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首页> 外文期刊>Science Advances >Microsecond photocapacitance transients observed using a charged microcantilever as a gated mechanical integrator
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Microsecond photocapacitance transients observed using a charged microcantilever as a gated mechanical integrator

机译:使用带电的微悬臂梁作为门控机械积分器观察到的微秒光电容瞬变

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How light is converted to electricity in blends of organic donor and acceptor molecules is an unsettled question, partly because the spatial heterogeneity present in these blends makes them challenging to characterize. Although scanned-probe measurements have provided crucially important microscopic insights into charge generation and transport in these blends, achieving the subnanosecond time resolution needed to directly observe the fate of photogenerated charges has proven difficult. We use a charged microcantilever as a gated mechanical integrator to record photocapacitance indirectly by measuring the accumulated change in cantilever phase as a function of the time delay between precisely synchronized voltage and light pulses. In contrast with previous time-resolved scanned-probe photocapacitance measurements, the time resolution of this method is set by the rise and fall time of the voltage and light pulses and not by the inverse detection bandwidth. We demonstrate in an organic donor-acceptor blend the ability of this indirect, “phase-kick” technique to record multiexponential photocapacitance transients on time scales ranging from 40 μs to 10 ms. The technique’s ability to measure subcycle, nanosecond charge dynamics is demonstrated by measuring the tens of nanosecond sample electrical charging time.
机译:在有机供体和受体分子的混合物中如何将光转换为电是一个尚未解决的问题,部分原因是这些混合物中存在的空间异质性使其难以表征。尽管扫描探针的测量已提供了至关重要的微观见解,以了解这些混合物中电荷的产生和传输,但要实现直接观察光生电荷命运所需的亚纳秒时间分辨率已被证明是困难的。我们使用带电的微悬臂梁作为门控机械积分器,通过测量悬臂相的累积变化(作为精确同步电压和光脉冲之间的时间延迟的函数)来间接记录光电容。与以前的时间分辨扫描探针光电容测量相反,此方法的时间分辨率是由电压和光脉冲的上升和下降时间而不是由反向检测带宽来确定的。我们在有机供体-受体混合物中证明了这种间接的“相角踢”技术能够在40 µs至10 ms的时间范围内记录多指数光电容瞬变的能力。通过测量数十纳秒样品的充电时间,可以证明该技术具有测量亚周期纳秒动态变化的能力。

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