Alorku Kingdom, Manoj M, Yuan Aihua
School of Environmental and Chemical Engineering, Jiangsu University of Science and Technology Zhenjiang 212003 Jiangsu Province PR China
RSC Adv. 2020 Nov 10;10(67):40923-40939. doi: 10.1039/d0ra08529d. eCollection 2020 Nov 9.
The engineering of calcium-based phosphate materials at the nanoscale gains several unique properties compared to the bulky state. The effort to scale down, , from bulky state to nanoscale in order to control the morphology and improve structural properties requires the use of varying reagents that can be detrimental to the environment. A typical example of these materials is hydroxyapatite (HAp), one of the well-known calcium phosphate materials, which has a close resemblance to human bone tissue. HAp has valuable applications in catalysis, drug delivery, bone and dental implant formation, and adsorption. Hydroxyapatite-based nanomaterials synthesized through conventional routes make use of reagents that are not environmental friendly and are very costly. Since the current research trends are geared towards producing/synthesizing nanomaterials through an eco-friendly approach, there is the need to consider the techniques and reagents involved in the synthesis of HAp. This review touches on the possible replacement of such synthetic chemical reagents, synthesis routes, and toxic capping agents with plant extracts for synthesizing HAp-based nanomaterials for multi-functional applications. The influence of biomolecules from plants on synthesized HAps and the attainable mechanism during these green approaches are discussed. Viable future modifications of the methods used to obtain extracts from plants are also studied.
与块状状态相比,纳米级钙基磷酸盐材料的工程化具有若干独特性能。为了控制形态并改善结构性能,从块状状态缩小到纳米级的努力需要使用可能对环境有害的各种试剂。这些材料的一个典型例子是羟基磷灰石(HAp),它是一种著名的钙磷酸盐材料,与人体骨组织非常相似。HAp在催化、药物递送、骨和牙科植入物形成以及吸附方面具有重要应用。通过传统路线合成的羟基磷灰石基纳米材料使用的试剂不环保且成本很高。由于当前的研究趋势倾向于通过环保方法生产/合成纳米材料,因此有必要考虑合成HAp所涉及的技术和试剂。本综述探讨了用植物提取物替代此类合成化学试剂、合成路线和有毒封端剂以合成用于多功能应用的HAp基纳米材料的可能性。讨论了植物中的生物分子对合成的HAp的影响以及这些绿色方法中的可实现机制。还研究了用于从植物中提取提取物的方法的可行未来改进。