材料科学
立方氧化锆
氮化硼
复合数
四方晶系
复合材料
抗压强度
制作
硼
化学工程
陶瓷
相(物质)
有机化学
病理
化学
工程类
替代医学
医学
作者
Shweta,Maimoona Tahir,Sarvesh Kumar Avinashi,Shama Parveen,Saurabh Kumar,Zaireen Fatima,Rajat Kumar Mishra,Savita Kumari,Ajaz Hussain,Jitendra Rao,Monisha Banerjee,Chandkiram Gautam
标识
DOI:10.1016/j.jmbbm.2023.106032
摘要
Herein, present study mainly focuses on the synthesis and characterizations of boron nitride reinforced waste zirconia (wZrO2) with different concentrations. Composites were prepared via a scalable solid-state reaction method. Various physical parameters such as density, ionic concentration, polaron radius, and field strength were evaluated. XRD results reveal crystalline nature with a major phase of tetragonal zirconia and as boron nitride is reinforced, the tetragonal transforms into a monoclinic zirconia. Interconnected spherical grains and nanosheets were observed using FESEM. Mechanical characterizations revealed the highest compressive strength of 266 MPa. The latent fingerprints were visualized using a composite on different surfaces, implementing the powder dusting and solution techniques. MTT assay was performed and revealed good biocompatible nature. These results reveal that composite is suitable for fabrication of bioceramics with acceptable mechanical and biological performances. The composite can also be utilized for latent fingerprint detection in forensic science.
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