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布鲁赫《第一小提琴协奏曲》的浪漫主义因素
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作者 黄珊珊 《音乐创作》 北大核心 2020年第2期143-151,共9页
布鲁赫《g小调第一小提琴协奏曲》整体虽然用传统协奏曲的快—慢—快三乐章布局,但各乐章结构均不同程度地突破传统,集中体现在具有前奏性质仅保留奏鸣曲原则的第一乐章和具有结构多解性的第二乐章,而多处模糊的调性、降Ⅶ级进行及和声... 布鲁赫《g小调第一小提琴协奏曲》整体虽然用传统协奏曲的快—慢—快三乐章布局,但各乐章结构均不同程度地突破传统,集中体现在具有前奏性质仅保留奏鸣曲原则的第一乐章和具有结构多解性的第二乐章,而多处模糊的调性、降Ⅶ级进行及和声大调等和声语言则直接形成了该曲神秘多变的浪漫色彩。这些浪漫主义因素凸显了布鲁赫对诗意与幻想的追求。 展开更多
关键词 布鲁赫 《g小调第一小提琴协奏曲》 奏鸣原则 结构多解性 浪漫主义因素
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Effect of Dispersity and Porous Structure of TiO2 Nanopowders on Photocatalytic Destruction of Azodyes in Aqueous Solutions 被引量:1
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作者 Alexander Zhygotsky Elena Rynda +4 位作者 Victor Kochkodan Maksim Zagomy Tatyana Lobunets Ludmila Kuzmenko Andrey Ragulya 《Journal of Chemistry and Chemical Engineering》 2013年第10期949-957,共9页
Photocatalytic activity of TiO2 nanopowders of anatase modification with various particle sizes and specific surface areas has been studied in the process of photocatalytic decolorization of aqueous solutions of methy... Photocatalytic activity of TiO2 nanopowders of anatase modification with various particle sizes and specific surface areas has been studied in the process of photocatalytic decolorization of aqueous solutions of methylene blue and direct blue 2C azodyes. By means of scanning electron microscopy and low-temperature N2 adsorption method, it was found that TiO2 nanopowders have the particles size of 5-120 nm with the specific surface area of 15-120 m2·g^-1. The used TiO2 samples are characterized by mesoporous structures with average pore size of 4.3-14.9 nm. The photocatalytic activity of TiO2 was evaluated via decolorization of azodyes solutions. It was shown that the efficiency of decolorization symbatically changes with the dye adsorption value on TiO2 surface and the degree of decolorization rises when the surface area of TiO2 nanopowders increases. It was found that TiO2 photocatalytic activity essentially depends on adsorption interactions between the dye molecules and catalytic active centers on TiO2 surface, and these interactions, in turn, are greatly affected by pH of the solution. 展开更多
关键词 TIO2 surface area photocatalytic decolorization AZODYE adsorption
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