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清末川康战事:川西藏区改土归流的前奏 被引量:2
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作者 王秀玉 刘源 +1 位作者 尼玛扎西(杨公卫) 杨公卫 《民族学刊》 2011年第2期6-13,共8页
清末川边战事近年来成为康藏研究中透视近代边疆社会变迁和帝国向现代民族国家转型的一个焦点,本文围绕清末一系列针对康区寺院(巴塘丁林寺、乡城桑披寺、盐井腊翁寺)的战事展开讨论,对清朝中央与地方政府的治边方略以及康巴地方实力派... 清末川边战事近年来成为康藏研究中透视近代边疆社会变迁和帝国向现代民族国家转型的一个焦点,本文围绕清末一系列针对康区寺院(巴塘丁林寺、乡城桑披寺、盐井腊翁寺)的战事展开讨论,对清朝中央与地方政府的治边方略以及康巴地方实力派(寺院、土司)在战术上的回应加以分析。清末川边军事化的过程对后来康区政局的改变起着重要的作用,为改土归流等边疆整合措施作了铺垫。与此同时,川边军事化也引发了四川经济和军事体制的改革,认识清末康区的现代性变革,也应关注四川省政的变化。 展开更多
关键词 川边战事 改土归流 边疆整合 康区 社会变迁
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Au10(TBBT)10:the Begining and the End of Aun(TBBT)m Nanoclusters
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作者 Chen-jie Zeng Meng Zhou +3 位作者 Chakicher Gayathria Roberto R.Gila Matthew Y.Sfeirb Rongchao Jina 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2018年第4期555-562,615,616,共10页
Gold(I) thiolate compounds (i.e. AuLSR) are important precursors for the synthesis of atom- ically precise Aun(SR)m nanoclusters. However, the nature of the AuI-SR precursor remains elusive. Here, we report that... Gold(I) thiolate compounds (i.e. AuLSR) are important precursors for the synthesis of atom- ically precise Aun(SR)m nanoclusters. However, the nature of the AuI-SR precursor remains elusive. Here, we report that the Aul0(TBBT)10 complex is a universal precursor for the synthesis of Aun(TBBT)m nanoclusters (where TBBT 4-tertbutylbenzenethiol/thiolate). Interestingly, the Aul0(TBBT)10 complex is also found to be re-generated through extended etching of the Aun(SR)m nanoclusters with excess of TBBT thiol and O2. The formation of well-defined Aul0(TBBT)10 complex, instead of polymeric AuKSR, is attributed to the bulkiness of the TBBT thiol. Through 1D and 2D NMR charcteriztions, the structure of Aul0(TBBT)10 is correlated with the previously reported X-ray structure, which contains two inter-penetrated Aus(TBBT)5 rings. The photophysical property of Au10(TBBT)10 complex is further probed by femtosecond transient absorption spectroscopy. The acces- sibility of the precise Au10(TBBT)10 precursor improves the efficiency of the synthesis of the Aun(TBBT)m nanoclusters and is expected to further facilitate excellent control and understanding of the reaction mechanisms of nanocluster synthesis. 展开更多
关键词 GOLD CLUSTER OPTICAL
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