macroelectrode array
大电极阵列
using macroelectrodes
使用大电极
macroelectrode design
大电极设计
fabricated macroelectrode
制备的大电极
macroelectrodes placed
放置的大电极
macroelectrode surface
大电极表面
macroelectrode pattern
大电极图案
macroelectrode stimulation
大电极刺激
macroelectrode configuration
大电极配置
modified macroelectrode
修饰的大电极
researchers designed a novel macroelectrode array for enhanced signal detection.
研究人员设计了一种新型大电极阵列以增强信号检测。
the macroelectrode's large surface area improves electrochemical measurements.
大电极的大表面积提高了电化学测量结果。
we fabricated a platinum macroelectrode for use in cyclic voltammetry.
我们制造了一个铂大电极用于循环伏安法测量。
the macroelectrode was modified with carbon nanotubes to increase conductivity.
大电极被碳纳米管修饰以提高导电性。
a three-dimensional macroelectrode structure offers increased sensitivity.
三维大电极结构提供更高的灵敏度。
the macroelectrode's performance was evaluated in a phosphate buffer solution.
在大致缓冲溶液中评估了大电极的性能。
we observed a significant increase in current using the macroelectrode.
我们使用大电极观察到电流有了显着增加。
the macroelectrode's design allows for efficient charge transfer.
大电极的设计允许高效的电荷转移。
electrolyte composition significantly impacts the macroelectrode's behavior.
电解质组成对大电极的行为有重大影响。
the macroelectrode was integrated into a microfluidic device for analysis.
大电极被整合到微流控设备中用于分析。
we used a glassy carbon macroelectrode for electrochemical impedance spectroscopy.
我们使用碳玻电极进行电化学阻抗谱分析。
macroelectrode array
大电极阵列
using macroelectrodes
使用大电极
macroelectrode design
大电极设计
fabricated macroelectrode
制备的大电极
macroelectrodes placed
放置的大电极
macroelectrode surface
大电极表面
macroelectrode pattern
大电极图案
macroelectrode stimulation
大电极刺激
macroelectrode configuration
大电极配置
modified macroelectrode
修饰的大电极
researchers designed a novel macroelectrode array for enhanced signal detection.
研究人员设计了一种新型大电极阵列以增强信号检测。
the macroelectrode's large surface area improves electrochemical measurements.
大电极的大表面积提高了电化学测量结果。
we fabricated a platinum macroelectrode for use in cyclic voltammetry.
我们制造了一个铂大电极用于循环伏安法测量。
the macroelectrode was modified with carbon nanotubes to increase conductivity.
大电极被碳纳米管修饰以提高导电性。
a three-dimensional macroelectrode structure offers increased sensitivity.
三维大电极结构提供更高的灵敏度。
the macroelectrode's performance was evaluated in a phosphate buffer solution.
在大致缓冲溶液中评估了大电极的性能。
we observed a significant increase in current using the macroelectrode.
我们使用大电极观察到电流有了显着增加。
the macroelectrode's design allows for efficient charge transfer.
大电极的设计允许高效的电荷转移。
electrolyte composition significantly impacts the macroelectrode's behavior.
电解质组成对大电极的行为有重大影响。
the macroelectrode was integrated into a microfluidic device for analysis.
大电极被整合到微流控设备中用于分析。
we used a glassy carbon macroelectrode for electrochemical impedance spectroscopy.
我们使用碳玻电极进行电化学阻抗谱分析。
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