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1)  1-bromonaphthalene
1-溴代萘
1.
Study of the β-cyclodextrin Inclusion Complexes with 1-bromonaphthaleneand 2-bromonaphthalene in the Presence of Organic Small Moleculesby Room Temperature Phosphorimetry and Fluorimetry;
1-溴代萘、2-溴代萘与β-环糊精间包络差异的研究
2)  bromonaphthalene [,brəumə'næfθəli:n]
1-溴代萘
1.
Room temperature phosphorescence and fluorescence of 1-bromonaphthalene(1-BrN)induced by β-cyclodextrin(β-CD)in presence of phenol and 1-butanol(n-Bu)with different pH values was studied.
含有正丁醇 (n Bu)的 β 环糊精 ( β CD)溶液中 ,加入小分子有机物苯酚 (Phenol)后 ,1-溴代萘 ( 1 BrN)因 1 BrN/ β CD/n Bu/phenol四元包络物的形成而产生强的室温磷光(RTP) 。
2.
Spectral properties on room temperature phosphorescence (RTP) of 1-bromonaphthalene (1-BrN) induced by phenol and 1-butanol (n-Bu) were studied in aqueous β-cyclodextrin (β-CD) solution.
在含有正丁醇 (n- Bu)的β-环糊精 (β- CD)溶液中 ,加入有机小分子苯酚 (Ph)可诱导 1-溴代萘(1- Br N)发射强的室温磷光 (RTP) 。
3)  1-bromonaphthalene
1-溴萘
1.
Room-temperature Phosphorescence of 1-Bromonaphthalene Induced by Straight-line Alcohols in the Presence of β-Cyclodextrin;
β-环糊精存在下直链脂肪醇诱导1-溴萘室温磷光光谱研究
2.
β-Cyclodextrin Induced Room Temperature Phosphorescence From 1-Bromonaphthalene in the Presence of Naphthalene and 1-Butanol;
萘和正丁醇存在下β-环糊精诱导1-溴萘室温磷光的研究
4)  alpha-Bromonaphthalene
1-溴化萘
5)  α-bromonaphthalene
α-溴代萘
1.
Non-Protected Fluid Room Temperature Phosphorescence of α-Bromonaphthalene;
α-溴代萘的无保护性介质流体室温燐光特性
2.
Studies on Effects of External Magnetic Field on the Formation Rate of Complex of α-Bromonaphthalene/β-Cycoldextrin and Different Aliphatic Alcohols by Kinetic Room-temperature Phosphorimetry;
动力学室温磷光法研究外磁场效应对不同脂肪醇/α-溴代萘/β-环糊精包络物生成速度的影响
3.
Room Temperature Phosphorescence Induced by Cyclodextrin of Carbaryl、α-Bromonaphthalene in the Presence of Small Organic Molecule and Its Application;
有机小分子存在下,环糊精诱导西维因、α-溴代萘室温磷光及其分析应用
6)  2-Bromo-naphthalene
2-溴代萘
补充资料:1-溴代萘
分子式:C10H7Br
分子量:207.07
CAS号:90-11-9

性质:无色或微黄色液体,蒸馏后能保持无色,但久置后变黑色。熔点-1℃,沸点281℃,146-149℃(2.13kPa),相对密度1.489(20/4℃),折射率1.6576,闪点110℃。能与醇、醚、四氯化碳相混溶,不溶于水。能随水蒸汽挥发。

制备方法:由萘与溴反应而得。在反应锅中加入四氯化碳和萘,搅拌加热,在45℃慢慢加入溴素。加完后于70-80℃保温反应3-4h。蒸馏回收四氯化碳,将反应物洗涤、减压蒸馏、再洗涤、过滤、干燥而得成品。

用途:有机合成原料,分析试剂,用作冷冻剂以及分子量大的物质的溶剂。也是干燥物品的热载体。亦可用于折射率测定。

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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