non-thermally processed
非热处理
non-thermally activated
非热活化
non-thermally stable
非热稳定
non-thermally induced
非热诱导
non-thermally grown
非热生长
non-thermally reacting
非热反应
non-thermally annealed
非热退火
non-thermally deposited
非热沉积
non-thermally treated
非热形成
non-thermally formed
the plasma was generated non-thermally using a pulsed laser.
等离子体使用脉冲激光以非热方式产生。
non-thermally activated carbon showed enhanced adsorption properties.
非热活化碳表现出增强的吸附性能。
we investigated non-thermally produced nanoparticles for catalytic applications.
我们研究了用于催化应用的非热制备的纳米颗粒。
non-thermally processed silicon offers unique electronic characteristics.
非热处理的硅具有独特的电子特性。
the experiment focused on non-thermally dissociating molecules in the gas phase.
实验侧重于研究气相中非热解离的分子。
non-thermally driven reactions can occur at lower temperatures.
非热驱动的反应可以在较低的温度下发生。
the system employed non-thermally excited states for efficient energy transfer.
该系统采用非热激发态以实现高效的能量传递。
we observed non-thermally induced structural changes in the material.
我们观察到材料中非热诱导的结构变化。
non-thermally produced carbon nanotubes exhibited improved conductivity.
非热制备的碳纳米管表现出更高的导电性。
the study examined non-thermally generated radicals and their impact.
该研究考察了非热生成的自由基及其影响。
non-thermally processed films demonstrated superior optical properties.
非热处理的薄膜表现出优异的光学性能。
non-thermally processed
非热处理
non-thermally activated
非热活化
non-thermally stable
非热稳定
non-thermally induced
非热诱导
non-thermally grown
非热生长
non-thermally reacting
非热反应
non-thermally annealed
非热退火
non-thermally deposited
非热沉积
non-thermally treated
非热形成
non-thermally formed
the plasma was generated non-thermally using a pulsed laser.
等离子体使用脉冲激光以非热方式产生。
non-thermally activated carbon showed enhanced adsorption properties.
非热活化碳表现出增强的吸附性能。
we investigated non-thermally produced nanoparticles for catalytic applications.
我们研究了用于催化应用的非热制备的纳米颗粒。
non-thermally processed silicon offers unique electronic characteristics.
非热处理的硅具有独特的电子特性。
the experiment focused on non-thermally dissociating molecules in the gas phase.
实验侧重于研究气相中非热解离的分子。
non-thermally driven reactions can occur at lower temperatures.
非热驱动的反应可以在较低的温度下发生。
the system employed non-thermally excited states for efficient energy transfer.
该系统采用非热激发态以实现高效的能量传递。
we observed non-thermally induced structural changes in the material.
我们观察到材料中非热诱导的结构变化。
non-thermally produced carbon nanotubes exhibited improved conductivity.
非热制备的碳纳米管表现出更高的导电性。
the study examined non-thermally generated radicals and their impact.
该研究考察了非热生成的自由基及其影响。
non-thermally processed films demonstrated superior optical properties.
非热处理的薄膜表现出优异的光学性能。
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