Department of Dental Technology, COAMS, King Khalid University, Abha, Saudi Arabia.
Department of Research Analytics, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai, 600 077, India.
Eur J Med Res. 2024 Aug 29;29(1):436. doi: 10.1186/s40001-024-02040-x.
Polyetherketoneketone (PEKK) is a high-performance thermoplastic polymer with unique structural and mechanical properties that make it a promising candidate for surface modification of dental implants. This study was conducted to investigate the feasibility of PEKK for this purpose using the Cambridge Serial Total Energy Package (CASTEP) code based on density functional theory (DFT).
This study examined the ground state energy, structural properties, thermodynamic behavior, cohesive energy, refractive index, stress analysis, mechanical properties, and anisotropic behavior of PEKK.
This study found that PEKK has a complex crystal structure with an orthorhombic unit cell shape, triclinic lattice type, and a centered structure. It also has a 2D layered structure owing to the presence of carbonyl groups, which provides a large surface area for interaction with biological tissues. Thermodynamic analysis showed that PEKK exhibited bond elongation and structural changes at 380 °C, indicating thermal degradation. The cohesive energy of PEKK was calculated to be - 440 eV, indicating its stability and structural integrity. PEKK has a complex refractive index, with real and imaginary components that affect its optical properties. Stress analysis showed that PEKK is resistant to shear deformation and has high hydrostatic stress, which contributes to its stability and biocompatibility.
The mechanical properties of PEKK, including its high stiffness, resistance to volume change under pressure, and ability to accommodate natural movements, make it suitable for surface modification of dental implants.
聚醚酮酮(PEKK)是一种具有独特结构和机械性能的高性能热塑性聚合物,使其成为牙科植入物表面改性的有前途的候选材料。本研究使用基于密度泛函理论(DFT)的剑桥系列总能量包(CASTEP)代码研究了将 PEKK 用于此目的的可行性。
本研究检查了 PEKK 的基态能量、结构特性、热力学行为、内聚能、折射率、应力分析、机械性能和各向异性行为。
本研究发现,PEKK 具有复杂的晶体结构,具有正交晶胞形状、三斜晶格类型和中心结构。由于存在羰基,它还具有二维层状结构,这为与生物组织的相互作用提供了较大的表面积。热力学分析表明,PEKK 在 380°C 时表现出键伸长和结构变化,表明发生了热降解。PEKK 的内聚能计算为-440 eV,表明其稳定性和结构完整性。PEKK 具有复杂的折射率,具有影响其光学性能的实部和虚部。应力分析表明,PEKK 抗剪切变形,具有较高的静水压力,这有助于其稳定性和生物相容性。
PEKK 的机械性能,包括其高刚度、抵抗压力下的体积变化以及适应自然运动的能力,使其适合用于牙科植入物的表面改性。