Nano-particle size measurement device and method
A nanoparticle and measuring device technology, which is applied in the direction of measuring devices, particle size analysis, particle and sedimentation analysis, etc., can solve the problems of long time consumption, achieve the effect of short time consumption, simple data processing process, and reduced measurement time
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Embodiment 1
[0039] Depend on figure 2 As shown, the nanoparticle particle size measurement device is characterized in that it is composed of a laser source 1, a first lens 2, a sample pool 3, a second lens 4, an area array photosensitive device camera 5 and a computer 6, and the laser beam emitted by the laser source 1 The nanoparticles in the sample pool 3 are converged by the first lens 2, and the particles in the sample pool 3 undergoing Brownian motion under the incident laser irradiation generate dynamic light scattering signals, and the dynamic light scattering signals of these particles pass through the second lens 4 Convergence, the area array photosensitive device camera 5 arranged on the focal plane of the lens records at a time interval of Δτ, and obtains two images of dynamic light scattering signals of the movement of nanoparticles, which are sent to the computer 6, and the computer 6 calculates the two images by using a correlation algorithm The correlation coefficient of ...
Embodiment 2
[0041] When the nanoparticles are very small, such as below 10 nm, according to figure 1 The time interval between the two images is required to be very short, maybe only a few microseconds, or even less than 1 microsecond, and the time interval between the two images taken by the camera is difficult to achieve such a small time interval. This can be done by using 2 cameras to capture 2 identical images respectively, by image 3 As shown, the nanoparticle particle size measuring device is characterized in that a semi-transparent half-reflective prism 7 can also be placed behind the second lens 4, for the first exit surface B of the half-transparent half-reflective prism 7 and the second The first surface array photosensitive device 5 and the second surface array photosensitive device camera 8 are installed on the two exit faces C respectively. The laser beam emitted by the laser source 1 is first converged by the lens 2 and then enters the sample cell 3. The dynamic scatte...
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