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Ultrasonic cavitation-enabled microfluidic approach toward the continuous synthesis of cesium lead halide perovskite nanocrystals 被引量:1
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作者 Mingzhi Li Zhikai Liu +4 位作者 Wang Yao Chao Xu yangping yu Mei Yang Guangwen Chen 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第7期32-41,共10页
Ligand assisted reprecipitation(LARP)is a widely used method for cesium lead halide perovskite nanocrystals(NCs)synthesis.Nevertheless,the ultrafast kinetics of LARP,as well as the inefficient transport properties and... Ligand assisted reprecipitation(LARP)is a widely used method for cesium lead halide perovskite nanocrystals(NCs)synthesis.Nevertheless,the ultrafast kinetics of LARP,as well as the inefficient transport properties and discontinuity of batch reactors,challenge the particle size control and experimental repeatability.To address these issues,an ultrasonic cavitation-enabled microfluidic approach was developed to achieve the continuous synthesis of cesium lead halide perovskite via LARP.It was found that the mixing between the good solvent and antisolvent in the microchannel was greatly enhanced by intensive ultrasonic cavitation.The mixing time could be reduced to below 10 ms under the irradiation of 35 W ultrasound.By modulating the mixing degree,LARP was proved to be a mixing-sensitive process.The effects of ultrasonic power,ultrasonic treatment time,total flow rate,water additive,and reprecipitation temperature on the synthesis of CsPbBr_(3) NCs were systematically investigated.As compared to CsPbBr_(3) NCs synthesized in the batch reactor,the sample synthesized via the ultrasonic cavitation-enabled microfluidic approach possessed stronger photoluminescence intensity and better repeatability.Moreover,the ultrasonic cavitation-enabled microfluidic approach could also realize the continuous synthesis of cesium lead halide perovskite NCs with different halide compositions to cover a wide visible spectrum(426-661 nm).The ultrasonic cavitation-enabled microfluidic approach paved the way for the large-scale of high-quality cesium lead halide perovskite NCs. 展开更多
关键词 MICROREACTOR Ultrasound MIXING CsPbBr_(3)nanocrystals Synthesis
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微反应器内Stöber法可控制备SiO_(2)微球 被引量:1
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作者 余杨屏 杨梅 +1 位作者 李明芝 陈光文 《过程工程学报》 CAS CSCD 北大核心 2023年第6期908-917,共10页
采用微反应器与间歇反应器串联策略,实现了反应物料的快速混合及陈化时间的灵活调变,基于St?ber法可控合成了SiO_(2)微球。通过X射线粉末衍射(XRD)、傅里叶变换红外光谱(FT-IR)、透射电子显微镜(TEM)对样品的物相和形貌进行了表征。结... 采用微反应器与间歇反应器串联策略,实现了反应物料的快速混合及陈化时间的灵活调变,基于St?ber法可控合成了SiO_(2)微球。通过X射线粉末衍射(XRD)、傅里叶变换红外光谱(FT-IR)、透射电子显微镜(TEM)对样品的物相和形貌进行了表征。结果表明,SiO_(2)微球的平均粒径及粒径分布取决于TEOS水解反应及硅酸盐单体缩聚反应间的竞争,同时还受反应前期物料的混合速率的显著影响。当陈化温度从25℃增高至75℃,SiO_(2)微球平均粒径从472 nm减小至200 nm,单分散性变化不大。当氨水浓度从0.8 mol/L增加至5.6 mol/L时,SiO_(2)微球平均粒径从34 nm增大至261 nm,单分散性变好。当水浓度增加至35.6 mol/L或TEOS浓度增加至1.0 mol/L时,溶液中发生多次成核或持续成核现象,使得SiO_(2)微球的单分散性急剧变差。提高雷诺数或缩小通道内径有利于获得单分散SiO_(2)微球。 展开更多
关键词 微反应器 SiO_(2)微球 Stober法 平均粒径 单分散性
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