Reinforcement of a PMMA resin for fixed interim prostheses with nanodiamonds. (1/16)

The aim of this study was to investigate the possible reinforcement of Nanodiamonds (ND) in a PMMA resin for fixed interim restorations. The fracture toughness (K(Ic)), impact strength and the dynamic thermomechanical properties (T(g), E , E , tandelta) of a series of PMMA-ND nanocomposites with different amounts of ND were evaluated. The fracture toughness increased as the ND percentage increased up to 0.38% wt but a greater amount of ND induced a decrease in K(Ic). Impact strength and Young's modulus were also increased by increasing nanoparticles content, indicating the reinforcing effect of ND. Dynamic mechanical properties were also affected. By increasing the ND content an increase of storage modulus was recorded, while glass transition was shifted at higher temperatures. Under the limitations of this study, it can be suggested that reinforcing PMMA with ND nanoparticles -especially at low concentrations- may increase the overall performance of fixed interim prostheses.  (+info)

Evidence from central Mexico supporting the Younger Dryas extraterrestrial impact hypothesis. (2/16)

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Nanodiamonds and wildfire evidence in the Usselo horizon postdate the Allerod-Younger Dryas boundary. (3/16)

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Electron spin resonance of nitrogen-vacancy centers in optically trapped nanodiamonds. (4/16)

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Lysine-functionalized nanodiamonds: synthesis, physiochemical characterization, and nucleic acid binding studies. (5/16)

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Influence of the internalization pathway on the efficacy of siRNA delivery by cationic fluorescent nanodiamonds in the Ewing sarcoma cell model. (6/16)

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Nanodiamonds as novel nanomaterials for biomedical applications: drug delivery and imaging systems. (7/16)

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Photoacoustic contrast imaging of biological tissues with nanodiamonds fabricated for high near-infrared absorbance. (8/16)

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