82,88 €
92,09 €
-10% with code: EXTRA
TiO2 Reinforced Hybrid Dental Composite Materials
TiO2 Reinforced Hybrid Dental Composite Materials
82,88
92,09 €
  • We will send in 10–14 business days.
In the last few decades, the Minamata convention where WHO decided to phase out the mercury-based dental materials owing to their ill effect on humans. This accelerates the research work in dental resin-based hybrid composite materials. Focusing on the target, this research work encompasses designing and development of dental resin-based hybrid composite materials, their laboratory fabrication, and characterization. The aim is to understand the combined effect of nano-hydroxyapatite and micro T…
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TiO2 Reinforced Hybrid Dental Composite Materials (e-book) (used book) | bookbook.eu

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In the last few decades, the Minamata convention where WHO decided to phase out the mercury-based dental materials owing to their ill effect on humans. This accelerates the research work in dental resin-based hybrid composite materials. Focusing on the target, this research work encompasses designing and development of dental resin-based hybrid composite materials, their laboratory fabrication, and characterization. The aim is to understand the combined effect of nano-hydroxyapatite and micro Titanium Oxide (TiO2) on the dental performance of the BIS-GMA matrix for dental restorative applications. It is found that reinforcement has improved the physical, mechanical, and dental performance of the dental resin.

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In the last few decades, the Minamata convention where WHO decided to phase out the mercury-based dental materials owing to their ill effect on humans. This accelerates the research work in dental resin-based hybrid composite materials. Focusing on the target, this research work encompasses designing and development of dental resin-based hybrid composite materials, their laboratory fabrication, and characterization. The aim is to understand the combined effect of nano-hydroxyapatite and micro Titanium Oxide (TiO2) on the dental performance of the BIS-GMA matrix for dental restorative applications. It is found that reinforcement has improved the physical, mechanical, and dental performance of the dental resin.

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