{"product_id":"9783030174859","title":"Surface Plasmon Resonance Sensors : A Materials Guide to Design, Characterization, Optimization, and Usage (Springer Series in Surface Sciences) (2ND)","description":"\u003cp\u003e\u003c\/p\u003e\u003cp\u003eThis significantly extended second edition addresses the important physical phenomenon of Surface Plasmon Resonance (SPR) or Surface Plasmon Polaritons (SPP) in thin metal films, a phenomenon which is exploited in the design of a large variety of physico-chemical optical sensors. In this treatment, crucial materials aspects for design and optimization of SPR sensors are investigated and described in detail. The text covers a selection of nanometer thin metal films, ranging from free-electron to the platinum-type conductors, along with their combination with a large variety of dielectric substrate materials, and associated individual layer and opto-geometric arrangements. Whereas the first edition treated solely the metal-liquid interface, the SP-resonance conditions considered here are expanded to cover the metal-gas interface in the angular and wavelength interrogation modes, localized and long-range SP's and the influence of native oxidic ad-layers in the case of non-noble metals. Furthermore, a selection of metal grating structures that allow SP excitation is presented, as are features of radiative SP's. \u003c\/p\u003e\u003cp\u003eFinally, this treatise includes as-yet hardly explored SPR features of selected metal-metal and metal-dielectric superlattices. An in-depth multilayer Fresnel evaluation provides the mathematical tool for this optical analysis, which otherwise relies solely on experimentally determined electro-optical materials parameters.\u003c\/p\u003e\n\u003cp\u003e\u003c\/p\u003e Introduction and background information.- Physical features of the surface plasmon polariton.- Design features of surface plasmon resonance sensors.- Modeling and data processing.- SPR-sensor properties of metal films and particles: free electron type metals.- Classical noble metals.- Noble transition metals of the platinum group.- Common transition metals.- Other common metals.- SPR active metal-type compounds.- Heavy metals.- Artificial metal-insulator multi-layer structures.- Practical Applications.- Conclusions. \u003cb\u003eLeiva Casemiro Oliveira\u003c\/b\u003e is a computer scientist, who received a Ph.D. in electrical engineering at UFCG-Brazil in 2016. He is an advanced researcher on SPR technology in Brazil.\n \u003cb\u003eAntonio Marcus N. Lima\u003c\/b\u003e is an electrical engineer, who received his doctoral degree from INPT-Toulouse in 1989. He is a renowned researcher in the field of electrical engineering in Brazil.\n \u003cb\u003eCarsten Thistrup\u003c\/b\u003e received his Ph.D. in 1991 at the Technical University of Denmark; he co-founded the company Vir Biosensor. \u003cb\u003eHelmut Neff\u003c\/b\u003e was a physicist, who received his Ph.D. degree from TU-Berlin in 1981. He held positions at several researcher centers around the world.","brand":"Springer","offers":[{"title":"Default Title","offer_id":45559335747663,"sku":"00000_00000_00000_00000","price":5950.0,"currency_code":"TWD","in_stock":false}],"url":"https:\/\/kinokuniya.com.tw\/products\/9783030174859","provider":"Books Kinokuniya Taiwan","version":"1.0","type":"link"}