hydrogen bond信息详情

hydrogen bond发音

意思翻译

[物化]氢键

相似词语短语

hydrogen bonds───氢键

hydrogen bomb───氢弹

hydrogen ion───氢离子

hydrogen ions───氢离子

hydrogen bonding───氢键;氢键结合

hydrogen bombs───氢弹

hydrogen bromide───[无化]溴化氢

双语使用场景

Results One MH was entrapped by two MAAs in methanol through hydrogen bond.───结果表明在甲醇中1个抑芽丹与2个甲基丙烯酸通过氢键形成复合物.

As such, thehydrogen and oxygen atoms of neighbouring molecules are attracted toone another, forming a link called a hydrogen bond.───因此,相邻的氢分子和氧原子的相互吸引,形成一个健称为氢氧键。

The energy of the hydrogen bond is largely electrostatic in origin.───氢键的能量从本质上说主要是静电.

The active area of ENOLASE will potentially exist multi - hydrogen bond of donor and acceptor.───ENOLASE烯醇酶活性中心存在多个潜在的氢键给体和受体.

It implied that the hydrogen bond played an important role in depressing the energy of reaction.───其中氢键在降低反应的活化能方面起了重要的作用.

For example, some configurations might bring neighboring regions of the polymer into proximity where they could hydrogen bond.───比如说,某些构型会使得某些部位接近,聚合物上的,从而产生氢键。

So, this phenomenon also indicated that the intermolecular hydrogen bond was important for resonance enhancement.───因而, 这个现象也正好表明分子间氢键的形成对于共振增强是重要的.

These properties are due to a unique kind of a bond known as the hydrogen bond.───这些特性的存在是由于一种独特的结合力,即人们所知道的氢键.

The name "hydrogen bond" is something of a misnomer, as it is not a true bond but a particularly strong dipole-dipole attraction.───氢键”这个名字使用不当,因为它不是真正的键,而是特别强的极性分子间的吸引力。

In MR - LDHs, interlayer guest adopt - layer arrangement and effect with host through electrostatic force and hydrogen bond.───插层结构体系中存在主体 - 客体 、 客体 - 客体的相互作用,其中甲基红阴离子通过静电力和氢键与LDHs层板相互作用,在层间呈双层排列.

Hydrogen bond interaction exists in the blends.───共混物中POM与 COPA分子间存在氢键作用.

The bonding models of large π bond, hydrogen bond, HOMO and LUMO are discussed.───讨论了大π键, 氢键, 最高占据轨道及最低空轨道的成键图像.

英语使用场景

Glu115 also forms hydrogen bonds to His118 and to Asp84, and Glu238 hydrogen-bonds to Glu204.

Distortions due to the formation of hydrogen bonds are usually smaller than those due to co-ordination to metal ions.

It therefore seems that both DNA structure and hydrogen bonding to guanine contribute towards sequence recognition.

The energy of this hydrogen bonding is comparable to that of the torsion-angle strain.

This allows hydrogen bonds to reform.

These polymers can form intermolecular hydrogen bonds which greatly enhance crystallite stability.

Glutamic acid 170 forms the final main-chain hydrogen bond in the molecule.

There are no main-chain hydrogen bonds to the metal ligand side chains.

Protein residues in contact are also shown, with hydrogen bonds as dotted lines.