A nanocomposite system and a method for researching nanomaterials, technical realization elements
Sep 16, 2022
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Technical implementation elements:
5. The technical problem to be solved by the present invention is: to provide a nanometer integrated system and a method for researching nanomaterials, which can simultaneously perform nanofabrication, physical property regulation and in-situ physical property characterization on nanomaterials, so as to improve the effect of nanometer integrated system on fundamental physics. The research ability of law and the processing ability of micro-nano devices.
6. in order to solve the above-mentioned technical problem, a kind of technical scheme that the present invention adopts is:
7. A nano-integrated system, comprising a sample stage, a probe assembly, an optical assembly, an electrical assembly, an environmental control assembly and a central controller;
8. The probe assembly, optical assembly, electrical assembly and environmental control assembly are all arranged on the sample stage;
9. The probe assembly, optical assembly, electrical assembly and environmental control assembly are respectively connected with the central controller.
10. In order to solve the above-mentioned technical problems, another technical scheme adopted by the present invention is:
11. A method for researching nanomaterials by utilizing the above-mentioned nanocomposite system, comprising the steps of:
12. When performing nanofabrication on the nanomaterial, the central controller controls the probe assembly and the optical assembly to perform simultaneous processing, splicing processing or closed-loop feedback processing on the nanomaterial.
13. The beneficial effects of the present invention are: using the micro-nano structures, optical properties, electrical properties widely existing in nanoscience
The concept of interdependence, interaction, and mutual influence between characteristics and environments, combining probe components, optical components, electrical components, and environmental control components on the same sample stage, and realizing the processing of nanomaterials by the central control system, The in-situ regulation of physical properties and the in-situ characterization of physical properties realize the combination of the three functions of processing, regulation and characterization. After each component is used together, nanomaterials can be processed optically, electrically, mechanically, thermally, etc., the characterization of optical properties in different environments, the characterization of electrical properties in different environments, and the regulation of physical and chemical properties in different environments. The effect of simple superposition between components is improved, the functional diversity of the nano-integrated system is improved, and the research capability of the nano-integrated system on fundamental physical laws and the processing capability of micro-nano devices are improved.

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