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Dentin Bond Integrity of Hydroxyapatite Containing Resin Adhesive Enhanced with Graphene Oxide Nano-Particles—An SEM EDX Micro-Raman and Microtensile Bond Strength Study

机译:含羟基磷灰石的牙本质键完整性含有石墨烯纳米颗粒的树脂粘合剂 - SEMEDX微拉曼和微调制粘合强度研究

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摘要

The aim was to synthesize and characterize an adhesive incorporating HA and GO nanoparticles. Techniques including scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDX), micro-tensile bond strength (μTBS), and micro-Raman spectroscopy were employed to investigate bond durability, presence of nanoparticles inside adhesive, and dentin interaction. Control experimental adhesive (CEA) was synthesized with 5 wt% HA. GO particles were fabricated and added to CEA at 0.5 wt% (HA-GO-0.5%) and 2 wt% GO (HA-GO-2%). Teeth were prepared to produce bonded specimens using the three adhesive bonding agents for assessment of μTBS, with and without thermocycling (TC). The adhesives were applied twice on the dentin with a micro-brush followed by air thinning and photo-polymerization. The HA and GO nanoparticles demonstrated uniform dispersion inside adhesive. Resin tags with varying depths were observed on SEM micrographs. The EDX mapping revealed the presence of carbon (C), calcium (Ca), and phosphorus (P) in the two GO adhesives. For both TC and NTC samples, HA-GO-2% had higher μTBS and durability, followed by HA-GO-0.5%. The representative micro-Raman spectra demonstrated D and G bands for nano-GO particles containing adhesives. HA-GO-2% group demonstrated uniform diffusion in adhesive, higher μTBS, adequate durability, and comparable resin tag development to controls.
机译:目的是合成和表征掺入HA和去纳米颗粒的粘合剂。包括扫描电子显微镜(SEM)和能量分散X射线光谱(EDX),微拉伸粘合强度(μTB)和微拉曼光谱的技术用于研究粘合剂内纳米颗粒的存在,以及牙本质相互作用。用5wt%HA合成控制实验粘合剂(CEA)。制造去颗粒并加入到0.5wt%(HA-GO-0.5%)和2wt%的CEA中(HA-GO-2%)。准备使用三种粘合剂制备牙齿以产生键合的试样,用于评估μTB,有和不具有热循环(Tc)。用微刷在牙齿上施加两次粘合剂,然后进行空气稀释和光聚合。 HA和GO纳米颗粒在粘合剂内显示出均匀的分散体。在SEM显微照片上观察到具有不同深度的树脂标签。 EDX映射显示了两种去粘合剂中碳(C),钙(CA)和磷(P)的存在。对于TC和NTC样品,HA-GO-2%具有更高的μTB和耐久性,然后进行HA-GO-0.5%。代表性的微拉曼光谱证明了含有粘合剂的纳米去颗粒的D和G带。 HA-Go-2%组在粘合剂,μTBs,足够的耐久性和可比性的树脂标签开发中表现出均匀的扩散。

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