van der Waals bond

美 [væn dɜr wɑlz bɑːnd]

网络  范德瓦耳斯键; 范德华键; 范德瓦尔斯键; 凡得瓦键; 分子键

化学



双语例句

  1. Some phenomena of polymer solution, which can not be satisfactorily explained by such basic chemical theory as van der Waals force and hydrogen bond, are well interpreted by introducing the structrue adapability tenets of cybernetics into the branch of polymer.
    摘要将控制论的结构适应性原理引入高分子学科,解释了一些范德华力、氢键等化学基本理论未能恰当解释的聚合物溶解现象。
  2. Quantum theory of van der Waals force and hydrogen bond
    范德瓦耳斯力和氢键的量子理论
  3. Balance between van der Waals and coordination bond energies& unified model of coordination bond length in the complex compounds of yttrium
    范德华能与配位键能之间的平衡&钇络合物中配位键长的综合模型
  4. The variation of coordination bond lengths in the complex compounds of yttrium due to the balance between Van der Waals and coordination bond energies are given.
    本文介绍了在钇络合物中由于范德华能与配位键能之间的平衡而产生配位键长的变化。
  5. The influence factors and forming mechanism of nanoparticle agglomerates were analyzed in this paper. This article pointed out that forces such as Van der Waals force, hydrogen bond action and electrostatic action were the essential reasons for agglomerates.
    分析了纳米颗粒团聚的影响因素及形成机理,指出颗粒之间的范德华力、氢键作用、静电作用等各种作用力是形成团聚的根本原因。
  6. The reason was that the uptake of fiber not only by van der Waals 'force and hydrogen bond but also adsorption of acid dye by-NH3+.
    由于酸性染料分子除了以范德华力和氢键的形式与纤维结合外,还会与纤维生成盐键结合,因此上染量的增加是由于改性后尼龙6纤维的端氨基增加的缘故。
  7. Balance between Coordination Bond and Van der Waals Energies of the Complex Compounds of Actinides I.
    锕系配合物中vanderwaals能与配位键能之间的平衡Ⅰ。
  8. We found carrier micromolecule quickly diffused into fibers 'interior and combined with fiber by Van der waals' force or hydrogen bond, weakened the bond between fibers, increased odds of big cavities to appear and improved diffusion velocity of ZX-1.
    载体小分子较快地向纤维内部扩散并以范德华力或氢键的方式与纤维结合,减弱了纤维间的结合力,增大了大空穴产生的几率,提高ZX-1的扩散速度。
  9. The ligand-ligand interaction, such as van der waals forces 、 electrostatic interactions 、 hydrogen bond 、 aromatic stacking and hydrophobic interaction, is an important intermolecular interaction to construct the supermolecular architectures.
    配体与配体之间的作用,例如:范得华力、静电作用、氢键、芳环的堆积和疏水作用是构筑超分子体系的重要的分子间相互作用。