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1.
An atom other than carbon in the structure of a heterocyclic compound.
杂环原子杂环化合物结构中的除了碳之外的原子
2.
The Study of Synthesis and Molecular Recognition of Macrocyclic Coordination Compound;
含氮杂原子大环化合物的合成及分子识别研究
3.
Reaction and Synthesis of Heterocycles or Heteroatom Compounds in Ionic Liquids;
离子液体介质中杂环、杂原子化合物的反应及合成研究
4.
Principle of Design Method for Electronic Warfare Tactics in Complicated Information Environment
复杂信息环境下电子战战法设计方法的原理
5.
Synthesis and Application of Precursor of N-Substituted Planar Chiral N-Heterocyclic Carbene
氮杂原子取代的面手性氮杂环卡宾前体的合成及催化应用研究
6.
Study on Syntheses and Structures of Organotin Heteroatom Carboxylates and Heterocycle Mercaptan with N Atoms
含氮杂原子的羧酸及氮杂环硫醇有机锡化合物的合成及结构研究
7.
Purine: Any of a class of heterocyclic compounds with a two-ring structure composed of carbon and nitrogen atoms.
嘌呤: 嘌呤是对由碳、氮原子组成的双环结构的杂环化合物的统称。
8.
Pyrimidine: Any of a class of heterocyclic compounds with a ring structure of four carbon and two nitrogen atoms.
嘧啶:具有环状结构(由4个碳原子和2个氮原子组成)的一类杂环化合物。
9.
"Pyridine: Any of a class of aromatic compounds with a six-member aromatic ring composed of five carbon atoms and one nitrogen atom, making it a heterocyclic compound."
啶:带六元芳香环(由5个碳原子和一个氮原子组成)的芳香族化合物的统称,是一种杂环化合物。
10.
Synthesis of N-containing 5-ansa-Zirconocene Dichloride Complexes
含氮杂原子桥联双环戊二烯基二氯化锆配合物的合成
11.
Atomsitic Simulation of Doped LaMnO_3 and La_2CuO_4;
掺杂LaMnO_3和La_2CuO_4的原子模拟
12.
circumsporozoite protein
[疟原虫]环子孢子蛋白
13.
A Study on Structure and Properties of Poly (Phthalazinon Ether Sulfone Ketonl)/ Nylon 6 in Situ Composite via the Anionic Ring-Opening Polymerization;
阴离子开环原位聚合二氮杂萘酮聚醚砜酮/尼龙6复合材料及其结构与性能研究
14.
Research of N-butyl Methacrylate by ATRP with N-heterocyclic Initiator;
氮杂环引发剂引发甲基丙烯酸正丁酯原子转移自由基聚合反应研究
15.
The larger the number of heteroatoms, the more highly oxidized the molecule.
杂原子数越多,分子被氧化的程度越高。
16.
Aluminophosphate Molecular Sieve Heteroatom Research Synthesis
杂原子磷酸铝分子筛合成的研究进展
17.
Synthesis of MCM-41 mesoporous molecular sieves containing heteroatoms and their catalytic activity
杂原子MCM-41分子筛的合成和催化性能
18.
Triatomic and larger molecules have more complex energy-level diagrams.
三原子分子和更大的分子的能级图比较复杂。