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Titlebook: Luminescent and Photoactive Transition Metal Complexes as Biomolecular Probes and Cellular Reagents; Kenneth Kam-Wing Lo Book 2015 Springe

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ely that the lower energy rotational transitions should be accessible with one of the optically pumped lasers. Several r.f. transition frequencies have been calculated for HO. from the constants determined by LMR and are listed by Hougen et al. . The most accurate predictions are for transition, inv
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Molecular Design of Novel Classes of Luminescent Transition Metal Complexes and Their Use in Sensinined. Upon the incorporation of various functionalities to the ancillary ligands, not only will their electronic absorption and emission properties be tuned, but also they may serve as optical and luminescent sensors for ions and molecules of biological interest and as reagents and probes for biolab
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Phosphorescent Iridium(III) Complexes for Bioimaging,es and efficient internalization into live cells. In this chapter, we summarize the recent design of bioimaging reagents based on phosphorescent iridium(III) complexes. The utilizations of cationic, neutral, and zwitterionic phosphorescent iridium(III) complexes in bioimaging applications have been
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Strongly Phosphorescent Transition-Metal Complexes with N-Heterocyclic Carbene Ligands as Cellular r nucleic acids) has been and continues to be an area of burgeoning interest in the design of luminescent probes and/or anticancer agents. The prevalence of deriving phosphorescent probes is owing to their long emission lifetimes (100 ns to ms), tunable emission wavelength, and fairly large Stokes s
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Time-Resolved Emission Imaging Microscopy Using Phosphorescent Metal Complexes: Taking FLIM and PLIorescence microscopy. The nature of the emission in the case of second- and third-row metal complexes is phosphorescence rather than fluorescence, as it emanates from triplet rather than singlet excited states, but the usual terminology overlooks the distinction between the quantum mechanical origin
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Book 2015es spans the entire Periodic Table and addresses structure and bonding issues associated with all of the elements. It also focuses attention on new and developing areas of modern structural and theoretical chemistry such as nanostructures, molecular electronics, designed molecular solids, surfaces,
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