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首页> 外文期刊>Journal of Light & Visual Environment >Preparation of Eu2+-doped Ca2Si5N8 by Carbothermal Reduction / Nitridation of Spray-pyrolyzed Oxideitride Powder and Its Luminescence Properties
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Preparation of Eu2+-doped Ca2Si5N8 by Carbothermal Reduction / Nitridation of Spray-pyrolyzed Oxideitride Powder and Its Luminescence Properties

机译:碳热还原/硝化喷雾热解氧化物/氮化物粉末的Eu2 +掺杂Ca2Si5N8制备及其发光性能

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References(11) The conditions for the preparation of regular-shaped Eu2+-doped calcium silicon nitride ((Ca0.99Eu0.01)2Si5N8) powder were examined by the carbothermal reduction and nitridation (CRN) of oxideitride powder prepared by ultrasonic spray pyrolysis. Two kinds of silicon sources, i.e., (i) colloidal silica (CS) and (ii) silicon nitride (Si3N4; SN), were used for the spray pyrolysis. Firstly, the solution containing 0.057 mol·m-3 Ca(NO3)2, 0.140 mol·dm-3CS and 5.71 x 10-4 mol·dm-3Eu(NO3)3 was spray-pyrolyzed at 600°C, and the resulting powder was calcined at 800°C for 10 min in air. The single phase but agglomerated particles of (Ca0.99Eu0.01)2Si5N8 were obtained when the CRN (the relative carbon amount to the stoichiometric amount (m): 1.5) of spray-pyrolyzed/calcined oxide powder was conducted at 1300°C for 2 h in nitrogen (N2) atmosphere. Secondly, the solution containing 0.0285 mol·dm-3Ca(NO3)2, 0.070 mol·dm-3SN and 2.855 x 10-4mol·dm-3Eu(NO3)3 (one-half of the solution concentration compared to the case of CS utilization) was spray-pyrolyzed, and the CRN of spray-pyrolyzed oxideitride powder was conducted at 1500°C for 2 h to obtain (Ca0.99Eu0.01)2Si5N8 in N2 atmosphere. The microscopic observation showed that this powder was composed of regular-shaped particles with sizes of approximately 2-3 μm. The excitation and emission peaks of this powder appeared at around 370 and 590 nm, respectively, showing the emission of orange light.
机译:参考文献(11)通过超声喷涂制备的氧化物/氮化物粉末的碳热还原和氮化(CRN),研究了制备规则形掺杂Eu2 +的氮化硅钙((Ca0.99Eu0.01)2Si5N8)粉末的条件。热解。喷雾热解使用两种硅源,即(i)胶体二氧化硅(CS)和(ii)氮化硅(Si3N4; SN)。首先,将含有0.057mol·m-3的Ca(NO 3)2,0.140mol·dm-3CS和5.71×10-4 mol·dm-3Eu(NO 3)3的溶液在600℃下喷雾热解,得到将粉末在空气中于800°C煅烧10分钟。在1300℃下进行喷雾热解/煅烧氧化物粉末的CRN(相对碳量(m):1.5)时,得到(Ca0.99Eu0.01)2Si5N8的单相团聚颗粒。在氮气(N2)气氛中放置2小时。其次,该溶液含有0.0285 mol·dm-3Ca(NO3)2、0.070 mol·dm-3SN和2.855 x 10-4mol·dm-3Eu(NO3)3(与CS相比,溶液浓度的一半)喷雾热解氧化物/氮化物粉末的CRN在1500℃下进行2小时,以在N2气氛中获得(Ca0.99Eu0.01)2Si5N8。显微镜观察表明该粉末由规则形状的颗粒组成,其大小约为2-3μm。该粉末的激发和发射峰分别出现在大约370和590 nm处,显示出橙色光的发射。

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