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Effects of the reinforced cellulose nanocrystals on glass-ionomer cements

机译:增强纤维素纳米晶体对玻璃离聚物水泥的影响

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Objective. Glass-ionomer cements (GICs) modified with cellulose nanocrystals (CNs) were characterized and evaluated for compressive strength (CS), diametral tensile strength (DTS) and fluoride release (F-).Methods. Commercially available GICs (Maxxion, Vidrion R, Vitro Molar, Ketac Molar Easy Mix and Fuji Gold Label 9) were reinforced with CNs (0.2% by weight). The microstructure of CNs and of CN-modified GICs were evaluated by transmission electron microscopy (TEM) and by scanning electron microscopy (SEM) while chemical characterization was by Fourier transform infrared spectroscopy (FTIR). Ten specimens each of the unmodified (control) and CN- modified materials (test materials) were prepared for CS and DTS testing. For the fluoride release evaluation, separate specimens (n = 10) of each test and control material were made. The results obtained were submitted to the t-test (p 0.05).Results. The CN reinforcement significantly improved the mechanical properties and significantly increased the F- release of all GICs (p 0.05). The GICs with CNs showed a fibrillar aggregate of nanoparticles interspersed in the matrix. The compounds with CNs showed a higher amount of C compared to the controls due to the organic nature of the CNs. It was not possible to identify by FTIR any chemical bond difference in the compounds formed when nanofibers were inserted in the GICs.Significance. Modification of GICs with CNs appears to produce promising restorative materials. (C) 2019 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:客观的。用纤维素纳米晶体(CNS)改性的玻璃离聚物水泥(GIC)进行了抗压强度(CS),直径拉伸强度(DTS)和氟化物释放(F - )。方法。方法。用CNS(0.2重量%)加固市售的网上(Maxxion,Vidrion R,体外磨牙,Ketac Molar易于混合物和富士金标签9)。通过透射电子显微镜(TEM)和通过扫描电子显微镜(SEM)评估CNS和CN改性的基质的微观结构,同时通过傅里叶变换红外光谱(FTIR)进行化学表征。为CS和DTS测试制备10个标本每种未修饰(对照)和CN-改性材料(测试材料)。对于氟化物释放评估,制备每个试验和对照材料的单独标本(n = 10)。获得的结果已提交至T检验(P <0.05)。结果。 CN增强件显着改善了机械性能,显着增加了所有GICS的F释放(P <0.05)。具有CNS的基因杆菌显示出纳米颗粒的纤维状骨料。与CNS的有机性质相比,具有CNS的化合物与对照相比,较高的C.通过FTIR鉴定在纳米纤维中插入GICS中,通过FTIR识别任何化合物中所形成的化合物中的化学键差异。使用CNS的改进似乎产生了有前途的恢复材料。 (c)2019年牙科材料学院。由elsevier Inc.出版的所有权利保留。

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