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LN3

LN3LN3
  1. The mechanism of molecular interaction between Ln3 + and CaM has been discussed .

    最后对Ln3+和CaM相互作用的分子机制进行了初步的讨论。

  2. Their syntheses are mainly controlled by the radii of Ln3 + ions and solvent .

    这两类化合物的合成受稀土离子半径和溶剂两个因素控制。

  3. Six kinds of Ln3 + ions rare earth polymers and three with containing Ag + ion the coordination polymer were synthesized by hydrothermal method .

    本文采用溶剂热合成方法,合成了6种含稀土Ln3+离子的配聚物和3个含Ag+离子配位聚合物。

  4. Ln3 + : YF3 frustum-octahedron micro / nano have been prepared by a simple hydrothermal method .

    通过一种简单的水热方法制备Ln3+:YF3截角八面体微纳米晶体。

  5. In the absence of CaM , Ln3 + inhibits the basic activity of Ca2 + - Mg2 + - ATPase at high concentration .

    在无CaM的Ca2+-Mg2+-ATPase体系中,高浓度的Ln3+抑制Ca2+-Mg2+-ATPase的基础活力。

  6. Because the similarity between rare earth ions ( Ln3 + ) and Ca2 + , they will intervene and regulate bone formation and remodeling .

    由于稀土与钙离子的相似性,它们将干预和调控骨的形成与再造。

  7. The effects of light rare earth ions ( Ln3 + ) on the activity of phosphodiesterase ( PDE ) stimulated by calmodulin ( CaM ) have been studied .

    研究了轻稀土离子(Ln3+)对钙调蛋白(CaM)调控的磷酸二酯酶(PDE)活力的影响。

  8. In the case of a same measuring temperature range , the values of average thermal expansion coefficient ( TEC ) slightly enhance with the decrease in the radius of Ln3 + cations .

    在同一温度范围内,Ln0.6Sr0.4Co0.8Fe0.2O3体系陶瓷的平均热膨胀系数随A位稀土离子半径的减小而略有增大。

  9. It is proved by the changes of binding energy that the Ln3 + ions are coordinated through O atom and S atom , Ln-O bond and Ln-S bond have a Certain covalent character and the ion character of the coordinate bond becomes stronger from La to Lu .

    结果表明:Ln3+离子通过O原子和S原子配位形成螫合物,LnO键和LnS键均具有一定程度的共价性;从La到Lu,配位键的离子性逐渐增强;