{"title":"硅酸锂体系含金/银光敏玻璃的溶胶<e:2>凝胶合成及结晶成核研究","authors":"G. A. Sycheva","doi":"10.6000/1929-5030.2016.05.02.4","DOIUrl":null,"url":null,"abstract":"A sol–gel method has been proposed for obtaining the sintering mixture used in the preparing of a photosensitive Au/Ag-containing glasses of the Li 2 O - SiO 2 system. It has been established that the use of sol–gel method for the production of the batch for synthesizing photosensitive Au/Ag-containing glasses gives more homogeneous distribution of Au/Ag metals in the bulk of the glass. Crystal-nucleation main characteristics have been defined in a large area of compounds of photo-structured compositions of a lithium–silicate system (23.4–46.0 Li 2 O mol % by analysis) both for spontaneous and catalyzed nucleations. The spontaneous (homogeneous) nucleation happened in the samples without any photosensitive metals and with photosensitive gold–silver additives (0.05 wt % above 100%) without irradiation; the catalyzed (heterogeneous) nucleation happened in the samples with photosensitive silver ore gold additives under x-ray CuK I± irradiation. The ranges of the compositions of the glasses in which the effect of catalyzing irradiation is reversed (suppressing nucleation in accordance with the autocatalytic mechanism) under certain conditions. The spontaneous and catalyzed nucleation of crystals in the glasses of Li 2 O – SiO 2 system caused by the addition of photosensitive impurities and X-ray irradiation was analyzed in glasses with a very wide range of compositions in Li 2 O – SiO 2 system. Composition ranges with positive (+) and negative (-) differences in the rates of catalyzed and spontaneous steady-state nucleation were established. This finding point is favorable for obtaining photostructured (photosensitive) materials. The concentration limit was determined to be 37.98 mol % Li 2 O. About this value, we observe a modification of the mechanism of nucleation of crystals. The behavior of crystal nucleation in photostructured glasses under X-ray irradiation changes to the reverse: autocatalytic nucleation is suppressed rather than induced by x-ray CuK I± irradiation. These peculiarities of crystallization mechanism in glasses under study give one the possibility to choose the correct composition range depending on the problems facing researchers.","PeriodicalId":15165,"journal":{"name":"Journal of Applied Solution Chemistry and Modeling","volume":"123 1","pages":"82-87"},"PeriodicalIF":0.0000,"publicationDate":"2016-05-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Sol–Gel Synthesis and Crystal Nucleation of Photosensitive Au/Ag- Containing Glasses of Lithium Silicate System\",\"authors\":\"G. A. Sycheva\",\"doi\":\"10.6000/1929-5030.2016.05.02.4\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"A sol–gel method has been proposed for obtaining the sintering mixture used in the preparing of a photosensitive Au/Ag-containing glasses of the Li 2 O - SiO 2 system. 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The spontaneous and catalyzed nucleation of crystals in the glasses of Li 2 O – SiO 2 system caused by the addition of photosensitive impurities and X-ray irradiation was analyzed in glasses with a very wide range of compositions in Li 2 O – SiO 2 system. Composition ranges with positive (+) and negative (-) differences in the rates of catalyzed and spontaneous steady-state nucleation were established. This finding point is favorable for obtaining photostructured (photosensitive) materials. The concentration limit was determined to be 37.98 mol % Li 2 O. About this value, we observe a modification of the mechanism of nucleation of crystals. The behavior of crystal nucleation in photostructured glasses under X-ray irradiation changes to the reverse: autocatalytic nucleation is suppressed rather than induced by x-ray CuK I± irradiation. 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引用次数: 0
摘要
提出了一种溶胶- -凝胶法制备光敏含金/银玻璃的烧结混合物。研究表明,采用溶胶 -凝胶法制备光敏含金/银玻璃能使Au/Ag金属在玻璃体中分布更加均匀。晶体成核的主要特征已经在锂-硅-硅体系(23.4 - 46.0 Li 2o mol %)的光结构组成的化合物中被定义为自发成核和催化成核。在不添加任何光敏金属和添加光敏金€银添加剂(0.05 wt %以上100%)的情况下,样品自发(均匀)成核;在x射线CuK - 1±照射下,加入光敏银矿金添加剂的样品发生催化(非均相)成核。在一定条件下,催化辐照的作用被逆转(根据自催化机理抑制成核)的玻璃的组成范围。分析了光敏杂质的加入和x射线照射对Li 2o O - sio2体系玻璃中晶体自发成核和催化成核的影响。在催化成核速率和自发成核速率上建立了正(+)和负(-)差异的组成范围。这一发现点有利于获得光结构(光敏)材料。测定的浓度极限为37.98 mol % Li 2o。在此值附近,我们观察到晶体成核机理的改变。在x射线照射下,光结构玻璃的晶体成核行为发生了相反的变化:x射线CuK辐照抑制而不是诱导自催化成核。所研究的玻璃结晶机理的这些特点,使人们有可能根据研究人员面临的问题选择正确的组成范围。
Sol–Gel Synthesis and Crystal Nucleation of Photosensitive Au/Ag- Containing Glasses of Lithium Silicate System
A sol–gel method has been proposed for obtaining the sintering mixture used in the preparing of a photosensitive Au/Ag-containing glasses of the Li 2 O - SiO 2 system. It has been established that the use of sol–gel method for the production of the batch for synthesizing photosensitive Au/Ag-containing glasses gives more homogeneous distribution of Au/Ag metals in the bulk of the glass. Crystal-nucleation main characteristics have been defined in a large area of compounds of photo-structured compositions of a lithium–silicate system (23.4–46.0 Li 2 O mol % by analysis) both for spontaneous and catalyzed nucleations. The spontaneous (homogeneous) nucleation happened in the samples without any photosensitive metals and with photosensitive gold–silver additives (0.05 wt % above 100%) without irradiation; the catalyzed (heterogeneous) nucleation happened in the samples with photosensitive silver ore gold additives under x-ray CuK I± irradiation. The ranges of the compositions of the glasses in which the effect of catalyzing irradiation is reversed (suppressing nucleation in accordance with the autocatalytic mechanism) under certain conditions. The spontaneous and catalyzed nucleation of crystals in the glasses of Li 2 O – SiO 2 system caused by the addition of photosensitive impurities and X-ray irradiation was analyzed in glasses with a very wide range of compositions in Li 2 O – SiO 2 system. Composition ranges with positive (+) and negative (-) differences in the rates of catalyzed and spontaneous steady-state nucleation were established. This finding point is favorable for obtaining photostructured (photosensitive) materials. The concentration limit was determined to be 37.98 mol % Li 2 O. About this value, we observe a modification of the mechanism of nucleation of crystals. The behavior of crystal nucleation in photostructured glasses under X-ray irradiation changes to the reverse: autocatalytic nucleation is suppressed rather than induced by x-ray CuK I± irradiation. These peculiarities of crystallization mechanism in glasses under study give one the possibility to choose the correct composition range depending on the problems facing researchers.