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Sum Frequency Generation Vibrational Spectra of Perovskite Nanocrystals at the Single-Nanocrystal and Ensemble Levels 被引量:1
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作者 Renlong Zhu Quanbing Pei +2 位作者 Junjun Tan Xiaoxuan Zheng Shuji Ye 《Chinese Journal of Chemical Physics》 SCIE EI CAS CSCD 2022年第5期738-746,I0001-I0003,I0011,共13页
Determination of molecular structures of organicinorganic hybrid perovskite(OIHP)nanocrystals at the single-nanocrystal and ensemble levels is essential to understanding the mechanisms responsible for their size-depen... Determination of molecular structures of organicinorganic hybrid perovskite(OIHP)nanocrystals at the single-nanocrystal and ensemble levels is essential to understanding the mechanisms responsible for their size-dependent optoelectronic properties and the nanocrystal assembling process,but its detection is still a bit challenging.In this study,we demonstrate that femtosecond sum frequency generation(SFG)vibrational spectroscopy can provide a highly sensitive tool for probing the molecular structures of nanocrystals with a size comparable to the Bohr diameter(∼10 nm)at the single-nanocrystal level.The SFG signals are monitored using the spectral features of the phenyl group in(RMBA)PbBr_(3) and(R-MBA)_(2)PbI_(4) nanocrystals(MBA:methyl-benzyl-ammonium).It is found that the SFG spectra exhibit a strong resonant peak at 3067±3 cm^(−1)(ν2 mode)and a weak shoulder peak at 3045±4 cm^(−1)(ν_(7a) mode)at the ensemble level,whereas a peak of theν2 mode and a peak at 3025±3 cm^(−1)(ν20b mode)at the single-nanocrystal level.The nanocrystals at the single-nanocrystal level tend to lie down on the surface,but stand up as the ensemble number and the averaged sizes increase.This finding may provide valuable information on the structural origins for size-dependent photo-physical properties and photoluminescence blinking dynamics in nanocrystals. 展开更多
关键词 PEROVSKITE Single nanocrystal Sum frequency generation vibrational spectroscopy Size-dependent property
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阈下激励与噪声联合作用下肝细胞系统的内钙时空随机共振问题 被引量:3
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作者 王宝华 陆启韶 吕淑娟 《物理学报》 SCIE EI CAS CSCD 北大核心 2009年第11期7458-7465,共8页
研究阈下周期信号激励对耦合肝细胞系统内钙离子浓度([Ca2+])的时空随机共振性质的影响.当阈下激励的频率等于确定性系统在Hopf分岔点附近的频率时,它就会极大地提高随机耦合系统内发生[Ca2+]喷发的细胞的比例,通过对喷发比的自相关函... 研究阈下周期信号激励对耦合肝细胞系统内钙离子浓度([Ca2+])的时空随机共振性质的影响.当阈下激励的频率等于确定性系统在Hopf分岔点附近的频率时,它就会极大地提高随机耦合系统内发生[Ca2+]喷发的细胞的比例,通过对喷发比的自相关函数计算得知阈下激励增强了系统在高斯白噪声作用下[Ca2+]的时间共振性.通过数值模拟得知,对于不同耦合强度,都存在最优噪声强度使得随机系统内[Ca2+]时间共振达到最佳,并且随着细胞间耦合强度的增加,使得[Ca2+]共振达到最好的噪声强度也在逐渐增加.尽管阈下激励加强了[Ca2+]的时间共振,但通过对系统的空间傅里叶变换函数的分析,得知阈下激励会提高系统对噪声的敏感度,降低系统的空间共振性,从而破坏了中等噪声强度诱发的细胞间规则环形钙波. 展开更多
关键词 钙振动 噪声 阈下激励 随机共振
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