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Seeing Beyond Electrochemical Characterization

顯微鏡分析技術提升電池領域的研究
Cross-section of lithium ion battery containing NCM cathode.

Microscopic investigation of unused pouch cell type lithium-ion battery

光學與電子顯微鏡聯用分析
Battery Cathode Image Under ZEISS Gemini SEM.

Learn About The Future Of Battery Research

Using Advanced Microscopy Workflows

鋰電池的發明,徹底改變了材料開發研究人員對於許多領域的電能儲存的應用,並使得全新技術和多領域的快速發展成為可能,從電動車、手機、平板、筆電以及儲能電網等等。

為了實現從石油燃料轉向綠色能源的未來,電池效能必須繼續提高。但若要突破目前的效能極限,將需要全新的架構與新的材料,以及對於兩者之間的交互關係有詳細研究。

經由本次的網路研討會,您將了解最先進的顯微鏡工作流程,如何利用最新開發的儀器和功能,使研究人員能夠觀看前所未有的清晰度和準確度,了解電池內部的微觀化學結構。

  

Lithium-Ion Battery Cathodes Under ZEISS Microscopes

  • Lithium ion battery cathode, EDS compositional mapping, main constituents of the different oxides.

    Courtesy of T. Bernthaler, Materials Research Institute Aalen, Germany.

  • Lithium ion battery cathode, no beam damage of sensitive binder material, at 500 V.

    Sample: courtesy of T. Bernthaler, Materials Research Institute Aalen, Germany.

  • Particles of cathode material of a lithium ion battery. Overlay of SEM image and Raman mapping, field of view 46.219 µm, SE detector, ZEISS FE-SEM.

Seeing Beyond Electrochemical Characterization

Learn More About The Advanced Microscopy Solutions Driving the Future of Battery Research

研討會重點

  1. 學習研究人員如何獲得前所未有的清晰與精確的電池微結構與化學特性
  2. 學習最新的顯微鏡技術如何運用在電池研究領域
  3. 研究人員的實務操作  

研討會適合哪些人士

  1. 想多了解未來電池技術的材料研究科學家
  2. 貴重儀器與核心設備的實驗室管理者與經營者
  3. 半導體、電子、工業產業的研究人員

Stephen graduated from Stanford University in 2009, finished his PostDocs at John Hopkins University In 2010 & Lawrence Berkeley National Laboratory In 2014. He now serves as the market solutions manager of energy materials at ZEISS Microscopy.

Your Presenter For Today: Stephen T. Kelly, Ph.D. Sector Manager - Energy Materials ZEISS Research Microscopy Solutions

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