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Titlebook: Springer Handbook of Inorganic Photochemistry; Detlef Bahnemann,Antonio Otavio T. Patrocinio Book 2022 The Editor(s) (if applicable) and T

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楼主: LEVEE
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IR Absorption (Time-Resolved Infrared Spectroscopy, Raman): Tracking Vibrational Signatures of the Mctional molecular systems upon light irradiation. Understanding the structure-function relationships of these typically metal-containing species is crucial to enable molecular engineering and targeted design for new functions in light harvesting and optoelectronics. The IR absorption methods includi
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Spectroelectrochemistryze inorganic soluble species, focusing mainly on coordination and organometallic complexes. To record in a single experiment all spectral changes related to the reactants, products or intermediates generated or consumed while an electrochemical process occurs, is important for a better understanding
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Photoacoustic Spectroscopypped or modulated, i.e., continual light by a sample, but not by measuring the intensity of light reduced by the sample photoabsorption as is in the ordinary photoabsorption spectroscopy. Therefore, PAS is one of the best techniques or even only sole one to measure photoabsorption by solid materials
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Time Resolved Microwave Conductivity: Studying Mobile Charge-Carriers in TiO2 Photoactive Particlesledge of the relation existing between charge-carrier lifetimes and material structural parameters can help to understand the mechanisms leading to the photoactivity. To follow the charge-carrier dynamics in semi-conductors, the variation of the sample conductivity after illumination must be determi
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Near Infrared Light Active Lanthanide-Doped Upconversion Nanoparticles: Recent Advances and Applicatperties, such as sharp emission peaks, deep tissue penetration, low toxicity, long anti-Stokes shift, low defect concentration, and enhanced photostability. These properties make them excellent materials comparative to the other conventional luminescent materials. Upconversion nanomaterials have fou
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Charge Carrier Management in Semiconductors: Modeling Charge Transport and Recombinationth fast mobility and low recombination rates, or good “charge carrier management”. Being able to predict such behavior means that new materials with desired properties can be discovered. It is necessary to understand the principles of such processes further to enable rationale catalyst design and to
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Ab Initio Modeling of Semiconductor-Water Interfacesstem, exploring the interfacial properties only by experimental measurements is challenging. It, therefore, requires an additional theoretical investigation on the microscopic atomic-scale features of the interface. In this chapter, the physical chemistries of semiconductor-water interfaces are disc
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