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AFM Laser Texturing on Chitosan/Au Precursor nanocomposite Materials for Lithography Technique

机译:壳聚糖/金前驱体纳米复合材料的AFM激光制版技术

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Innovative conductive nanocomposite materials (NCM) could represent an important evolution for sensors and electronics applications. The design and processing of conductive elements as electrodes directly in a polymeric bulk material can be considered as an interesting improvement. By this way, the use of an Atomic Force Microscope (AFM) instrument with its accurate and precise motorized table and its implemented laser can be used for designing conductive elements in polymeric materials. In that case, 805 nm infrared (IR) laser light from the AFM instrument inducing surface texturing on Chitosan/Au Precursor (C/AuP) substrate is reported. Surface patterns consisting of designed structures were produced by laser texturing. By fine-tuning key parameters as the programmed movement of the motorized table supporting the substrate in accordance to the laser movement as well as the working distance, Au nanoparticles (AuNP) were locally generated. Micro patterns have been generated on the nanocomposite C/AuP surface. By the use of NCM able to generate in-situ nanoparticles (NP) under light stimulation, micro structures can be generated on the NCM surfaces, preserving their flexibility and easy processability. Control of conductive properties is desirable in a wide range of domains as medicine, health care and industry in particular, especially, if the material properties can be modified by a simple technique.
机译:创新的导电纳米复合材料(NCM)可以代表传感器和电子应用的重要发展。直接在聚合物块状材料中作为电极的导电元件的设计和处理可以被认为是有趣的改进。通过这种方式,可以使用原子力显微镜(AFM)仪器及其精确,精确的电动工作台和已实现的激光来设计聚合物材料中的导电元件。在这种情况下,据报道来自AFM仪器的805 nm红外(IR)激光在壳聚糖/金前体(C / AuP)基板上引起表面纹理化。由设计结构组成的表面图案通过激光纹理化产生。通过根据激光运动以及工作距离对作为支撑基板的电动工作台的程序化运动的关键参数进行微调,就可以局部生成金纳米粒子(AuNP)。在纳米复合材料C / AuP表面上已经产生了微图案。通过使用能够在光刺激下生成原位纳米粒子(NP)的NCM,可以在NCM表面上生成微结构,从而保留其灵活性和易加工性。特别是如果可以通过简单的技术来改变材料性能,则尤其在医学,保健和工业等广泛领域中,期望控制导电性能。

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