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Thickness-dependent exciton relaxation dynamics of few-layer rhenium diselenide
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作者 霍唱福 云田田 +6 位作者 鄢小卿 刘泽文 赵欣 许文雄 崔乾楠 刘智波 田建国 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第6期522-528,共7页
Rhenium diselenide(ReSe_(2))has gathered much attention due to its low symmetry of lattice structure,which makes it possess in-plane anisotropic optical,electrical as well as excitonic properties and further enables R... Rhenium diselenide(ReSe_(2))has gathered much attention due to its low symmetry of lattice structure,which makes it possess in-plane anisotropic optical,electrical as well as excitonic properties and further enables ReSe_(2)have an important application in optoelectronic devices.Here,we report the thickness-dependent exciton relaxation dynamics of mechanically exfoliated few-layer ReSe_(2)flakes by using time-resolved pump–probe transient transmission spectroscopies.The results reveal two thickness-dependent relaxation processes of the excitons.The fast one correlates with the exciton formation(i.e.,the conversion of hot carriers to excitons),while the slow one is attributed to the exciton recombination dominated by defect-assisted exciton trapping besides photon emission channel.The decrease of scattering probability caused by defects leads to the increase of fast lifetime with thickness,and the increase of slow lifetime with thickness is related to the trap-mediated exciton depopulation induced by surface defects.Polarization-dependent transient spectroscopy indicates the isotropic exciton dynamics in the two-dimensional(2D)plane.These results are insightful for better understanding of excitonic dynamics of ReSe_(2)materials and its application in future optoelectronic and electronic devices. 展开更多
关键词 rhenium diselenide pump–probe spectroscopy carrier dynamics EXCITON
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隔膜对锂-铜电池短路时间的影响
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作者 向甜琦 鲍晋珍 +6 位作者 闫晓清 庄志 董畅 谢鹏程 刘凤泉 周建军 李林 《高分子学报》 SCIE CAS CSCD 北大核心 2023年第5期655-664,共10页
隔膜在锂离子电池中起着防止正负极直接短路和提供离子传输通道的作用,决定着电池的安全性能.在本文中,我们利用锂-铜电池的短路时间建立了一种评价隔膜安全性能的方法.通过对电池短路时间的研究发现,对于同一种类型的隔膜,短路时间与... 隔膜在锂离子电池中起着防止正负极直接短路和提供离子传输通道的作用,决定着电池的安全性能.在本文中,我们利用锂-铜电池的短路时间建立了一种评价隔膜安全性能的方法.通过对电池短路时间的研究发现,对于同一种类型的隔膜,短路时间与隔膜厚度和内阻的线性相关度较高,隔膜厚度和内阻的增加均能延长电池的短路时间.同一厚度不同类型的隔膜,其电池的短路时间与隔膜自身的微孔结构相关.电池的短路时间与隔膜的穿刺强度之间的线性相关程度较低,结合电池短路后隔膜表面枝晶形貌的观察,我们推测枝晶是沿隔膜的孔道持续生长最终穿透隔膜,而非刺穿隔膜导致的电池短路.利用不同厚度的隔膜组装锂硫电池,发现循环寿命与隔膜厚度具有显著线性相关性,验证了测试方法在实际电池使用中的有效性.同时,研究也证实,利用功能隔膜调控锂的沉积行为、抑制锂的枝晶沉积能极大延长电池的短路时间,提升电池的安全性能,这为新型高安全性复合隔膜及电池的研究和设计提供了新的思路和理论依据. 展开更多
关键词 锂金属电池 短路时间 功能复合隔膜 安全性
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Sign of differential reflection and transmission in pump-probe spectroscopy of graphene on dielectric substrate
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作者 Chengmin Gao Xin Zhao +5 位作者 Jun Yao xiao-qing yan Xiang-Tian Kong Yongsheng Chen Zhi-Bo Liu Jian-Guo Tian 《Photonics Research》 SCIE EI 2015年第2期1-9,共9页
Pump-probe differential reflection and transmission spectroscopy is a very effective tool to study the nonequilibrium carrier dynamics of graphene. The reported sign of differential reflection from graphene is not exp... Pump-probe differential reflection and transmission spectroscopy is a very effective tool to study the nonequilibrium carrier dynamics of graphene. The reported sign of differential reflection from graphene is not explicitly explained and not consistent. Here, we study the differential reflection and transmission signals of graphene on a dielectric substrate. The results reveal the sign of differential reflection changes with the incident direction of the probe beam with respect to the substrate. The obtained theory can be applied to predict the differential signals of other two-dimensional materials placed on various dielectric substrates. 展开更多
关键词 Sign of differential reflection and transmission in pump-probe spectroscopy of graphene on dielectric substrate Case
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