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极化子效应对ZnS/CdSe量子点三阶极化率的影响 被引量:3
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作者 陈知红 王军延 方天红 《发光学报》 EI CAS CSCD 北大核心 2009年第4期535-540,共6页
在有效质量近似下,利用量子力学的密度矩阵理论,采用无限深势阱模型,从理论上计算了考虑极化子效应后在导带子带间跃迁时ZnS/CdSe柱型核壳结构量子点二次电光效应(QEOE)和电吸收过程(EA)的三阶极化率。通过数值计算,分析了电子-LO声子... 在有效质量近似下,利用量子力学的密度矩阵理论,采用无限深势阱模型,从理论上计算了考虑极化子效应后在导带子带间跃迁时ZnS/CdSe柱型核壳结构量子点二次电光效应(QEOE)和电吸收过程(EA)的三阶极化率。通过数值计算,分析了电子-LO声子和电子-IO声子相互作用对ZnS/CdSe柱型核壳结构量子点二次电光效应和电吸收过程的三阶极化率的影响。结果表明,极化子效应对二次电光效应的三阶极化率χQEDE(3)和电吸收过程的三阶极化率χE(3A)都有很大影响,并且影响的大小与量子点的尺寸大小有关。 展开更多
关键词 非线性光学 三阶极化率 极化子效应 二次光效应 电吸收过程
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Anomalous self-optimization of sulfate ions for boosted oxygen evolution reaction 被引量:1
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作者 Dengfeng Cao Oyawale Adetunji Moses +16 位作者 Beibei Sheng Shuangming Chen Haibin Pan Lihui Wu Hongwei Shou Wenjie Xu Dongdong Li Lirong Zheng Shengqi Chu Chuansheng Hu Daobin Liu Shiqiang Wei Xusheng Zheng Zeming Qi Xiaojun Wu Jing Zhang Li Song 《Science Bulletin》 SCIE EI CSCD 2021年第6期553-561,M0003,共10页
Broadly,the oxygen evolution reaction(OER)has been deeply understood as a significant part of energy conversion and storage.Nevertheless,the anions in the OER catalysts have been neglected for various reasons such as ... Broadly,the oxygen evolution reaction(OER)has been deeply understood as a significant part of energy conversion and storage.Nevertheless,the anions in the OER catalysts have been neglected for various reasons such as inactive sites,dissolution,and oxidation,amongst others.Herein,we applied a model catalyst s-Ni(OH)2 to track the anionic behavior in the catalyst during the electrochemical process to fill this gap.The advanced operando synchrotron radiation Fourier transform infrared(SR-FTIR)spectroscopy,synchrotron radiation photoelectron spectroscopy(SRPES)depth detection and differential X-ray absorption fine structure(D-XAFS)spectrum jointly point out that some oxidized sulfur species(SO_(4)^(2-))will selfoptimize new Ni–S bonds during OER process.Such amazing anionic self-optimization(ASO)behavior has never been observed in the OER process.Subsequently,the optimization-derived component shows a significantly improved electrocatalytic performance(activity,stability,etc.)compared to reference catalyst Ni(OH)_(2).Theoretical calculation further suggests that the ASO process indeed derives a thermodynamically stable structure of the OER catalyst,and then gives its superb catalytic performance by optimizing the thermodynamic and kinetic processes in the OER,respectively.This work demonstrates the vital role of anions in the electrochemical process,which will open up new perspectives for understanding OER and provide some new ideas in related fields(especially catalysis and chemistry). 展开更多
关键词 Oxygen evolution reaction(OER) Operando synchrotron radiation Fourier transform infrared(SR-FTIR)spectroscopy Synchrotron radiation photoelectron spectroscopy(SRPES)depth detection Differential X-ray absorption fine structure(D-XAFS)spectrum Anionic self-optimization(ASO)
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