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首页> 外文期刊>MATEC Web of Conferences >Evaluation of Sealing Properties to LED Light Emitting Substrate of Organic-inorganic Hybrid Materials Composed of Polysilsesquioxane with Thiol Group
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Evaluation of Sealing Properties to LED Light Emitting Substrate of Organic-inorganic Hybrid Materials Composed of Polysilsesquioxane with Thiol Group

机译:用硫醇基组成的有机 - 无机杂交材料的LED发光底物的密封性能评价

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Novel organic-inorganic hybrid materials were developed as LED sealants. Polysilsesquioxane with an -SH group (PSQ-SH) and acrylic monomer were selected as the inorganic and organic components, respectively. Trimethylolpropane trimethacrylate (TRIM), which is a trifunctional monomer, was selected as an acrylic monomer, and curing of the material was performed by the thiol-ene reaction. The LED was sealed using the prepared PSQ-SH/TRIM hybrid material (PTH), and a light emission test was performed. However, cracks occurred in the hybrid material during lighting. Therefore, ditrimethylol propane tetraacrylate (DTMPTA), which is a tetrafunctional monomer, was selected for the first time to prepare a PSQ-SH/DTMPA hybrid material (PDH) in order to enhance the strength and heat resistance of the material. The characteristics of the novel PDH were evaluated and compared with those of PTH. Specifically, the heat resistance was evaluated by confirming the onset temperature of weight reduction using thermogravimetry-differential thermal analyzer (TG-DTA) analysis, and the mechanical strength was also evaluated by bonding the glass substrates with a hybrid material and measuring the sealing strength. In conclusion, it was possible to suppress crack generation during lighting by using PDH instead of PTH in the light emission test.
机译:新型有机无机杂化材料被开发为LED密封剂。选择具有-SH组(PSQ-SH)和丙烯酸单体的聚硅酸辛硅氧烷分别为无机和有机组分。选择为三官能单体的三羟甲基丙烷三甲基丙烯酸酯(修剪)作为丙烯酸类单体,并通过硫醇-NEE反应进行材料的固化。使用制备的PSQ-SH /调整混合材料(PTH)密封LED,并进行发光试验。然而,在照明期间混合材料中发生裂缝。因此,首次选择作为四官能单体的二乙基丙烷四丙烯酸甲酯(DTMPTA),以制备PSQ-SH / DTMPA杂化材料(PDH),以提高材料的强度和耐热性。评估新型PDH的特征,并与PTH的比较。具体地,通过确认使用热重血管分析热分析仪(TG-DTA)分析来评估重量的起始温度来评价耐热性,并且还通过用杂种材料粘合并测量密封强度来评估机械强度并测量密封强度。总之,通过在光发射试验中使用PDH,可以在照明期间抑制裂缝产生。

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