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111.
微波辐射磷钨酸催化合成环己酮1,2-丙二醇缩酮 总被引:1,自引:0,他引:1
在微波辐射下,以磷钨酸为催化剂,对以环己酮和1,2-丙二醇为原料合成环己酮1,2-丙二醇缩酮进行了研究.较系统的研究了反应物投料比、微波辐射功率、微波辐射时间、催化剂用量、带水剂用量诸因素对产品收率的影响.最佳反应条件为:环己酮为0.2mol,n(环己酮):n(1,2-丙二醇)=1.0:1.5,微波辐射功率600W,辐射时间16min,催化剂用量为反应物总质量的0.5%,带水剂(环己烷)15mL.在此条件下,环己酮1,2-丙二醇缩酮的产率可达82.0%. 相似文献
112.
Gustavo Avolio Dominique M. M.‐P. Schreurs Antonio Raffo Giovanni Crupi Alina Caddemi Giorgio Vannini B. Nauwelaers 《国际射频与微波计算机辅助工程杂志》2014,24(1):109-116
This work presents a straightforward approach aimed at modeling the dynamic I–V characteristics of microwave active solid‐state devices. The drain‐source current generator represents the most significant source of nonlinearity in a transistor and, therefore, its correct modeling is fundamental to predict accurately the current and voltage waveforms under large‐signal operation. The proposed approach relies on using a small set of low‐frequency time‐domain waveform measurements combined with numerical optimization‐based estimation of the nonlinear model parameters. The procedure is applied to a gallium nitride HEMT and silicon FinFET. The effectiveness of the modeling procedure in terms of prediction accuracy and generalization capability is demonstrated by validation of the extracted models under operating conditions different than the ones used for the parameters estimation. Good agreement between measurements and model simulations is achieved for both technologies and in both low‐ and high‐frequency range. © 2013 Wiley Periodicals, Inc. Int J RF and Microwave CAE 24:109–116, 2014. 相似文献
113.
Material characterization has become increasingly important with the adoption of simulation‐based workflow for microwave electronics design. This article focuses on the characterization of printable electronics materials using transmission‐line measurements and demonstrates the capability of the multiline characterization method to separate dielectric and conductor losses when line geometry and material properties vary between the lines. The effects of multiline algorithm, number of line standards, and methods for selecting optimal line lengths are demonstrated. Consistent characterization results are obtained from inkjet‐printed transmission lines on two different substrate materials. In addition, local conductor thickness variations are demonstrated as an effective way to decrease losses. Finally, the simulation‐based procedure for determining the material properties is outlined and applied to printable electronics characterization. © 2013 Wiley Periodicals, Inc. Int J RF and Microwave CAE 24:177–183, 2014. 相似文献
114.
The simulation and experimental studies of an aperture‐coupled wideband dual segment rectangular dielectric resonator antenna with metamaterial for C‐band applications are presented in this paper. The antenna consists of Alumina (Al2O3) ceramic as upper segment and Teflon as lower segment. The combination of circular‐shaped coplanar split‐ring resonator and conducting strip has been used as metamaterial superstrate. With the use of metamaterial superstrate, the bandwidth of the antenna is increased by 48% through simulation and 22% experimentally. The broadside radiation pattern of the antenna is converted into directive radiation pattern with reduced beamwidth when metamaterial superstrate is used. The peak gain of the antenna is also enhanced by 33% through simulation and 31% experimentally with the use of metamaterial superstrate. © 2014 Wiley Periodicals, Inc. Int J RF and Microwave CAE 24:646–655, 2014. 相似文献
115.
微波辐射对甲苯磺酸催化合成乙酸环己酯 总被引:15,自引:0,他引:15
以冰醋酸和环己醇为原料 ,环已烷为带水剂 ,对甲苯磺酸作催化剂 ,采用微波辐射技术 ,在常压下直接合成乙酸环己酯。最适宜反应条件为 :n(环己醇 )∶n(乙酸 ) =1 5∶1 0 ,对甲苯磺酸用量 0 2 0 g ,带水剂用量 5mL ,微波功率 5 95W ,辐射时间 15min ,产率达 97%以上 相似文献
116.
以3-羟基丙胺和丙烯酸甲酯为起始原料,在微波辅助下进行Michael加成、Dieckmann环合和脱羧反应合成了1-(3-羟丙基)-4-哌啶酮.并对Michael加成、Dieckmann环合和脱羧反应的工艺参数进行了优化,通过核磁共振波谱对目标化合物和中间体的结构进行表征.得到的最优Michael加成工艺条件为:n(3-羟基丙胺):n(丙烯酸甲酯)=1.0:2.4,微波辐射功率为120 W,反应温度40℃,反应时间30 min.在该条件下制备3-[(2-甲氧羰乙基)(3-羟丙基)氨基]丙酸甲酯的收率为92.6%;在微波辐射功率为200 W下,Dieckmann环合反应和脱羧反应分别为20和25 min,以88.5%的收率得到1-(3-羟丙基)-4-哌啶酮;目标产物总收率为82.0%. 相似文献
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118.
The emulsifier‐free emulsion polymerization of methyl methacrylate (MMA) was conducted with microwave irradiation. Superfine and monodisperse poly(methyl methacrylate) (PMMA) microspheres were obtained. Microwave irradiation notably promoted the polymerization reaction. This phenomenon was ascribed to the acceleration of the initiator [potassium persulfate (KPS)] decomposition by microwave irradiation. The experimental results revealed that the apparent activation energy of KPS decomposition decreased from 128.3 to 106.0 kJ/mol with microwave irradiation. The average particle size of the prepared PMMA latex was mainly controlled with the MMA concentration; it increased linearly from 103 to 215 nm when the MMA concentration increased from 0 to 0.3 mol/L and then remained almost constant at MMA concentrations of 0.3–1.0 mol/L. The KPS concentration had no effect on the average particle size, but the particle size dispersity was significantly reduced by a high KPS concentration. With a mixed polymerization phase (water/acetone = 1:3 v/v) or a redox initiation system, PMMA nanoparticles were obtained with an average particle size of 45 or 67 nm, respectively. © 2004 Wiley Periodicals, Inc. J Appl Polym Sci 93: 2815–2820, 2004 相似文献
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