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Electrical properties of resin monomers used in restorative dentistry

机译:修复牙科用树脂单体的电性能

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摘要

Objectives. The application of an electric field has been shown to positively influence the impregnation of the resin monomers currently used in dentin bonding systems during hybrid layer formation. This study presents an experimental characterization of the electrical properties of these monomers with the aim of both correlating them to their chemical structures and seeking an insight into the mechanisms of the monomer migration under an applied electric field. Methods. Some common monomers examined were TEGDMA (triethyleneglycoldimethacry-late), HEMA (2-hydroxyethyl methacrylate), UDMA (urethane dimethacrylate), 2-MP (bis[2-(methacryloyloxy)ethyl] phosphate, TCDM difhydroxyethyl methacrylate) ester of 5-(2,5-dioxotetrahydrofurfuryl)-3-methyl-3-cyclohexenyl-l,2-dicarboxylic anhydride) and Bis-GMA [2,2-bis(4-2-hydroxy-3-methacryloyloxypropoxyphenyl)propane]. A customized cell produced for the measurement of the electrical properties of monomers was manufactured and electrical conductivity and permittivity of resin monomers were measured. Results. The permittivity of the tested monomers is largely affected by electrical frequency. The large values of permittivity and dielectric losses observed as frequency decreased, indicate a dominant effect of ionic polarization, particularly evident in materials showing the highest conductivity. Permittivity and conductivity of the tested monomers showed a similar behavior, i.e. materials with the lowest permittivity also show small values of conductivity and vice versa. Significance. The results of the present study revealed a good correlation between electrical properties and Hoy solubility parameters and, in particular, the higher the polar contribution (polar forces plus hydrogen bonding) the higher the permittivity and conductivity. The most relevant outcome of this study is that the electrophoretic mechanism prevails on the electroendoosmotic effect in determining the monomer migration under the application of electric fields.
机译:目标。电场的施加已显示出对杂化层形成期间目前用于牙本质粘合系统中的树脂单体的浸渍有积极影响。这项研究提出了这些单体的电特性的实验表征,目的是将它们与它们的化学结构相关联,并寻求对施加电场下单体迁移机理的见解。方法。检查的一些常见单体为5-(-)的TEGDMA(三亚乙基甘油二甲基丙烯酸酯),HEMA(甲基丙烯酸2-羟乙酯),UDMA(氨基甲酸酯二甲基丙烯酸酯),2-MP(磷酸二[2-(甲基丙烯酰氧基)乙基]酯,TCDM甲基丙烯酸二羟乙基乙酯)酯。 2,5-二氧四氢糠基)-3-甲基-3-环己烯基-1,2-二羧酸酐)和Bis-GMA [2,2-双(4-2-羟基-3-甲基丙烯酰氧基丙氧基苯基)丙烷]。制造用于测量单体的电性能的定制电池,并且测量树脂单体的电导率和介电常数。结果。被测单体的介电常数很大程度上受电频率的影响。随频率降低,观察到的介电常数和介电损耗值较大,这表明离子极化起主要作用,在显示出最高电导率的材料中尤为明显。被测单体的介电常数和电导率表现出相似的行为,即,具有最低介电常数的材料也显示出小的电导率值,反之亦然。意义。本研究的结果表明,电性能与Hoy溶解度参数之间具有良好的相关性,尤其是极性贡献(极性力加氢键)越高,介电常数和导电率越高。这项研究最相关的结果是,在确定电场作用下确定单体迁移的过程中,电泳机理在电渗透作用中占主导地位。

著录项

  • 来源
    《Dental materials》 |2012年第9期|p.1024-1031|共8页
  • 作者单位

    Department of Electrical Engineering, University of Bologna, Italy;

    Department of Electrical Engineering, University of Bologna, Italy;

    Department of Electrical Engineering, University of Bologna, Italy;

    Department of Electrical Engineering, University of Bologna, Italy;

    Department of Civil, Enuironmental and Materials Engineering, University of Bologna, Italy;

    Department of Civil, Enuironmental and Materials Engineering, University of Bologna, Italy;

    Department of Medical Sciences, Unit of DentalSciences and Biomaterials, Uniuersity of Trieste, Trieste, Italy;

    Department of SAU&FAL, Uniuersity of Bologna, Bologna, Italy;

    Department of Oral Bioiogy, College of Dental Medicine, Georgia Health Sciences University, Augusta, GA, USA;

    Department of Medical Sciences, Unit of DentalSciences and Biomaterials, Uniuersity of Trieste, Trieste, Italy,IGM-CNR, Unit of Bologna c/o IOR, Bologna, Italy,Department of Medical Sciences, University of Trieste, PiazzaOspedale 1, 34129 Trieste, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    composite resins; dentin bonding systems; electrical conductivity; electrical permittivity;

    机译:复合树脂;牙本质粘合系统;电导率介电常数;

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