the metallated compound exhibits enhanced conductivity compared to its unmodified form.
该金属化化合物表现出比其未修饰形式更高的导电性。
researchers developed a new metallated polymer with improved mechanical properties.
研究人员开发了一种具有改进机械性能的新型金属化聚合物。
the metallated surface shows remarkable catalytic activity under mild conditions.
该金属化表面在温和条件下表现出显著的催化活性。
a metallated catalyst was employed to accelerate the cross-coupling reaction.
使用金属化催化剂来加速交叉偶联反应。
the metallated reagent enables selective functionalization of aromatic rings.
该金属化试剂能够实现芳香环的选择性官能化。
spectroscopic analysis confirmed the formation of the metallated species.
光谱分析证实了金属化物种的形成。
the metallated complex was characterized by x-ray crystallography.
该金属化配合物通过x射线晶体学进行了表征。
the metallated film demonstrates excellent thermal stability.
该金属化薄膜表现出优异的热稳定性。
gold nanoparticles were metallated to enhance their optical properties.
金纳米颗粒被金属化以增强其光学性能。
the metallated electrode exhibits high electrochemical activity.
该金属化电极表现出高电化学活性。
the metallated interface displays enhanced electron transfer kinetics.
该金属化界面显示出增强的电子转移动力学。
the metallated material shows promise for applications in sensing devices.
该金属化材料在传感器件应用中显示出前景。
the metallated compound exhibits enhanced conductivity compared to its unmodified form.
该金属化化合物表现出比其未修饰形式更高的导电性。
researchers developed a new metallated polymer with improved mechanical properties.
研究人员开发了一种具有改进机械性能的新型金属化聚合物。
the metallated surface shows remarkable catalytic activity under mild conditions.
该金属化表面在温和条件下表现出显著的催化活性。
a metallated catalyst was employed to accelerate the cross-coupling reaction.
使用金属化催化剂来加速交叉偶联反应。
the metallated reagent enables selective functionalization of aromatic rings.
该金属化试剂能够实现芳香环的选择性官能化。
spectroscopic analysis confirmed the formation of the metallated species.
光谱分析证实了金属化物种的形成。
the metallated complex was characterized by x-ray crystallography.
该金属化配合物通过x射线晶体学进行了表征。
the metallated film demonstrates excellent thermal stability.
该金属化薄膜表现出优异的热稳定性。
gold nanoparticles were metallated to enhance their optical properties.
金纳米颗粒被金属化以增强其光学性能。
the metallated electrode exhibits high electrochemical activity.
该金属化电极表现出高电化学活性。
the metallated interface displays enhanced electron transfer kinetics.
该金属化界面显示出增强的电子转移动力学。
the metallated material shows promise for applications in sensing devices.
该金属化材料在传感器件应用中显示出前景。
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