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俄乌冲突中电磁频谱应用分析
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作者 杨蔚 高祺 +4 位作者 王渊 李欣童 方维海 杨佳敏 陈迪 《航天电子对抗》 2023年第3期1-4,20,共5页
近年来电磁频谱空间作为战场信息获取、传输的重要载体,对未来战场塑造态势、掌握信息优势起着越来越重要的作用。首先讲述电磁频谱应用对俄乌战局的影响;其次针对俄乌战争中热点事件,从战法、系统和技术三个维度分析电磁频谱应用的典... 近年来电磁频谱空间作为战场信息获取、传输的重要载体,对未来战场塑造态势、掌握信息优势起着越来越重要的作用。首先讲述电磁频谱应用对俄乌战局的影响;其次针对俄乌战争中热点事件,从战法、系统和技术三个维度分析电磁频谱应用的典型手段;最后结合发展趋势和现状,对电磁频谱应用未来发展进行展望分析。 展开更多
关键词 俄乌冲突 电磁频谱应用 电磁频谱 电子战
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Azomethine ylide-formation from N-phthaloylglycine by photoinduced decarboxylation:A theoretical study
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作者 fang Qiu DING LiNa fang weihai 《Science China Chemistry》 SCIE EI CAS 2012年第10期2089-2094,共6页
In this work, we report the first CASPT2//CASSCF study of the mechanism of the photodecarboxylation of N-phthaloylglycine. The charge transfer excited state S CT ( 1∏∏*) is initially populated upon irradiation at... In this work, we report the first CASPT2//CASSCF study of the mechanism of the photodecarboxylation of N-phthaloylglycine. The charge transfer excited state S CT ( 1∏∏*) is initially populated upon irradiation at 266 nm. As a result of a fast internal conversion to the lowest excited singlet state S CT-N ( 1∏∏*), this state becomes a favorable precursor state for proton transfer, which triggers decarboxylation. Actually, the excited state intramolecular proton transfer (ESIPT) and decarboxylation processes proceed in an asynchronous concerted way. The ESIPT process is accomplished in the S CT-N ( 1∏∏*) state, but the CO 2 molecule is finally formed in the ground state via the S CT /S 0 conical intersection. Azomethine ylide is formed in the ground state as a complex with CO 2 . A barrier of ~15 kcal/mol indicates that azomethine ylide is stable in the ground state, which is consistent with the experimental findings. This work provides mechanistic details about the formation of azomethine ylide by photoreaction of N-phthaloylglycine. 展开更多
关键词 N-phthaloylglycine PHOTODECARBOXYLATION excited state intramolecular proton transfer CASPT2//CASSCF method
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