A kind of more neutral electrochromic glass and its preparation method and application
An electrochromic glass, neutral technology, applied in nonlinear optics, instruments, optics, etc., can solve the problems of affecting the observation of the external natural environment, single color, etc., achieve a clear boundary between coloring and fading, and improve the color and transparency of transmission high effect
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[0066] The present invention also provides a method for preparing an electrochromic glass with a more neutral color tone, which mainly includes: using the base glass layer as a substrate, sequentially plating a first conductive layer, a solar spectrum adjustment functional layer, a cation generating layer, an auxiliary Regulating functional layer, second conductive layer and outer protective layer.
[0067] In some embodiments, in the preparation method of the electrochromic glass with a more neutral color tone, the substrate glass layer used needs to be cleaned and dried before coating.
[0068] In some embodiments, the operation of plating the first conductive layer in the preparation method of the more neutral electrochromic glass includes: raising the temperature of the substrate to 280-550 degrees Celsius, using corresponding materials, In an atmosphere with a flow rate of 300sccm to 2000sccm and an oxygen flow rate of 5sccm to 2000sccm, the power is 10KW to 60KW, and the...
Embodiment 1
[0086] Embodiment 1 Electrochromic glass with more neutral color tone of the present invention and its preparation method
[0087] The more neutral electrochromic glass of this embodiment includes:
[0088] Substrate glass layer: 0.1mm thick fresh transparent float glass;
[0089] The first transparent conductive layer: a 1nm thick indium tin oxide (ITO) film layer;
[0090] Solar spectrum adjustment function layer: Si x Nb y N z and Zn m Nb n o k A film layer with a thickness of 0.1 microns combined at a mass ratio of 1:1; wherein the subscript content: x is 40%, y is 20%, z is 40%; m is 20%, n is 20%, and k is 60%;
[0091] Cation generation layer: 300nm thick lithium ion metal film layer;
[0092] Auxiliary adjustment function layer: Ni x1 Nb y1 N z1 and Ti m1 Nb n1 o k1 A film layer with a thickness of 500nm combined according to a mass ratio of 1:2; wherein the subscript content: x1 is 30%, y1 is 30%, z1 is 40%; m1 is 40%, n1 is 30%, and k1 is 30% %;
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Embodiment 2
[0105] Example 2 Electrochromic glass with more neutral color tone of the present invention and its preparation method
[0106] The more neutral electrochromic glass of this embodiment includes:
[0107] Substrate glass layer: 0.1mm thick fresh transparent float glass;
[0108] The first transparent conductive layer: a 1nm thick indium tin oxide (ITO) film layer;
[0109] Solar spectrum adjustment function layer: Si x Nb y N z and Zn m Nb n o k A film layer with a thickness of 0.1 microns combined at a mass ratio of 1:1; wherein the subscript content: x is 40%, y is 20%, z is 40%; m is 20%, n is 20%, and k is 60%;
[0110] Cation generation layer: 300nm thick lithium ion metal film layer;
[0111] Auxiliary adjustment function layer: Ni x1 Nb y1 N z1 and Ti m1 Nb n1 o k1 A film layer with a thickness of 500nm combined according to a mass ratio of 1:2; wherein the subscript content: x1 is 30%, y1 is 30%, z1 is 40%; m1 is 40%, n1 is 30%, and k1 is 30% %;
[0112...
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