Events
  • Dr. Igor Larrosa from University of London Visits LICP

    09-09-2013

    Dr. Igor Larrosa from School of Biological and Chemical Sciences, Queen Mary, University of London visited Lanzhou Institute of Chemical Physics of the Chinese Academy of Sciences (CAS) and delivered a lecture entitled Au, Ag, and Pd in C-H activation: reactivity and selectivity control on September 9.

  • Professor ZHAO Dongyuan from Fudan University Visits LICP

    04-09-2013

    ZHAO Dongyuan, professor at Fudan University and member of the Chinese Academy of Sciences (CAS) visited Lanzhou Institute of Chemical Physics of CAS on September 2. During his visit, he delivered a lecture entitled Synthesis and Application of ordered mesoporous materials.   Since their discovery, silica-based mesoporous molecular sieves hav...

  • LICP develops a versatile 3D printing technique

    24-10-2013

    3D printing is a potentially powerful manufacturing tool. However, numerous printing technologies have had to be developed as several 3D printers with single-purpose inks are often needed for different uses, which results in increasing fabrication costs.

  • LICP develops a novel approach to grow polymer brushes using small volumes (μL) of solution

    04-09-2013

    Among different surface-polymerization strategies, surface-initiated atom-transfer radical polymerization (SI-ATRP) is one of the most versatile and widely used routes to prepare well-defined polymer brushes. However, there are still many shortcomings concerning this method, namely the use of inert atmosphere to protect the reactions, waste of l...

  • Researchers achieve the integration of structure and lubricating function in ceramic

    28-08-2013

    Ceramic lubricating materials are low in thickness, thermally stable and have ideal structure. They can improve the anti-erosion, anti-frication, high-temperature resistant and anti-oxidative properties of lubricating materials. However, the application of ceramic materials in high temperature lubrication has been limited due to their brittlenes...

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