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首页> 外文期刊>Journal of Applied Polymer Science >Effect of Poly(acrylic acid) Molecular Mass and End-Group Functionality on Calcium Oxalate Crystal Morphology and Growth
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Effect of Poly(acrylic acid) Molecular Mass and End-Group Functionality on Calcium Oxalate Crystal Morphology and Growth

机译:聚丙烯酸的分子量和端基官能团对草酸钙晶体形态和生长的影响

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A number of series of poly(acrylic acids)(PAA) of differing end-groups and molecular mass were used to study the inhibition of calcium oxalate crystallization.The effects of the end-group on crystal speciation and morphology were significant and dramatic, with hexyl-isobutyrate end groups giving preferential formation of calcium oxalate dihydrate (COD) rather than the more stable calcium oxalate monohydrate (COM), while both more hydrophobic end-groups and less-hydrophobic end groups led predominantly to formation of the least thermodynamically stable form of calcium oxalate, calcium oxalate trihydrate. Conversely, molecular mass had little impact on calcium oxalate speciation or crystal morphology.It is probable that the observed effects are related to the rate of desorption of the PAA moiety from the crystal (lite) surfaces and that the results point to a major role for end-group as well as molecular mass in controlling desorption rate.
机译:一系列不同端基和分子量的聚(丙烯酸)(PAA)系列被用于研究草酸钙结晶的抑制作用。端基对晶体形态和形态的影响是显着而戏剧性的,异丁酸己酯端基优先形成草酸钙二水合物(COD),而不是更稳定的草酸钙一水合物(COM),而疏水性更高的基团和疏水性较小的端基均主要导致热力学最稳定的形式形成草酸钙,草酸钙三水合物。相反,分子量对草酸钙的形态或晶体形态几乎没有影响。观察到的影响可能与PAA部分从晶体(轻质)表面的解吸速率有关,并且结果表明该作用主要是端基以及控制解吸速率的分子量。

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