Electrochromic display panels and electronic paper
By providing an uneven surface on the electrode of the electrochromic display panel and using an adhesive layer to fix the electrochromic pixel array, the problem of electric field non-uniformity is solved, the electric field uniformity and the color change effect are improved, while the production cost is reduced and the product stability is improved.
Patent Information
- Application Number
- CN201811292878.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2018-11-01
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2038-11-01
AI Technical Summary
Existing electrochromic display panels and electronic papers have large electric field non-uniformity, which affects the insulation strength of the dielectric and easily leads to corrosion reactions.
An uneven surface, such as a curved surface, a wavy surface or a sloped surface, is provided on the electrode of the electrochromic pixel array, and the electrochromic pixel array is fixed on the white reflective layer through an adhesive layer, thereby eliminating the packaging step of the liquid electrochromic material.
The uniformity of electric field distribution is achieved, the conductivity and color change effect are improved, the electrode collapse and leakage are avoided, the production cost is reduced and the product quality is improved.
Smart Images

Figure CN111123611B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to an electrochromic display panel and electronic paper, belonging to the field of display technology. Background Art
[0002] Electrochromism (EC) refers to the phenomenon in which a material's optical properties (reflectivity, transmittance, absorptivity, etc.) undergo a stable, reversible color change under the influence of an applied electric field, manifesting itself as a reversible change in color and transparency. Materials exhibiting electrochromic properties are called electrochromic materials, and devices made with electrochromic materials are called electrochromic devices. Electrochromic materials have been a hot topic in materials science research in recent years. Electrochromic materials are an important component of electrochromic devices and dominate their electrochromic performance. Based on the structural properties of the materials, electrochromic materials can be divided into anodic electrochromic materials (ion embedding coloration) and cathodic electrochromic materials (ion extraction coloration). Anodic and cathodic electrochromic materials can be assembled into complementary electrochromic devices, which can improve overall electrochromic properties, such as optical contrast, color change, and spectral absorption range. Currently, existing electrochromic display panels and electronic paper have the following problems: the applied electric field is highly non-uniform, which affects the dielectric strength; under the same conditions, the more non-uniform the electric field, the lower the dielectric strength, making it easier for other materials to come into contact with the dielectric layer, resulting in corrosion reactions. Summary of the Invention
[0003] The object of the present invention is to provide an electrochromic display panel and electronic paper, which have uniform electric field distribution between electrodes, have better display effects, and are simple in structure and easy to prepare.
[0004] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: an electrochromic display panel, comprising a first substrate, an electrochromic pixel array, and a second substrate arranged in sequence, wherein the electrochromic pixel array comprises a plurality of electrochromic units arranged in an array and independently controlled, and the electrochromic unit comprises a first electrode, an electrochromic pixel layer, and a second electrode arranged in sequence; the first electrode has a first opposing surface opposite to the second electrode, the second electrode has a second opposing surface opposite to the first electrode, and an uneven surface is provided on the first opposing surface and / or the second opposing surface.
[0005] Furthermore, the uneven surface is selected from any one of a curved surface, a wavy surface, a sloped surface or a wedge-shaped surface.
[0006] Furthermore, the uneven surface is selected from any combination of an arc surface, a wavy surface, a sloped surface, a wedge surface and a flat surface.
[0007] Furthermore, the electrochromic display panel further includes a white reflective layer, and the white reflective layer is disposed between the first substrate and the electrochromic pixel array.
[0008] Furthermore, the electrochromic display panel further includes an adhesive layer, which is disposed between the white reflective layer and the electrochromic pixel array, and the electrochromic pixel array is adhered to the white reflective layer through the adhesive layer.
[0009] Furthermore, the white reflective layer is formed of a viscous polymer resin and white particles, and the electrochromic pixel array is adhered to the white reflective layer.
[0010] Furthermore, the first electrode and / or the second electrode is a transparent electrode.
[0011] Furthermore, the electrochromic unit further includes an ion storage layer and a conductive layer stacked in sequence and arranged between the first electrode and the electrochromic pixel layer.
[0012] Furthermore, the ion storage layer and the conductive layer are solid-state structures.
[0013] Furthermore, the first electrode is embedded in the ion storage layer.
[0014] Furthermore, an electrochromic material is provided in the electrochromic pixel layer, and the electrochromic material is selected from any one or more of an organic electrochromic material, an inorganic electrochromic material or a composite electrochromic material.
[0015] Furthermore, the inorganic electrochromic material includes metal oxides, preferably tungsten trioxide and nickel oxide.
[0016] Furthermore, the organic electrochromic material is preferably any one or more of porogens, isophthalates, metal phthalocyanines, pyridine metal complexes, polyanilines, polypyrroles, and polythiophenes.
[0017] The present invention also provides an electronic paper comprising the above-mentioned electrochromic display panel.
[0018] Compared with the prior art, the beneficial effects of the present invention are as follows: the electrochromic display panel and electronic paper of the present invention arrange the electrochromic pixel array between the first substrate and the second substrate, and provide an uneven surface on the electrode in the electrochromic pixel array, so that the distribution of the electric field between the two electrodes is more uniform, thereby enhancing its conductivity effect and accelerating the color change effect of the color-changing layer. In addition, the structure is simple and easy to prepare.
[0019] In addition, the electrochromic display panel and electronic paper fix the electrochromic pixel array on the white reflective layer by bonding, eliminating the packaging step of the liquid electrochromic material and avoiding the collapse of the electrode located above the gap due to pressure difference and the easy leakage, thereby saving production costs and improving product quality.
[0020] The above description is only an overview of the technical solution of the present invention. In order to more clearly understand the technical means of the present invention and implement it according to the contents of the specification, the following is a detailed description of the preferred embodiments of the present invention with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is a top view of the electrochromic display panel shown in the present invention;
[0022] Figure 2a 、 Figure 2b and Figure 3 Schematic diagram of the structure of the electrochromic display panel shown in the present invention;
[0023] Figures 4 to 6 Schematic diagram of the structure of the uneven surface in the electrochromic display panel shown in the present invention;
[0024] Figure 7 Schematic diagram of the structure of the electrochromic display panel shown in the first embodiment of the present invention;
[0025] Figure 8 Schematic diagram of the structure of the electrochromic display panel shown in the second embodiment of the present invention;
[0026] Figure 9 Schematic diagram of the structure of the electrochromic display panel shown in the third embodiment of the present invention;
[0027] Figure 10 Schematic diagram of a portion of the structure of an electrochromic display panel shown in the fourth embodiment of the present invention. DETAILED DESCRIPTION
[0028] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following examples are used to illustrate the present invention but are not intended to limit the scope of the present invention.
[0029] It should be noted that the terms “upper”, “lower”, “left”, “right”, “inner” and “outer” in the present invention are only used to illustrate the present invention with reference to the drawings and are not intended to be limiting.
[0030] See Figure 1 and Figure 2aIn the vertical direction 10, the electrochromic display panel of the present invention includes a first substrate 1, an electrochromic pixel array layer 3 and a second substrate 4 arranged in sequence, the electrochromic pixel array layer 3 includes a plurality of array-arranged, independently controlled electrochromic units 30, the electrochromic unit 30 includes a first electrode 31, an electrochromic pixel layer 32 and a second electrode 33 arranged in sequence, wherein the first electrode 31 has a first opposing surface 311 opposite to the second electrode 33, the second electrode 33 has a second opposing surface 331 opposite to the first electrode 31, and an uneven surface is provided on the first opposing surface 311 and / or the second opposing surface 331.
[0031] Please combine Figure 2b The electrochromic display panel of the present invention further includes a reflective layer 2, which is disposed between a first substrate 1 and an electrochromic pixel array layer 3. In the vertical direction 10, the electrochromic display panel includes, from bottom to top, a first substrate 1, a reflective layer 2, an electrochromic pixel array layer 3, and a second substrate 4, which are stacked in sequence. The electrochromic pixel array layer 3 includes a plurality of independently controlled electrochromic units 30 arranged in an array. The electrochromic unit 30 includes a first electrode 31, an electrochromic pixel layer 32, and a second electrode 33, which are disposed in sequence. The first electrode 31 has a first opposing surface 311 opposing the second electrode 33, and the second electrode 33 has a second opposing surface 331 opposing the first electrode 31. The first opposing surface 311 and / or the second opposing surface 331 are provided with an uneven surface.
[0032] In the present invention, the electrochromic unit 30 is further provided with a solid ion storage layer 34 and a conductive layer 35, which are sequentially stacked between the first electrode 31 and the electrochromic pixel layer 32. The ion storage layer 34 is provided on the first electrode 31, the conductive layer 35 is provided on the ion storage layer 34, and the electrochromic pixel layer 32 is provided on the conductive layer 35.
[0033] In the present invention, the white reflective layer 2 is formed by a polymer resin and white particles. The polymer resin can be selected from any one of phenolic resin, epoxy resin, polyamide resin, polyurethane resin or acrylic resin, and the white particles can be selected from any one or more of aluminum oxide, zinc oxide, titanium oxide or silicon dioxide. Figure 3When the white reflective layer 2 is not sticky, an adhesive layer 21 can be provided between the white reflective layer 2 and the electrochromic pixel array 2 to adhere the electrochromic pixel array 3 to the white reflective layer 2, wherein the thickness of the white reflective layer 2 is preferably 1-40 μm, and the thickness of the adhesive layer 21 is preferably 1-40 μm. When the white reflective layer 2 is sticky, that is, a sticky polymer resin is selected, the electrochromic pixel array 3 can be directly adhered to the white reflective layer 2, wherein the thickness of the white reflective layer 2 is preferably 10-70 μm. This arrangement eliminates the need for encapsulating the liquid electrochromic material and avoids the phenomenon of the electrode located above the gap collapsing due to pressure difference and being prone to leakage. This not only ensures the stability and flatness of the electrochromic display panel with this structure, but also avoids or reduces the occurrence of Newton rings and other phenomena that are detrimental to the display effect.
[0034] In the present invention, the uneven surface is selected from any one of an arcuate surface, a wavy surface, a sloped surface or a wedge-shaped surface, preferably an arcuate surface and a wavy surface; or, the uneven surface is selected from any combination of an arcuate surface, a wavy surface, a sloped surface, a wedge-shaped surface and a plane surface.
[0035] Please combine Figures 4 to 6 (Explained with the view of the first electrode 31), because under normal circumstances, an electric field boundary effect will be generated at the boundary of the electrodes, in order to achieve the best effect of the electric field distribution between the first electrode 31 and the second electrode 33, it is explained here that the first relative surface 311 and / or the second relative surface 331 are provided with an arcuate surface, a wavy surface or a combination of a wavy surface and a plane line. The two relative surfaces can be arranged in a mirror image. Of course, the first relative surface 311 and the second relative surface 331 can also be provided with an arcuate surface, a wavy surface or a combination of a wavy surface and a plane line on only one side. In the present invention, the first relative surface 311 and / or the second relative surface 331 can also be provided with a sloped surface or a wedge-shaped surface, or other combinations of arcuate surfaces, wavy surfaces, sloped surfaces, wedge-shaped surfaces and plane shapes. However, considering the difficulty and cost of manufacturing technology, it is preferably provided with an arcuate surface or a wavy surface or a combination of a wavy surface and a plane line. Among them, as Figure 6 As shown, the wavy surface can be distributed more densely near the edge of the first electrode 31 or the second electrode 33 than near the center of the first electrode 31 or the second electrode 33 , thereby better reducing the influence of the electric field boundary effect.
[0036] The electrochromic pixel layer 32 of the present invention is provided with an electrochromic material, which is selected from any one of an organic electrochromic material, an inorganic electrochromic material or a composite electrochromic material, wherein the inorganic electrochromic material includes a metal oxide, preferably tungsten trioxide or nickel oxide; the organic electrochromic material is preferably any one or more of violaceous, isophthalic acid esters, metal phthalocyanines, pyridine metal complexes, polyanilines, polypyrroles, and polythiophenes, which can be prepared by sputtering, chemical vapor deposition, sol-gel or evaporation, or can be prepared by drying and solidifying a liquid electrochromic material. In the present invention, the first substrate 1 and the second substrate 4 are transparent substrates, and the first electrode 31 and the second electrode 33 are transparent electrodes, wherein the first electrode 31 and the second electrode 33 are linear structures or planar structures, preferably mesh structures. The first electrode 31 and the second electrode 33 of the present invention are preferably transparent electrodes, which are selected from any one of indium tin oxide (ITO), fluorine-doped tin oxide (FTO) or a conductive polymer. The first substrate 1 and the second substrate 4 can be transparent inorganic substrates, such as quartz or glass, or transparent plastic, or other commonly used transparent materials.
[0037] The present invention further provides an electronic paper (not shown), which includes the above-mentioned electrochromic display panel, and the other structures are all existing technologies and will not be described here.
[0038] The present invention will be further described in detail below with reference to specific embodiments.
[0039] Example 1
[0040] See Figure 7 The electrochromic display panel shown in this embodiment includes a first substrate 1-1, an electrochromic pixel array 1-2, and a second substrate 1-3, which are sequentially arranged from bottom to top. The electrochromic pixel array layer 1-2 includes a plurality of independently controlled electrochromic units 1-20 arranged in an array. The electrochromic unit 1-20 includes a first transparent electrode 1-21, an ion storage layer 1-22, a conductive layer 1-23, an electrochromic pixel layer 1-24, and a second transparent electrode 1-25, which are sequentially arranged from bottom to top. The first transparent electrode 1-21 has a first opposing surface 1-211 that is opposite to the second transparent electrode 1-25, and the second transparent electrode 1-25 has a second opposing surface 1-251 that is opposite to the first transparent electrode 1-21. To make the electric field between the first transparent electrode 1-21 and the second transparent electrode 1-25 more uniform, curved surfaces are provided on the first opposing surface 1-211 and the second opposing surface 1-251 in this embodiment.
[0041] Example 2
[0042] See Figure 8The electrochromic display panel shown in this embodiment includes a first substrate 2-1, an electrochromic pixel array 2-2, and a second substrate 2-3, which are sequentially arranged from bottom to top. The electrochromic pixel array layer 2-2 includes a plurality of independently controlled electrochromic units 2-20 arranged in an array. The electrochromic units 2-20 include a first transparent electrode 2-21, an ion storage layer 2-22, a conductive layer 2-23, an electrochromic pixel layer 2-24, and a second transparent electrode 2-25, which are sequentially arranged from bottom to top. The first transparent electrode 2-21 has a first opposing surface 2-211 that opposes the second transparent electrode 2-25, and the second transparent electrode 2-25 has a second opposing surface 2-251 that opposes the first transparent electrode 2-21. To achieve a more uniform electric field distribution between the first transparent electrode 2-21 and the second transparent electrode 2-25, this embodiment further provides wavy surfaces on the first transparent electrode 2-21 and the second transparent electrode 2-25, thereby avoiding electric field boundary effects and achieving a more uniform electric field distribution.
[0043] Example 3
[0044] See Figure 9 The structure of the electrochromic display panel of this embodiment is basically the same as that of the second embodiment, with the difference being that the first opposing surface 3-211 and the second opposing surface 3-251 of this embodiment are arranged using a combination of a wavy surface and a flat surface, and are arranged more closely near the edges of the first transparent electrode 3-21 and the second transparent electrode 3-25 than near the center of the first transparent electrode 3-21 or the second transparent electrode 3-25, thereby avoiding the generation of an electric field boundary effect and making the electric field distribution more uniform.
[0045] Example 4
[0046] See Figure 10 The structure of the electrochromic display panel of this embodiment is basically the same as that of the second embodiment, with the difference being that a white reflective layer 4-4 and an adhesive layer 4-41 are provided between the first substrate 4-1 and the electrochromic pixel array 4-2. In this embodiment, the white reflective layer 4-4 is composed of a phenolic resin and dispersed titanium oxide and is provided on the first substrate 4-1 by spin coating. Furthermore, the thickness of the white reflective layer 4-4 is 20 μm, and the thickness of the adhesive layer 4-41 is 15 μm. Compared to using a sticky white reflective layer to adhere the electrochromic pixel array 4-2, the provision of the adhesive layer 4-41 can achieve a better adhesion effect, allowing the electrochromic pixel array 4-2 to be more stably fixed to the white reflective layer 4-4.
[0047] In summary, the electrochromic display panel and electronic paper of the present invention dispose an electrochromic pixel array between a first substrate and a second substrate. The electrodes in the electrochromic pixel array are provided with uneven surfaces, which makes the electric field between the two electrodes more uniform, thereby enhancing the conductivity and accelerating the color change of the color-changing layer. Furthermore, the electrochromic display panel and electronic paper adhere the electrochromic pixel array to the white reflective layer by adhesive bonding, eliminating the need for encapsulating the liquid electrochromic material and preventing the electrodes located above the gap from collapsing due to pressure differentials and potentially leaking liquid. This reduces production costs and improves product quality.
[0048] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0049] The above-described embodiments merely illustrate several implementations of the present invention, and while their descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the patent for this invention shall be determined by the appended claims.
Claims
1. An electrochromic display panel, characterized in that: The invention comprises a first substrate, an electrochromic pixel array, and a second substrate arranged in sequence, wherein the electrochromic pixel array comprises a plurality of electrochromic units arranged in an array and independently controlled, wherein the electrochromic units comprise a first electrode, an electrochromic pixel layer, and a second electrode arranged in sequence; the first electrode has a first opposing surface opposing the second electrode, the second electrode has a second opposing surface opposing the first electrode, and an uneven surface is provided on the first opposing surface and / or the second opposing surface; The electrochromic unit further includes an ion storage layer and a conductive layer stacked in sequence and arranged between the first electrode and the electrochromic pixel layer; The uneven surface includes a wavy surface, and the density at the edge of the uneven surface is greater than the distribution density at the center of the electrode.
2. The electrochromic display panel according to claim 1, wherein: The uneven surface also includes one or more of an arc-shaped surface, a wavy surface, a sloped surface and a wedge-shaped surface.
3. The electrochromic display panel according to claim 1, wherein: The electrochromic display panel further includes a white reflective layer, which is disposed between the first substrate and the electrochromic pixel array.
4. The electrochromic display panel according to claim 3, wherein: The electrochromic display panel further includes an adhesive layer, which is disposed between the white reflective layer and the electrochromic pixel array. The electrochromic pixel array adheres to the white reflective layer via the adhesive layer.
5. The electrochromic display panel according to claim 3, wherein: The white reflective layer is formed of a viscous polymer resin and white particles, and the electrochromic pixel array is adhered to the white reflective layer.
6. The electrochromic display panel according to claim 1, wherein: The first electrode and / or the second electrode is a transparent electrode.
7. The electrochromic display panel according to claim 6, wherein: The ion storage layer and the conductive layer are solid structures.
8. The electrochromic display panel according to claim 6, wherein: The first electrode is embedded in the ion storage layer.
9. The electrochromic display panel according to claim 1, wherein: The electrochromic pixel layer is provided with an electrochromic material, and the electrochromic material is selected from any one or more of an organic electrochromic material, an inorganic electrochromic material or a composite electrochromic material.
10. The electrochromic display panel according to claim 9, wherein: The inorganic electrochromic material includes a metal oxide, and the metal oxide includes tungsten trioxide or nickel oxide.
11. The electrochromic display panel according to claim 9, wherein: The organic electrochromic material is any one or more of porogens, isophthalates, metal phthalocyanines, pyridine metal complexes, polyanilines, polypyrroles, and polythiophenes.
12. An electronic paper, characterized in that: The invention comprises the electrochromic display panel according to any one of claims 1 to 11.
Citation Information
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