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Negative Differential Resistance in Metallic and Semiconducting Clusters

机译:金属和半导体簇中的负微分电阻

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摘要

One of the main goals of the multidisciplinary field of nanotechnology is to scale down electronic devices to the range of nanometers (nm) from the present feature size of approx 50 nm in standard semiconductor integrated circuits.This challenge requires the use of small molecules or clusters to perform as electronic devices.Because a multitude of small organic molecules and clusters can be tailored to precise configurations emulating feature sizes equivalent to fractions of angstroms (10~(-10) m),they are potential electronic device candidates.Although it is not yet well established how these small systems can be addressed,they could be used as electronic devices if they present switching behavior.However,switching alone may not be enough;more complex nonlinear current-voltage (I-V) characteristics such as negative differential resistance (NDR) already reported in several experiments may be needed to compensate for the lack of direct addressing.It is demonstrated theoretically in this work that switching and NDR can be achieved because of electronic and electromechanical effects yielding cluster formation;therefore,electronic devices can be made not only from organic molecules but also from small clusters.
机译:纳米技术多学科领域的主要目标之一是将电子设备的尺寸从标准半导体集成电路中目前的大约50 nm的特征尺寸缩小到纳米(nm)范围。这一挑战要求使用小分子或簇由于可以将许多小的有机分子和簇定制为精确的结构,模拟相当于埃几分之几(10〜(-10)m)的特征尺寸,因此它们是潜在的电子设备候选对象。这些小系统目前尚无定论,但如果它们表现出开关行为,则可以用作电子设备。但是,仅开关可能还不够;更复杂的非线性电流-电压(IV)特性,例如负差分电阻(NDR) )可能需要在几个实验中已经报道过的方法来弥补直接寻址的不足。由于电子和机电效应会导致簇的形成,因此可以实现开关和NDR;因此,电子器件不仅可以由有机分子制成,还可以由小簇制成。

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