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超快电荷转移的大尺寸PPD像素器件设计 被引量:2
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作者 顾超 冯鹏 +5 位作者 尹韬 于双铭 窦润江 刘力源 刘剑 吴南健 《半导体光电》 CAS 北大核心 2021年第2期196-200,206,共6页
面向微光环境的高时间分辨成像需求,基于CMOS图像传感器工艺,设计并仿真验证了一种具有三角形状梯度掺杂且浮置扩散区域中置的超快电荷转移大尺寸光电二极管(PPD)像素器件。它通过N埋层掺杂形状和梯度掺杂设计增强光生电荷传输路径的电... 面向微光环境的高时间分辨成像需求,基于CMOS图像传感器工艺,设计并仿真验证了一种具有三角形状梯度掺杂且浮置扩散区域中置的超快电荷转移大尺寸光电二极管(PPD)像素器件。它通过N埋层掺杂形状和梯度掺杂设计增强光生电荷传输路径的电势梯度,加速光生电荷从N埋层感光区域向电荷存储区域的转移。同时通过对传输管沟道的梯度掺杂,减小了沟道反弹电荷的水平,有效提升了光生电荷转移效率。仿真结果表明,三角形枝状的圆形像素器件在30000个电荷的情况下,在电荷转移效率达到99.9%时,电荷转移时间为1ns,同时其反弹电荷水平在1e^(-)以下。该PPD像素器件可用于微光环境下的高时间分辨率成像。 展开更多
关键词 PPD像素器件 大尺寸像素器件 超快电荷转移 高时间分辨率
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Photoinduced intramolecular charge transfer of sodium 4-(N,N-dimethylamino)benzenesulfonate 被引量:1
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作者 林丽榕 江云宝 《Science China Chemistry》 SCIE EI CAS 2000年第3期295-305,共11页
A new dual fluorescent N,N-dimethylaniline derivative, sodium 4-(N,N-dimethylamino)-benzenesulfonate (SDMAS), is reported. In SDMAS, the electron acceptor is linked to the phenyl ring via a sulfur atom at the para-pos... A new dual fluorescent N,N-dimethylaniline derivative, sodium 4-(N,N-dimethylamino)-benzenesulfonate (SDMAS), is reported. In SDMAS, the electron acceptor is linked to the phenyl ring via a sulfur atom at the para-position of the electron donor. It was found that SDMAS emits dual fluorescence only in highly polar solvent water but not in organic solvents such as formamide, methanol and acetonitrile. In organic solvents only a single-band emission atca.360 nm was observed in the short wavelength region. The dual fluorescence of SDMAS in water was found at 365 and 475 nm, respectively. Introduction of organic solvent such as ethanol, acetonitrile, and 1,4-dioxane into aqueous solution of SDMAS leads to blue-shift and quenching of the long-wavelength emission. Measurements of steady-state and picosecond time-resolved fluorescence indicate that the long wavelength fluorescence is emitted from a charge transfer (CT) state that is populated from the locally excited (LE) state, with the latter giving off the short wavelength fluorescence. The fact that a highly polar solvent is required to bring out the dual fluorescence suggests that the CT process of SDMAS has a high activation energy (E a). In supporting this assumption the timeresolved fluorescence measurements give anE a of 15.35 kJ·mol-1. It was assumed that the participation of the sulfur atom d-orbital in the conjugation of sulfonate group with phenyl ring and the strong twisting and inverting of the dimethylamino plane relative to the phenyl ring could be the reasons for the high activation energy. A molecular configuration change upon charge transfer in water was suggested for SDMAS based on the thermodynamic data. SDMAS reported here represents the example of the dual fluorescent amine substituted aromatic sulfonate. 展开更多
关键词 intramolecular charge transfer dual FLUORESCENCE picosecond time-resolved FLUORESCENCE ultra-fast kinetics EXCITED-STATE structural relaxation SODIUM 4-(N N-dimethylamino)benzenesulfonate.
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