首页> 外国专利> SCANNING PROBE OF ATOMIC-FORCE MICROSCOPE WITH SEPARATED TELEVISION CONTROLLED NANOCOMPOSITE RADIATING ELEMENT DOPED BY QUANTUM POINTS AND MAGNETIC NANOPARTICLES OF CORE-SHELL STRUCTURE

SCANNING PROBE OF ATOMIC-FORCE MICROSCOPE WITH SEPARATED TELEVISION CONTROLLED NANOCOMPOSITE RADIATING ELEMENT DOPED BY QUANTUM POINTS AND MAGNETIC NANOPARTICLES OF CORE-SHELL STRUCTURE

机译:量子点和核壳结构的磁性纳米粒子掺杂的分离电视控制的纳米复合放射状元素对原子力显微镜的扫描

摘要

FIELD: measuring equipment.;SUBSTANCE: invention relates to a measuring technique and can be used in atomic force microscopy for diagnosing nanoscale structures. Essence of the invention lies in the fact that the magnetically transparent cantilever is connected to an electrically conductive magnetically transparent probe needle, the top of which is movably connected by means of two nested carbon nanotubes with a magnetically transparent detachable and autonomously functioning glass sphere with through nanometer pores filled with quantum dots and magnetic nanoparticles with the same orientation of the core-shell structure poles. Remote control of the excitation of the quantum dots of the core-shell structure and their autonomous movement along the Z coordinate when scanning the side walls of the nanochambers of the object being diagnosed is carried out with the help of two external counter-directed synchronized electromagnetic fields.;EFFECT: technical result is the ability to scan nanochambers at the Z coordinate, the depth of which is greater than the length of the probe needle, with simultaneous combination of point thermal and electromagnetic with optical wavelength effects on the walls of nanochamber with simultaneous measurement of electrical characteristics of this stimulating effect at one point on the surface of the object of diagnosis with the coordinates X, Y, without affecting the neighboring areas.;1 cl, 3 dwg
机译:技术领域本发明涉及一种测量技术,并且可以在原子力显微镜中用于诊断纳米级结构。本发明的实质在于以下事实:将磁性透明的悬臂连接至导电的磁性透明探针,该探针的顶部通过两个嵌套的碳纳米管可移动地连接,该纳米碳管具有磁性透明的可分离且自发起作用的玻璃球,其中纳米孔中充满了量子点和磁性纳米粒子,它们具有与核-壳结构极相同的取向。借助两个外部反向定向的同步电磁装置,可以在扫描被诊断对象的纳米腔室侧壁时远程控制核-壳结构量子点的激发及其沿Z坐标的自主运动。效果:技术成果是能够在Z坐标上扫描纳米腔室,该深度的深度大于探针的长度,同时将点热和电磁波与光学波长效应同时结合在纳米腔室壁上在不影响相邻区域的情况下,同时以X,Y坐标同时测量诊断对象表面上这一点的刺激效果的电特性.1 cl,3 dwg

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