The present invention is a Nonprovisional Application under 35 USC 111(a), claiming priority to Serial No. CN 202010982778.2, filed on 17 Sep. 2020, the entirety of which is incorporated herein by reference.
The present disclosure belongs to the technical field of silver nanowire harness networked arrangement, and particularly, relates to a method for printing a silver nanowire harness network structure by using a glue dispenser.
At present, silver nanowires have very important applications in the field of transparent conductive films due to excellent transparency brought by a size effect and high conductivity brought by high free electron density. However, it is very difficult to arrange and operate materials in nanoscale, so the nanowire network arrangement technology has become a research hotspot in nano manufacturing technology. At present, silver nanowires are directly prepared into films in most of the methods using silver nanowires, such as a vacuum filtration method, a drop coating method, a spin coating method, a spraying method, a roll to roll coating method. Most of the nanowires in the silver nanowire films prepared by these methods are disordered, and there will be great contact resistance among these disordered nanowires, which will greatly affect the conductivity of the arranged nanowire films, thereby making the advantages of the original silver nanowires with high conductivity become negligible. Therefore, there are special equipment, such as ink-jet printers and 3D printers, for arranging the nanowires, which are easy to operate and do not need to be positioned repeatedly. The conductivity of the arranged nanowires is good. The conductivity of the nanowires are better than that of the films formed directly no matter they are directly used or connected at a high temperature after being printed.
Although the current ink-jet printers and 3D printers are very mature, their prices are relatively high.
The objective of the present disclosure is to provide a method for printing a silver nanowire harness network structure by using a glue dispenser. The method does not need accurate positioning, and has a simple process and high printing efficiency.
The present disclosure is implemented by adopting the following technical solutions:
A method for printing a silver nanowire harness network structure by using a glue dispenser includes the following steps:
1) constructing an induced PET substrate: modifying a PET substrate by a surface hydrophobic treatment method, so as to enhance the binding force between nanowires and the PET substrate and further enhance the conductivity of a nanowire network structure;
2) constructing a glue dispensing printing system and printing the nanowire harness network structure: fixing the glue dispenser to a worktable, fixing a printed PET substrate to a ufab three-dimensional moving platform for controlling the movement of the PET substrate, adjusting the moving speed of the ufab three-dimensional moving platform and the distance between a needle head and the PET substrate by a computer, controlling the glue dispensing air pressure and the glue dispensing amount of silver nanowire glue by the glue dispenser, and finally, obtaining the nanowire harness network structure on the PET substrate.
Further improvement of the present disclosure is that preparation steps of the silver nanowire glue are as follows:
mixing a silver nanowire solution with the Ag concentration of 10 mg/ml and polyvinylpyrrolidone powder according to the mass ratio of 1:20 to 30, and stirring uniformly to obtain the silver nanowire glue.
Further improvement of the present disclosure is that the purity of the silver nanowire solution is greater than 99 wt %, and the solvent thereof is water, ethanol or isopropyl alcohol.
Further improvement of the present disclosure is that a magneton stirrer is used for mixing, the stirring speed is 500 to 510 r/min, and the stirring time is 30 to 35 minutes.
Further improvement of the present disclosure is that a specific process of constructing the induced PET substrate in step 1) is as follows: performing surface hydrophobic treatment on the PET substrate, and standing for 30 to 35 minutes after the surface hydrophobic treatment is performed for 20 to 25 seconds to complete the treatment of the PET substrate.
Further improvement of the present disclosure is that a specific implementation method of step 2) is as follows:
The present disclosure at least has the following beneficial technical effects:
The present disclosure prepares the nanowire harness network structure by using the glue dispenser, which saves the cost of directly coupling a nanowire harness network structure printing device and the ufab three-dimensional moving platform. A silver nanowire harness network structure with a well retained structure is prepared through reasonable parameter setting and preparation of the silver nanowire glue. The present disclosure is simple in operation, low in preparation cost, and can be used on a large scale.
The present disclosure is further described below with reference to the accompanying drawings and embodiments.
A method for printing a silver nanowire harness network structure by using a glue dispenser includes the following steps:
Specific steps for preparing the silver nanowire solution with appropriate viscosity in step 1) are as follows: adding 5 to 10 mL solution with the Ag contraction of 10 mg/mL into a beaker, where the purity is greater than 99 wt %, and the solvent is water, ethanol, or isopropanol. In order to enhance the viscosity of the solution to prepare printing glue, 1.5 to 3 g PVP powder is weighed by a weighing device, and then a magneton stirrer is used for mixing, where the stirring speed is 500 to 520 r/min, and the stirring time is 30 to 35 minutes.
A specific process of constructing the induced PET substrate of step 2) is that: the untreated PET substrate has a smooth surface and has poor binding force with glue, so it is necessary to perform surface hydrophobic treatment on the PET substrate. After the surface hydrophobic treatment is performed for 20 to 25 seconds, the PET substrate is subjected to standing for 30 to 35 minutes to complete the treatment of the PET substrate.
A specific process of constructing a glue dispensing printing system and printing the nanowire harness network structure of step 3) is as follows:
A method for printing a silver nanowire harness network structure by using a glue dispenser provided by the present disclosure includes the following steps that:
The embodiment of the present disclosure has the beneficial effects that: referring to
The step 3) of Embodiment 1 is adjusted as follows: the moving speed of the ufab three-dimensional moving platform is 25 mm/s, and the printing distance is 1 mm, the glue dispensing air pressure is 25 kpa and the sequence and parameters of other steps are unchanged, so that a silver nanowire harness network structure with thinner wire shape can be obtained, referring to
The step 3) of Embodiment 1 is adjusted as follows: the moving speed of the ufab three-dimensional moving platform is 22 mm/s, and the printing distance is 1 mm, the glue dispensing air pressure is 20 kpa, and the sequence and parameters of other steps are unchanged, so that a silver nanowire harness network structure with the thinnest wire shape can be obtained, referring to
The step 3) of Embodiment 1 is adjusted as follows: the moving speed of the ufab three-dimensional moving platform is 20 mm/s, and the printing distance is 1 mm, the glue dispensing air pressure is 20 kpa and the sequence and parameters of other steps are unchanged, so that a silver nanowire harness network structure with the thinnest wire shape can be obtained, referring to
The step 3) of Embodiment 1 is adjusted as follows: the moving speed of the ufab three-dimensional moving platform is 20 mm/s, and the printing distance is 0.5 mm, the glue dispensing air pressure is 20 kpa, and the sequence and parameters of other steps are unchanged, so that a silver nanowire harness network structure with the thinnest wire shape can be obtained, referring to
Number | Date | Country | Kind |
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202010982778.2 | Sep 2020 | CN | national |
Number | Name | Date | Kind |
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9345123 | Yang | May 2016 | B2 |
20160029475 | Hwang | Jan 2016 | A1 |
Number | Date | Country |
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103700446 | Apr 2014 | CN |
102466098 | Jul 2022 | KR |
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R. Morent et al., “Effects of operating parameters on plasma-induced-PET surface treatment,” Nucl. Instr. and Meth. in Phys. Res. B 266 (2008) 3081-3085. (Year: 2008). |
Cui et al., “Electrohydrodynamic printing of silver nanowires for flexible and stretchable electronics,” Nanoscale, 2018, 10, 6806-6811. (Year: 2018). |
Harness. Oxford English Dictionary. Retrieved from https://www.oed.com/dictionary/harness_n?tab=meaning_and_use#2083124 on Feb. 8, 2024. (Year: 2024). |
U-FAB product information sheet from CLECELL. Retrieved from https://www.clecell.co.kr/pdf/U-FAB%20MASTER(ENG).pdf on Feb. 8, 2024. (Year: 2020). |
Number | Date | Country | |
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20220080758 A1 | Mar 2022 | US |