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1)  nitrotoluene ['naitrəu'tɔljui:n]
硝基甲苯
1.
Adsorption of p-nitrotoluene and o-nitrotoluene in water by Silicalite-1 molecular sieve.;
Silicalite-1分子筛吸附水体中对硝基甲苯与邻硝基甲苯
2.
Electrochemical behavior of ortho-,meta-,and para-nitrotoluene in aprotic medium on Pt micro-disk electrode;
质子惰性介质中o,m,p-硝基甲苯在铂微盘电极上的电化学行为
2)  methylnitro-benzene
甲基硝基苯
3)  o-nitrotoluene
邻硝基甲苯
1.
Novel green synthesis of o-nitrobenzaldehyde by oxidation of o-nitrotoluene with metal porphyrins as biomimetic catalysts;
金属卟啉仿生催化氧化邻硝基甲苯绿色合成邻硝基苯甲醛
2.
Novel green synthesis of o-nitrobenzoic acid by oxidation of o-nitrotoluene with substituted iron porphyrins;
取代铁卟啉催化氧化邻硝基甲苯绿色合成邻硝基苯甲酸
3.
Reaction Mechanism of Liquid Phase Autoxidation of O-Nitrotoluene under Strong Base;
碱性条件下氧气液相氧化邻硝基甲苯的机理分析
4)  m-nitrotoluene
间硝基甲苯
1.
Electrochemical behavior of m-nitrotoluene on powder microelectrode of carboxyl modified carbon nanotube;
羧基化多壁碳纳米管粉末微电极对间硝基甲苯的电化学行为
2.
m-Toluidine was prepared by catalytic hydrogenation of m-nitrotoluene under normal pres- sure in the presence of urushibara nickel catalyst.
制备了漆原镍U-Ni-A(S)催化剂,用于间硝基甲苯常压下催化加氢制备间甲苯胺,考察了加氢条件对间硝基甲苯转化率的影响。
3.
The oxidation of m-nitrotoluene with Cr_2O_7~(2-) was also studied.
再以CrO7为氧化剂将间硝基甲苯氧化成间硝基苯甲酸。
5)  p-nitrotoluene
对硝基甲苯
1.
Photoionization Studies on p-Nitrotoluene with Synchrotron Radiation;
硝基甲苯的同步辐射光电离研究
2.
Removal of trace p-nitrotoluene in potable water by O_3/H_2O_2 advanced oxidation process;
O_3/H_2O_2高级氧化工艺去除饮用水中微量对硝基甲苯研究
3.
Assembly of SDS intercalated hydrotalcite and the adsorption of p-nitrotoluene
插层水滑石的组装及对对硝基甲苯的吸附
6)  4-Nitrotoluene
对硝基甲苯
1.
4-Trifluoromethylaniline was synthesized by brominating 4-nitrotoluene, followed by fluorine substitutionand hydrogenation, with a yield of 59.
以对硝基甲苯为原料,经溴化、氟置换、加氢还原得4-三氟甲基苯胺,收率59。
2.
4-Nitrobenzoic acid was prepared in 75% yield by manganese sulfate catalyzed liquid phase oxidation of 4-nitrotoluene with oxygen.
以硫酸锰作催化剂液相条件下用氧气氧化对硝基甲苯,生成对硝基苯甲酸,收率75%。
补充资料:硝基甲苯


硝基甲苯
Nitrotoluenes

xiaojiiiaben硝基甲苯NitrotolueneS见峭基芳,。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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