首页> 外文期刊>Journal of the Bangladesh academy of sciences >EFFECTS OF Co-DOPED BIMETALLIC IMPURITIES ON THE GROWTH AND NUCLEATION KINETICS OF POTASSIUM ACID PHTHALATE (KAP)
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EFFECTS OF Co-DOPED BIMETALLIC IMPURITIES ON THE GROWTH AND NUCLEATION KINETICS OF POTASSIUM ACID PHTHALATE (KAP)

机译:共掺杂双金属杂质对邻苯二甲酸钾(KAP)生长和成核动力学的影响

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摘要

Single crystals of pure potassium acid phthalate (KAP) and nickel-magnesium (Ni~(2+)-Mg~(2+)), cobalt-magnesium (Co~(2+)-Mg~(2+)) and lithium-magnesium (Li~(1+)-Mg~(2+)) co-doped potassium acid phthalate crystals were grown by an isothermal evaporation method. Good quality and optically transparent single crystals of pure and bimetallic doped KAP were grown. Enhancement of the metastable zonewidth was achieved by the addition of co-doped novel bimetallic impurities in KAP solution. The induction period and various critical nucleation parameters such as radius of critical nucleus, number of molecules in the critical nuclei and the critical free energy change were calculated based on the classical theory for homogeneous nucleation. The induction period decreases exponentially with supersaturation ratio and hence the nucleation rate increases with the increase of supersaturation ratio for all systems. Subsequent incorporation of these bimetallic co-doped impurities into the crystal would allow the growth rate to achieve its maximum value. The induction period is found to increase with the incorporation of Ni~(2+), Co~(2+)and Li~(1+) ions doped along with Mg~(2+) ions in KAP. It is anticipated that these larger cations play a vital role in the growth mechanism and it favors to reduce the formation of secondary nucleation by positioning the doped metal ions into the interstitial sites.
机译:纯邻苯二甲酸钾(KAP)和镍镁(Ni〜(2 +)-Mg〜(2+)),钴镁(Co〜(2 +)-Mg〜(2+))和锂的单晶通过等温蒸发法生长了镁(Li〜(1 +)-Mg〜(2+))共掺杂的邻苯二甲酸钾酸钾晶体。生长了纯净和双金属掺杂的KAP的高质量且光学透明的单晶。通过在KAP溶液中添加共掺杂的新型双金属杂质,可以实现亚稳区域宽度的增强。基于经典的均匀成核理论,计算了诱导期和各种关键成核参数,例如临界核半径,临界核中的分子数和临界自由能变化。诱导期随过饱和度的增加呈指数下降,因此成核速率随所有系统的过饱和度的增加而增加。随后将这些双金属共掺杂杂质掺入晶体将使生长速率达到其最大值。随着KAP中掺入Mg〜(2+)离子的Ni〜(2 +),Co〜(2+)和Li〜(1+)离子的引入,诱导期增加。可以预料,这些较大的阳离子在生长机理中起着至关重要的作用,并且有利于通过将掺杂的金属离子置于间隙位置来减少二次成核的形成。

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  • 来源
    《Journal of the Bangladesh academy of sciences》 |2009年第2期|189-197|共9页
  • 作者

    S. A. BEGUM; J. PODDER;

  • 作者单位

    Ideal School and College, Motijheel, Dhaka-1000, Bangladesh;

    Ideal School and College, Motijheel, Dhaka-1000, Bangladesh Department of Physics, Bangladesh University of Engineering and Technology, Dhaka-1000, Bangladesh;

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