Receptor for nano-mechanical sensor made of low hygroscopic material and nano-mechanical sensor using the same as receptor

文档序号:1631582 发布日期:2020-01-14 浏览:8次 中文

阅读说明:本技术 由低吸湿性材料构成的纳米机械传感器用受体及将其作为受体来使用的纳米机械传感器 (Receptor for nano-mechanical sensor made of low hygroscopic material and nano-mechanical sensor using the same as receptor ) 是由 柴弘太 南皓辅 吉川元起 于 2018-05-21 设计创作,主要内容包括:本发明提供一种纳米机械传感器,其能够抑制样品中的水给测定带来的不利影响。本发明的一实施方式中,作为纳米机械传感器的受体材料使用了聚砜、聚己内酯、聚偏二氟乙烯、聚4-甲基苯乙烯等低吸湿性材料。由此,能够抑制由样品中的水使受体层饱和,或能够抑制由基于样品中大量含有的水的输出信号来掩蔽基于微量成分的输出信号等不利影响。(The present invention provides a nanomechanical sensor capable of suppressing adverse effects of water in a sample on measurement. In one embodiment of the present invention, a low hygroscopic material such as polysulfone, polycaprolactone, polyvinylidene fluoride, or poly-4-methylstyrene is used as a receptor material of the nanomechanical sensor. This can suppress saturation of the receptor layer by water in the sample, or can suppress masking of an adverse effect such as an output signal based on a trace component by an output signal based on water contained in a large amount in the sample.)

1. A receptor for a nanomechanical sensor, wherein,

which is constructed of a low moisture absorption material.

2. The receptor for a nanomechanical sensor of claim 1, wherein,

the low hygroscopic material is selected from the group consisting of a carbon material, a fluoride, an aromatic compound and a compound having a hydrocarbon chain.

3. The receptor for nanomechanical sensor of claim 1 or 2, wherein,

the low moisture absorption material is selected from the group consisting of polysulfone, polycaprolactone, polyvinylidene fluoride, and poly-4-methylstyrene.

4. The receptor for nanomechanical sensor of any of claims 1 to 3, wherein,

it further comprises a binder.

5. A nano-mechanical sensor, wherein,

a low hygroscopic receptor layer comprising the receptor according to any one of claims 1 to 4 on the surface of a sensor body.

6. The nanomechanical sensor of claim 5,

there is a further membrane between the low hygroscopic receptor layer and the sensor body.

7. The nanomechanical sensor of claim 6,

the other membranes are self-organized membranes.

8. The nanomechanical sensor of any of claims 5 to 7,

having a plurality of said sensor bodies.

9. The nanomechanical sensor of claim 8,

at least one of the plurality of sensor bodies has the low moisture absorption receptor layer.

10. The nanomechanical sensor of any of claims 5 to 9,

the sensor body is a film type surface stress sensor.

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