羟基化
- hydroxylate;hydroxylation
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OH作用下的水杨酸羟基化作用。
And reduced hydroxylation of salicylate at . OH condition .
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Hβ沸石修饰的复合氧化物对苯酚羟基化反应的催化作用
The catalysis of composite oxides modified by H β zeolite on phenol hydroxylation
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甾体微生物转化C(11)β-羟基化的研究进展
Progress of study on C_ ( 11 )β - hydroxylation of steroid by microbial transformation
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黑根霉催化甾体C(11)α-羟基化反应的研究
Studies on the Reaction of Steroid C_ ( 11 )α - hydroxylation by Rhizopus Nigricans
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α-羟基化吡咯烷亚硝胺代谢及形成DNA加合物反应机理的理论研究
Theoretical Study of the Reaction Mechanism for the Formation of DNA Adducts by α - Hydroxy-nitrosopyrrolidine
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Fe(OH)3催化苯酚羟基化反应
Hydroxylation of Phenol with Hydrogen Peroxide Catalyzed by Fe ( OH ) _3
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芳环羟基化荧光法检测类Fenton反应产生的·OH
Fluorimetry Assay of Hydroxyl Radical by Fenton-Like Reaction-Aromatic Hydroxylation System
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译后几丁酶前体切除N-端信号肽→脯氨酸羟基化→切除C-端信号肽而成为成熟蛋白;
Chitinase precursors become matured proteins by removal of N signal peptide , hydroxylation of proline and removal of C signal peptide .
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Fe-Mg-O/γ-Al2O3对苯酚羟基化制苯二酚催化作用的研究
Studies on Fe-Mg-O / γ - Al_2O_3 catalyzing phenol hydroxylation for preparing diphenols
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羟基化SBS嵌段聚合物模板制备银纳米粒子
Preparation of silver nanoparticles using hydroxylated SBS block copolymer as template
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探讨了界面微结构对复合材料界面性能的影响。针对CF/聚酰亚胺(PI)复合材料的界面自组装进行了初步探索,选用羟基化表面/有机硅烷衍生物的自组装体系。
The effect of self-assembly films on the interfacial properties of epoxy composites was discussed .
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TS-1分子筛催化苯羟基化反应
Study on hydroxylation of benzene with hydrogen peroxide catalyzed by titanium silicalite 1
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高Cu含量MCM-41在苯直接羟基化反应中的催化性能
Catalytic Performance of Cu-MCM-41 with High Copper Content for the Direct Hydroxylation of Benzene to Phenol
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运用XRD、FF-IR、UV-Vis和TEM等手段对分子筛进行表征,并考察了它的苯酚羟基化反应性能。
XRD , FT-IR , UV-Vis , TEM and phenol hydroxylation reaction have been used to study nano-TS-1 samples .
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Ti-SiPentasif型杂原子分子筛的气固相同晶取代法制备及其羟基化性能Ⅰ.母体Na~+含量的影响
Preparation of Ti-Si pentasil molecular sieves by gas-solid isomorphous replacement and their hydroxylation properties ⅰ . effect of the na  ̄ + amount of precursor
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高等植物中光周期对GA生物合成的调节主要是在20氧化和/或3β羟基化步骤。
GA 20 _oxidation and / or 3 β _hydroxylation are the main steps controled by photoperiod in GA biosynthesis in higher plants .
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TS-1分子筛对固定床中苯酚羟基化反应的催化性能
Catalytic Performance of Titanium Silicalite-1 for Hydroxylation of Phenol in Fixed-Bed Reactor
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近年来,有机氧化合成领域出现了一些新的氧化方法:在分子筛催化剂作用下,以N2O作羟基化剂,直接将苯气相氧化为苯酚;
In recent years , some new oxidation methods appear in organic oxidation synthesis field .
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TS-1分子筛合成与苯羟基化反应性能考察
Synthesis of Zeolite TS-1 and Its Catalysis Properties in Hydroxylation of Benzene to Phenol
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在TS-1和H2O2催化氧化体系应用的有机物的氧化反应中,苯酚羟基化制苯二酚以及环己酮氨氧化制环己酮肟已实现工业化,替代了传统工艺,实现了清洁生产。
The hydroxylation of phenol and the ammoxidation of cyclohexanone using TS-1 as the catalyst , as clean manufacture methods , have been industrialized .
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水热合成条件对TS-1分子筛苯酚羟基化反应性能的影响
The Effects of Reaction Conditions in the Hydrothermal Process on the Catalytic Activity of TS-1
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Fe-Cu催化剂催化苯酚羟基化的反应动力学研究
The kinetics research of phenol hydroxylation on Fe - Cu catalyst
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结合N、O杂原子化合物对苯羟基化的促进作用,研究胺的α-H在苯氧化过程中的作用。
The effect of α - H in the amine on the process of benzene oxidation was studied combined with the promoted effect of heteroatom compounds including N or O on benzene hydroxylation . 7 .
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Bi2Mo3O(12)在苯酚-过氧化氢羟基化反应中的催化性能
Catalytic Performance of Bi_2Mo_3O_ ( 12 ) for Hydroxylation of Phenol with Hydrogen Peroxide
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viagra原体及羟基化代谢物的检出时限分别为24小时和36小时。
The testable time for Viagra and its metabolite were 24 h and 36 h.
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载体表面羟基化及其固载AlCl3催化性质的研究
Study on Surface Hydroxylation of Support and Performance of the Immobilized AlCl_3 Catalyst
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表面富锡MCM-41分子筛的表面金属有机化学制备及其对苯酚羟基化催化反应性能研究
Preparation of MCM-41 Richened Tin on the Surface by Surface Organometallic Chemistry and its Catalytic Performance for Hydroxylation of Phenol
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建立了人体尿液中viagra及其代谢产物的HPLC、LCMS检测方法,确认了志愿受试者服用viagra的尿液中的代谢产物,并对viagra原体及其羟基化代谢物在尿液中的消除进行了研究。
Method for the determination of Viagra and its metabolites in human urine by HPLC and LC / MS / MS were established .
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金属卟啉催化下环己烷羟基化反应中的Hammett关系
Hammett Relationship in Cyclohexane Hydroxylation Catalyzed by Metalloporphyrins
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介绍了以N2O、O2:以及H2O2为氧化剂苯直接羟基化制备苯酚的技术新进展,并提出了今后的发展前景。
The new progress in technologies on direct hydroxylation of benzene to phenol , which respectively use N_2O 、 O_2 and H_2O_2 as oxidants , are introduced . Its development prospects are put forward .