Super-Resolution Microscopy for Material Science--材料科学的超分辨率显微镜

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史蒂文 2024-12-12 12 4.67MB 248 页 18星币
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Optical microscopy is one of the most frequently used tools in chemistry
and the life sciences. However, its limited resolution hampers the use of
optical imaging to many other relevant problems in dierent disciplines.
Super- Resolution Microscopy (SRM) is a new technique that allows the
resolution of objects down to a few billionth of meters (nanometers), ten
times better than classical microscopes, opening up opportunities to use
this tool in new elds.
is book describes the theory, principles, and practice of super-
resolution microscopy in the eld of materials science and nanotechnol-
ogy. ere is a growing interest in the applications of SRM beyond biology
as new synthetic materials, such as nanoscale sensors and catalysts, nano-
structured materials, functional polymers, and nanoparticles, have nano-
scopic features that are challenging to visualize with traditional imaging
methods.
SRM has the potential to be used to image and understand these
cutting- edge man- made objects and guide the design of materials for novel
applications.
is book is an ideal guide for researchers in the elds of microscopy
and materials science and chemistry as well as graduate students studying
physics, materials science, biomedical engineering, and chemistry.
Key Features:
Contains practical guidance on Super- Resolution Microscopy
(SRM), an exciting and growing tool that was awarded the Nobel
Prize for chemistry in 2014.
Provides a new perspective targeting materials science, unlike exist-
ing books which target readers in chemistry, life science, and biology.
Targets students in its core chapters, while oering more advanced
material for professionals and researchers in later chapters.
Super-Resolution Microscopy
for Material Science
Super-Resolution
Microscopy for Material
Science
Edited by
Lorenzo Albertazzi and Peter Zijlstra

标签: #显微镜

摘要:

本文系统介绍了超分辨率显微镜在材料科学领域的前沿应用与技术突破,重点阐述了突破光学衍射极限的成像原理,以及如何通过STORM、STED、PALM等高级显微技术实现对材料纳米级结构的高精度表征。文章从金属催化剂的表面缺陷探测到高分子共混物的相分离分析,从钙钛矿太阳能电池的晶粒边界识别到二维材料的层间结构解析,全面展示了超分辨率成像如何帮助材料科学家在亚衍射尺度上揭示材料的微观结构与功能关系。此外,文章还讨论了样品制备、荧光标记策略、光谱分辨能力、多模态联用等关键技术要点,并对比了不同超分辨方法在空

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作者:史蒂文 分类:专业资料 价格:18星币 属性:248 页 大小:4.67MB 格式:PDF 时间:2024-12-12

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