2 results match your criteria: "Institute of High Energy Physics Chinese Academy of Sciences Beijing China.[Affiliation]"

Article Synopsis
  • Understanding the chemical reactions in batteries is crucial for improving their preparation and performance, and advanced synchrotron radiation techniques have significantly aided this research over the past ten years.
  • Three key synchrotron radiation techniques—XAFS spectroscopy, SAXS, and XRD—are highlighted for their role in studying electrochemical reactions and improving battery characteristics.
  • The combination of in situ techniques allows for the analysis of both single and multiscale structures in batteries, presenting new research opportunities while also addressing current challenges in the field.
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Gliomas are histologically and genetically heterogeneous tumors. However, classical histopathological typing often ignores the high heterogeneity of tumors and thus cannot meet the requirements of precise pathological diagnosis. Here, proximity-anchored in situ spectral coding amplification (ProxISCA) is proposed for multiplexed imaging of RNA mutations, enabling visual typing of brain gliomas with different pathological grades at the single-cell and tissue levels.

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