hydrogen acceptor
hydrogen acceptor是什么意思、hydrogen acceptor怎么读
hydrogen acceptor 基本解释
n. 氢受体
重点词汇
hydrogen acceptor 双语例句
- 1、
The Relation between the Ratio of Hydrogen Bonding Acceptor Number to Donor Number and Solute Concentration
糖苷键[合],苷键[合]氢键受体与供体数目比与溶质浓度的关系 - 2、
During alcoholic fermentation acetaldehyde acts as a hydrogen acceptor instead of oxygen.
在这个过程中乙醛取代了氧作为氢的受体。 - 3、
Peroxidase An enzyme that catalyzes the oxidation of certain organic molecules using hydrogen peroxide as electron acceptor.
过氧化物酶:指利用过氧化氢作为电子受体促进某特定有机分子的氧化作用的酶。 - 4、
A strongly hydrophilic hydrogen-bonding adsorbent-macroporous cross linked poly ( N Vinyl-Acetamide), which contains both hydrogen acceptor and donator-was synthesized.
合成了既含氢键供体,又含氢键受体的强亲水性氢键吸附剂聚(N乙烯基乙酰胺)。 - 5、
In p type doping ( mostly Mg doped), hydrogen compensates the acceptor magnesium, thus making Mg doped GaN semi insulator.
p型掺杂(主要是掺Mg)方面,H补偿受主Mg,使掺Mg的GaN成为半绝缘。 - 6、
The retention of solutes on the phases is dominated by the solute excess molar ( refraction) and hydrogen bond acidity instead of the solute size and hydrogen bond acceptor basicity.
控制溶质保留的两个主要因素不是溶质的体积和氢键受体碱性,而是溶质的过剩摩尔折光率和氢键给体酸性。 - 7、
It is confirmed that the existence of the hydrogen bond acceptor atoms and donor atoms can promotes the stability of the corresponding coordination compounds.
证明配体中氢键受体和供体原子的存在促进了配合物的结构稳定性。 - 8、
The four dimensional parameters including dispersion, polarity, electron acceptor and electron donor parameters are related to dispersion, polar, and hydrogen bonding ( acceptor and donor) interactions.
这4维参数包括色散参数、极性参数、得电子参数和供电子参数,它们分别对应于基团的色散、极性和氢键(得电子和供电子)作用。 - 9、
By population analysis the hydrogen bonding is found between the electron donor O atom and the electron acceptor H atom.
通过电子布居分析,发现在电子给予体O原子和电子接受体H原子间存在氢键。 - 10、
The activity of nadp~+ as a hydrogen acceptor in rabbit muscle glyceraldehyde-3-phosphate dehydrogenase
NADP~+在兔肌甘油醛3-磷酸脱氢酶中作为氢受体的活力 - 11、
In the last decades, intermolecular hydrogen bonding, as a site-specific interaction between hydrogen donor and acceptor molecules, has gained wide attention because of its significance in physical, chemical and biological processes.
由于对很多物理、化学、生物过程起着重要作用,位点专一的分子间氢键相互作用在过去十年间引起了人们广泛的关注。 - 12、
Fluorine is not a good hydrogen bond acceptor.
氟原子不是一个好的氢键受体。 - 13、
The yield of o-phenylphenol reached 83% by liquid-solid catalytic dehydrogenation method when Pt-Na2CO3/ C catalyst was used without any hydrogen acceptor.
通过对液固催化脱氢法进行研究,发现采用Pt-Na2CO3/C催化剂,不添加任何其他氢接受体辅助脱氢,邻苯基苯酚收率可达83%左右。

