hydrogen bonding

精品项目网 2024-05-17 18:31:53

基本释义:

氢结合

网络释义

1)hydrogen bonding,氢结合

2)Hydrogen bond,氢键结合

3)hydrogen-desorption-recombination,脱氢再结合

4)desorption-recombination,脱氢-再结合

5)solvent hydrogen bonding,溶剂氢结合

6)Hydrogen bonding energy,氢键结合能

用法和例句

As-cast Nd12Fe82B6 alloy was disproportionated by mechanical milling in hydrogen atmosphere at ambient temperature, and nanocrystalline alloy powder were obtained by subsequent desorption-recombination treatment following mechanical milling.

在氢气氛中机械球磨铸态Nd12Fe82B6(at%)合金,利用机械力驱动使之发生歧化反应,随后进行真空脱氢-再结合处理,获得纳米晶合金粉末材料。

As-cast Nd12Fe82B6 alloy was disproportionated by mechanical nulling in hydrogen atmosphere at ambient temperature, and nanocrystalline alloy powders were obtained by subsequent desorption-recombination treatment following mechanical milling.

在氢气氛下机械球磨铸态Nd12Fe82B6(原子比)合金,利用机械力驱动使之发生歧化反应,随后进行真空脱氢-再结合处理,获得纳米晶合金粉末材料。

Nd8Fe86B6 alloy powders were mechanically milled in hydrogen atmosphere, and nanocomposite Nd2Fe14B/a-Fe magnetic material was prepared by mechanically activated disproportionation of Nd-Fe-B alloy and a subsequent desorption-recombination vacuum annealing treatment were experimentally investigated in this paper.

研究了在氢气氛下机械球磨铸态Nd8Fe86B6合金,利用机械力驱动Nd-Fe-B合金发生歧化反应,并随后在一定温度及真空度下进行脱氢-再结合处理,制备纳米晶Nd2Fe14B/a-Fe复相材料。

QUADRUPOLAR HYDROGEN BONDED HYPERBRANCHED POLYMERS AND THEIR COATING MATERIALS

以四重氢键结合的超支化聚合物及其涂层材料

Liquids whose molecules are held together by hydrogen bonds are called associated liquids.

液体的分子通过氢键结合在一起时,称为缔合液体。

Hydrogen Bonding Structure and Property of 5,6-azabenzene-H_2O Complexes

(五、六)氮杂苯-水复合物氢键结构与性质

Synthesis and Crystal Structure of 2D Hydrogen-Bonded Magnesium(Ⅱ) Complex

2D氢键网状Mg(Ⅱ)配合物的合成和晶体结构

The major bond of conjugation in the formation of complex was probably in the hydrogen bonding and the hydrophobic interaction.

在复合物形成中主要的结合键可能是氢键,以及疏水性作用力。

Implication of Hydrogen Bond on the Properties and Structures of Nitrogenous Organic Compound;

氢键对含氮有机化合物性质和结构的影响

Synthesis and Crystal Structure of a Novel 2D Network Copper Complex Constructed Through Hydrogen Bonds Linking Zigzag Chains

氢键联结锯齿链形成的新型二维网状铜配合物的合成及晶体结构

Construction of Supramolecular Networks Based on Coordination and Hydrogen Bonds;

基于配位键和氢键的超分子网络结构

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 structures of the intermediates and the target molecule were confirmed by (superscript 1)H NMR and (superscript 13)C NMR spectra in our experiments.

关键中间体及最终化合物的结构经核磁共振氢谱及碳谱确证。

The neighboring molecules of complex 1 are connected together with intermolecular hydrogen bonds, forming a one-dimensional chain structure.

配合物1分子间通过氢键的相互作用而形成一维链状结构。

Supra-molecular Structure Study on Transitional Metallic Compounds Based on Hydrogen Bonding and Aromatic Stacking;

氢键和芳环堆积构筑的过渡金属配合物超分子体系的结构研究

Studies on the Design and Synthesis of Second Structure Driven by CH…O Hydrogen Bond in Crystal Growth;

晶体生长中基于CH…O弱氢键导向堆积的二级结构的设计与合成

Synthesis of Novel [60] Fullerene Derivatives Containing Hydrogen-Bonding Motifs;

新型含氢键结构单元[60]富勒烯衍生物的合成研究

Synthesis and Crystal Structure of an Organic Super-molecule with 1,1,2,2-tertacetic Acid and Benzimidazole Formed through Hydrogen Bonding and π-π weak Interaction

氢键型有机超分子苯并咪唑-1,1,2,2-四乙酸的合成与晶体结构

Structures and Electron Density Topological Properties of the CH_3SH…HOO Hydrogen Bond Complexes

CH_3SH…HOO开壳型氢键复合物的结构及其电子密度拓扑性质

Molecular Dynamics Simulation on Structure, Hydrogen-Bond and Hydration Properties of Diflunisal Intercalated Layered Double Hydroxides

二氟尼柳/水滑石插层组装结构、氢键及水合特性的分子动力学模拟

Structures and Properties of Halogen Bond and Hydrogen Bond Formed between CH_3SH and HOCl

CH_3SH与HOCl分子间氢键和卤键的结构与性质

下一篇:没有了
上一篇:lava flood
精彩图文
相关推荐
  1. minimum of a function

    精品项目网为您提供函数的最小minimum of a function是什么意思,minimum of a function翻译,minimum of a function例句,minimum of a function用法等有关,minimum of a function单词知识大全供您查询使用!...

    0 条评论 59 2024-05-16 20:04

  2. containers

    精品项目网为您提供容哭containers是什么意思,containers翻译,containers例句,containers用法等有关,containers单词知识大全供您查询使用!...

    0 条评论 59 2024-05-17 07:39

返回顶部小火箭