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Electronic transport in CdSe nanoplatelet based polymer fibres

机译:基于CDSE纳米片的聚合物纤维的电子传输

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One of the most significant objectives in the field of nanotechnology is the transfer of specific properties of smaller nanoparticle building blocks into larger units. In this way, nanoscopic properties can be linked to the macroscopic addressability of larger systems. Such systems might find applications in fields like photoelectrochemical sensing or solar energy harvesting. Our work reports on the novel synthesis of hybrid semiconductor/polymer fibres, which are based on stacks of 4 monolayer (ML) thick CdSe nanoplatelets (NPLs) encapsulated into a polymer shell. The polymer encapsulation not only enables the water transfer of the NPL stacks but also allows the preparation of photoelectrodes by linking the fibres to surface modified indium tin oxide (ITO) glass slides. By applying electrochemical techniques like intensity modulated photocurrent spectroscopy (IMPS), it was possible to prove the motion of charge carriers inside the nanoplatelet stacks and by this the electronic addressibility of them.
机译:纳米技术领域最重要的目标之一是将较小纳米粒子建筑块的特定性质转移到较大的单元中。以这种方式,纳米镜的性质可以与较大系统的宏观寻址性联系起来。这些系统可能在像光电化学传感或太阳能收集等领域中找到应用。我们的工作报告了杂化半导体/聚合物纤维的新颖合成,其基于包封在聚合物壳中的4单层(ML)厚的CDSE纳米片(NPLS)的堆叠。聚合物封装不仅能够通过将纤维连接到表面改性铟锡(ITO)玻璃载玻片来实现NPL叠层的水转印,而且还允许光电极的制备。通过施加电化学技术,如强度调制的光电流光谱(Imms),可以证明纳米片堆叠内部的电荷载体的运动和它们的电子寻址。

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