2019
DOI: 10.1088/2053-1591/ab208f
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Systematic studies of hydroxyapatite/terpene hybrid microspheres: natural rosin-based phosphorus sources and chemical structures of coordination compounds

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Cited by 3 publications
(4 citation statements)
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“…The phosphorus in hybrid materials may be produced by the hydrolysis of rosin phosphate ester. While it should be noted that the absorption peaks of carbonyl group shift from 1640 cm −1 to 1625 cm −1 in figures 2(E) and (F), which may be caused by the formation of coordination compound between calcium ion and carbonyl group [36].…”
Section: Ft-irmentioning
confidence: 89%
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“…The phosphorus in hybrid materials may be produced by the hydrolysis of rosin phosphate ester. While it should be noted that the absorption peaks of carbonyl group shift from 1640 cm −1 to 1625 cm −1 in figures 2(E) and (F), which may be caused by the formation of coordination compound between calcium ion and carbonyl group [36].…”
Section: Ft-irmentioning
confidence: 89%
“…However, under alkaline conditions, due to the hydroxyl force on the surface of the sample, the particles gather to form irregular blocks (a4) [37]. The difference of morphology may be due to the different charge action of the system under different pH conditions, after hydrolysis of RAPM, it forms different complexes with Ca 2+ controls the specific growth of materials [36].…”
Section: Sem 321 Sem Of Rosin@ap Materials By Hydrothermal Methodsmentioning
confidence: 99%
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“…This is due to multiple variables, such as the type, volume ratio, and concentration of the starting materials, as well as the reaction conditions, such as temperature and pressure [ 33 ]. Furthermore, the use of organic solvents can also pose some challenges, such as the need for appropriate safety precautions and the potential for toxicity [ 34 ]. Despite these challenges, the solvothermal method remains an important technique for the synthesis of CaP nanoparticles with tailored properties and functionality for bone tissue engineering and other applications.…”
Section: Synthesis Strategies For Calcium Phosphate-based Nanomaterialsmentioning
confidence: 99%