $$aOnline 000781053 994__ $$a92$$bISE