1)  osotriazolazimide
					
	
					
				
				
	
					
				接三唑并叠氮
			
					2)  benzotriazole
					[,benzəu,trai'æzəul]
					
	
					
				
				
	
					
				苯并三氮唑
				1.
					Volume Chemistry-Ultraviolet Spectrum Differential Method for Determining the Oxygen Content in Anti-Corrosion Copper Powder with Surface Film Consisting of Benzotriazole;
						
						苯并三氮唑缓蚀铜粉中含氧量的测定
					2.
					Microwave-Accelerated Synthesis of 1-(α-Aminoalkyl)benzotriazoles under Solventless Reaction Conditions on Alumina;
						
						在三氧化二铝表面于无溶剂反应条件下微波促进快速合成1-(α-氨烷基)苯并三氮唑(英文)
					3.
					Study on the effect of oxidizing biocides on the corrosion   inhibiting capabilities of benzotriazole;
						
						氧化型杀生剂对苯并三氮唑缓蚀性能影响的研究
					
					3)  BTA
					
	
					
				
				
	
					
				苯并三氮唑
				1.
					SYNERGISTIC EFFECT OF CARBOXYLIC ACID INHIBITOR WITH BTA;
					
					
						
						
					
						羧酸类铜缓蚀剂与苯并三氮唑在海水中协同效应的研究
					2.
					Corrosion inhibition of BTA and its derivative 4CBTA on   copper electrode in 3% NaCl solution;
						
						苯并三氮唑与4-羧基苯并三氮唑在氯化钠溶液中对铜的缓蚀作用
					3.
					Photoelectrochemical comparison of inhibiting action   of BTA and 5CBTA on copper;
					
					
						
						
					
						苯并三氮唑和5-羧基苯并三氮唑对铜缓蚀作用的光电化学比较
					
					4)  benzotiazole
					
	
					
				
				
	
					
				苯并三氮唑
				1.
					Six novel benzotiazole compounds(3a~3c, 4a~4c) were synthesized and were characterized by ~1H NMR and IR.
						
						设计并合成了6种新的苯并三氮唑类化合物,其结构均经1HNMR和IR确认。
					
					5)  Aizdo-triazoles
					
	
					
				
				
	
					
				三唑叠氮化合物
			
					6)  alkylbenzotriazole
					
	
					
				
				
	
					
				烷基苯并三氮唑
				1.
					To improve nano Cu powder dispersing in lubricant,a dispersant alkylbenzotriazole was synthesized from halohydrocarbon and benzotriazole.
						
						为提高铜纳米颗粒在润滑油中的分散性能,以苯并三氮唑和卤代烃为原料,合成烷基苯并三氮唑分散剂,并通过红外光谱和核磁共振确定化合物的结构;通过沉降试验、流变性能的测试考察了分散剂的烷基链长、分散剂的用量对分散性能的影响,并通过热分析和TEM对分散剂的分散性能做进一步考察。
					补充资料:1-(3-三氟甲基三苯甲基)-1H-1,2,4-三氮唑
		分子式:C22H16F3N3
分子量:379.38
CAS号:31251-03-3
性质:
		
		分子量:379.38
CAS号:31251-03-3
性质:
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
	参考词条