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Weilin Xu

    Mesoscale Analysis of Hydraulics
    Single particle nanocatalysis
    • 2020

      Mesoscale Analysis of Hydraulics

      • 260 pages
      • 10 hours of reading

      Focusing on hydraulic phenomena in high-speed flows at head-head dams, this open access book delves into various intricate aspects such as cavitation bubbles, turbulent eddy vortices, and sediment interactions. Through a combination of hydraulic theory, detailed experiments, and numerical simulations, it explores critical topics like cavitation erosion and energy dissipation. The comprehensive analysis serves as a valuable resource for designers and researchers in hydraulic and environmental engineering, enhancing understanding of fluid mechanics in high-head dam contexts.

      Mesoscale Analysis of Hydraulics
    • 2019

      Single particle nanocatalysis

      • 304 pages
      • 11 hours of reading

      Introduces the detailed basis and recent development of single molecule/particle nanocatalysis based on single molecule techniques This unique book introduces and summarizes the recent development of single molecule/particle nanocatalysis to provide both comprehensive coverage of fundamentals for different methods now in widespread use and the extensive applications in different catalytic systems. Chapters are mainly based on different detection methods, including single molecule fluorescence microscopy, surface plasmon resonance spectroscopy, X-ray microscopy, and surface enhanced Raman spectroscopy. The book also includes numerous basic principles of different methods and application examples and features illustrations that help clarify presentations. Single Particle Nanocatalysis: Fundamentals and Applications starts with the history and development of single molecule techniques for nanocatalysis. It then shows readers how single molecule fluorescence microscopy (SMFM) reveals catalytic kinetics and dynamics of individual nanocatalysts. Next, it examines traditional SMFM-based single molecule nanocatalysis without super-resolution (SR) imaging, before moving on to the topic of SMFM-based SR imaging in single molecule nanocatalysis. Following chapters cover scanning electrochemical microscopy for single particle nanocatalysis; surface plasmon resonance spectroscopy for single particle nanocatalysis/reactions; X-ray-based microscopy of single-particle nanocatalysis; and surface-enhanced Raman spectroscopy for single particle nanocatalysis. The book finishes by introducing some less-practiced techniques for single particle nanocatalysis/electrochemistry. -Presents a systematical and complete introduction to the subject of single particle nanocatalysis? covering all of its fundamentals and applications -Helps readers fully understand the basis, role, and recent development of single molecule nanocatalysis -Teaches researchers how to gain new knowledge to successfully conduct their own studies within this rapidly increasing new area of research Single Particle Nanocatalysis: Fundamentals and Applications is an excellent reference book for experts in this area as well as for general researchers who want to learn how to study nanocatalysis at single molecule/particle level.

      Single particle nanocatalysis