1)  metal nitride
					
	
					
				
				
	
					
				金属氮化物
				1.
					Five kinds of the latest synthesis methods of metal nitride are reviewed,including the temperature- programmed reaction(TPR),the thermal decomposition,the solid-state metathesis,the electrochemical synthesis and the ball-milling method.
						
						介绍了近年来金属氮化物的5种主要合成方法:程序升温法、热分解法、固态反应法、电化学法和球磨制备法,着重阐述了每种合成方法的研究现状及其优缺点,并对金属氮化物合成方法的发展前景进行了展望,认为开发工艺简单、操作条件温和、氮化产物成本低廉、产物结构易于控制的合成方法是未来发展的必然趋势。
					2.
					Owning to the high hardness, good oxidation resistance and many other excellent properties, transition metal nitride nano-composite and nano-multilayered films can improve performance of cutting tools and extend their life-spans, which would result in promising prospects in industrial application.
						
						过渡族金属氮化物纳米复合膜和多层膜具有高硬度和高温抗氧化性等优良的综合性能,能显著改善切削工具的切削性能和模具的耐磨性能,延长其使用寿命,在现代化工业生产中具有广泛的应用前景。
					
					2)  metal nitrides
					
	
					
				
				
	
					
				金属氮化物
				1.
					Transition metal nitrides and carbides were a class of interstitial compounds with special structure characteristics which decided distinctive catalytic effects.
						
						过渡金属氮化物与碳化物是一类间充性化合物,其结构特点决定其在催化反应上具有独特的催化效果。
					2.
					A synthesis method is propsed to prepare metal nitrides by direct nitridation of metals in static nitrogen atmosphere at high temperature.
						
						提出了在高温和静态氮气氛下利用金属与氮气直接反应制取金属氮化物的合成方法。
					
					3)  metal nitrogen-rich compounds
					
	
					
				
				
	
					
				金属富氮化合物
				1.
					A DFT theoretical study on metal nitrogen-rich compounds N_3MN_3 (M=Be,Mg,Ca);
					
					
						
						
					
						金属富氮化合物N_3MN_3(M=Be,Mg,Ca)的量子化学研究
					
					5)  bimetallic nitride
					
	
					
				
				
	
					
				双金属氮化物
				1.
					With the addition of Co,a new bimetallic nitride phase of Co3MO3N was produced.
					
					
						
						
					
						随着Co的加入,在催化剂中形成了双金属氮化物新相Co3MO3N。
					
					6)  Metal azides
					
	
					
				
				
	
					
				金属叠氮化物
	补充资料:贵金属精密轧制装置(昆明贵金属研究所)
		贵金属精密轧制装置(昆明贵金属研究所)
嫉蘸一’瓜.峨蘸颧翼鑫黝当渊狱贵金属精“轧“装置(昆明贵金属研“所)
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