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Climate-growth relationship stability of Picea crassifolia on an elevation gradient,Qilian Mountain,Northwest China 被引量:2
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作者 LEI Jing-pin FENG Xiao-hui +2 位作者 SHI Zheng BAI Deng-zhong XIAO Wen-fa 《Journal of Mountain Science》 SCIE CSCD 2016年第4期734-743,共10页
Climate affects Picea crassifolia growth and climate change will lead to changes in the climate–growth relationship(i.e., the "divergence" phenomenon). However, standardization methods can also change the u... Climate affects Picea crassifolia growth and climate change will lead to changes in the climate–growth relationship(i.e., the "divergence" phenomenon). However, standardization methods can also change the understanding of such a relationship. We tested the stability of this relationship by considering several variables: 1) two periods(1952–1980 and 1981–2009), 2) three elevations(2700, 3000, and 3300 m), and 3) chronologies detrended using cubic splines with two different flexibilities. With increasing elevation, the climatic factor limiting the radial growth of Picea crassifolia shifted from precipitation to temperature. At the elevation of 2700 m, the relationship between radial growth and mean temperature of the previous December changed so that the more flexible spline had a greater precipitation signal. At the elevation of 3000 m, positive correlation of radial growth with mean temperature and precipitation in September of the previous year became more significant. At the elevation of 3300 m, positive correlation between radial growth and precipitation of the currentsummer and the previous spring and autumn was no longer significant, whereas the positive correlation between radial growth and temperature of the current spring and summer strengthened. The detrending with the most flexible spline enhanced the precipitation signal at 2700 m, while that with the least flexible spline enhanced the temperature signal at 3300 m. All results indicated that the divergence phenomenon was affected by the climatic signals in the chronologies and that it was most dependent on the detrending method. This suggests it is necessary to select a suitable spline bootstrap for studies of growth divergence phenomena. 展开更多
关键词 Climate change Detrending method divergence problem Tree ring
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Synthesis of Novel Carbosilane Dendrimers with Myo-inositol Cores
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作者 Zhi Jun YU1 Qi Zhen ZHANG Qi Feng ZHOU 《Chinese Chemical Letters》 SCIE CAS CSCD 2003年第5期465-467,共3页
The preparation of carbosilane dendrimers with cores of myo-inositol and the outmost periphery groups of allyl groups has been reported. By using alternate hydrosilylation and alkenylation reactions, the dendrimer ha... The preparation of carbosilane dendrimers with cores of myo-inositol and the outmost periphery groups of allyl groups has been reported. By using alternate hydrosilylation and alkenylation reactions, the dendrimer have been carried up to the third generation with 48 allyl groups on the periphery. 展开更多
关键词 Carbosilane dendrimer MYO-INOSITOL divergent method HYDROSILYLATION Grignard reagent.
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Synthesis of ester-capped carbosilane dendrimers via a hybrid divergent–convergent method
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作者 Yu-Zhong Niu Lin Zhang +2 位作者 Shu-Jie Liang Deng-Xu Wang Sheng-Yu Feng 《Chinese Chemical Letters》 SCIE CAS CSCD 2014年第11期1419-1422,共4页
A series of novel ester-capped carbosilane dendrimers(G0-COOCH3–G2-COOCH3) were designed and successfully synthesized via a hybrid divergent–convergent method through a facile hydrosilylation reaction. The structu... A series of novel ester-capped carbosilane dendrimers(G0-COOCH3–G2-COOCH3) were designed and successfully synthesized via a hybrid divergent–convergent method through a facile hydrosilylation reaction. The structures of these dendrimers were confirmed by FTIR,1H NMR, and HRMS analyses. 展开更多
关键词 Synthesis Characterization Ester-capped Carbosilane dendrimers Divergent–convergent method
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