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排序方式: 共有587条查询结果,搜索用时 937 毫秒
1.
LiNbO3∶Cr∶Cu晶体吸收特性及非挥发全息存储研究 总被引:1,自引:1,他引:0
研究了LiNbO3∶Cr∶Cu晶体的吸收特性,发现LiNbO3∶Cr∶Cu(含0.14 wt.% Cr2O3 和 0.011 wt.% CuO)晶体存在两个明显的吸收峰,中心波长分别位于480 nm和660 nm; 随着Cr的含量逐渐减小,Cu的含量逐渐增大,短波段不存在明显吸收峰,掺Cr的含量越大,中心波长在660 nm处的吸收越大;633 nm红光虽然位于中心波长为660 nm的吸收峰内,但它无助于光折变过程.分别采用390 nm紫外光和488 nm蓝光作为敏化光,514 nm绿光作为记录光的记录方案,实现了非挥发全息记录,掺入适量的Cr( 比如NCr=2.795×1025 m-3,NCr/ NCu=1)有助于全息记录性能的提高. 相似文献
2.
崔艳兰 《纯粹数学与应用数学》1993,9(1):37-42
本文在凸度量空间中讨论了集什扩张映象对的重合和非扩张映象列的公共不动点的存在性,所得结论是单值非扩张映象数情形的推广和发展。. 相似文献
3.
PEG作为成孔剂对聚(N-异丙基丙烯酰胺-co-丙烯酸)水凝胶性能的影响 总被引:1,自引:0,他引:1
以PEG400,1000,6000为成孔剂,合成了一系列聚(N-异丙基丙烯酰胺co丙烯酸)水凝胶,研究了成孔剂分子量和数量对凝胶性能的影响.结果表明,聚乙二醇(PEG)分子充当成孔剂,不参与反应.PEG分子量越大,投料越多,所得凝胶孔的孔径越大,孔数目越多,在室温时可以容纳更多的水分子,因而溶胀率也越大.凝胶的大孔结构有利于水分子的进出,所以响应速率比普通共聚凝胶快.随着PEG分子量增大,孔数目增多,响应速率相应变快. 相似文献
4.
叙述了同步辐射白光全反射X射线荧光分析的实验装置,给出了几种标准物质TXRF实验的检出限,并对实验结果进行了讨论。 相似文献
5.
本文用水热法在SiO_2-FeNH_4(SO_4)_2-MTEACl-NaOH-H_2O体系内合成出了用铁全部取代铝的Fe-Si-ZSM-12型沸石分子筛。实验结果表明,Na_2O/SiO_2、MTEA~+/SiO_2和SiO_2/Fe_2O_3比对分子筛的形成和结晶度有很大影响,Fe-Si-ZSM-12的晶化速度比较缓慢,延长晶化时间则容易转化为α-SiO_2。Fe-Si-ZSM-12的X射线衍射谱图与Al-Si-ZSM-12的基本相同,吸附数据表明,其孔径略大于Al-Si-ZSM-12的孔径,热稳定性则劣于Al-Si-ZSM-12的热稳定性。 相似文献
6.
建立了测定煤矸石中微量锗和镓的电感耦合等离子体质谱法。煤矸石试样经高温灰化,用硝酸-氢氟酸-高氯酸-磷酸分解,以电感耦合等离子体质谱法测定其中的锗和镓。通过在线三通加入内标元素铑,消除非质谱干扰;通过选择干扰元素的异质同位素进行定量测定,采用数学公式在线校正,消除质谱干扰。与分光光度法进行比对,锗、镓测定结果的相对偏差为-0.63%~0.28%。克服了常规化学分析方法步骤繁琐、耗时长、工作量大的不足。该法测定结果的相对标准偏差小于3%(n=6),加标回收率为97.4%~102.5%。该方法具有检出限低、快速、简便、线性范围宽、多元素同时测定等优点,分析误差满足化学分析法的要求,可用于煤矸石中锗和镓的测定。 相似文献
7.
8.
Qi Zhang Yunlong Shao Boye Li Yuanyuan Wu Jingying Dong Dongtang Zhang Yanan Wang Yong Yan Xiayan Wang Qiaosheng Pu Guangsheng Guo 《Chemical science》2021,12(11):4111
The analysis of single living cells, including intracellular delivery and extraction, is essential for monitoring their dynamic biochemical processes and exploring intracellular heterogeneity. However, owing to the 2D view in bright-field microscopy and optical distortions caused by the cell shape and the variation in the refractive index both inside and around the cells, achieving spatially undistorted imaging for high-precision manipulation within a cell is challenging. Here, an accurate and visual system is developed for single-cell spatial manipulation by correcting the aberration for simultaneous bright-field triple-view imaging. Stereo information from the triple view enables higher spatial resolution that facilitates the precise manipulation of single cells. In the bright field, we resolved the spatial locations of subcellular structures of a single cell suspended in a medium and measured the random spatial rotation angle of the cell with a precision of ±5°. Furthermore, we demonstrated the visual manipulation of a probe to an arbitrary spatial point of a cell with an accuracy of <1 pixel. This novel system is more accurate and less destructive for subcellular content extraction and drug delivery.We achieved the low-damage spatial puncture of single cells at specific visual points with an accuracy of <65 nm. 相似文献
9.
Guangdong Zhou Zhanlin Xu Xiaohong Guo Hong Zhuang Yanan Li Xueju Lü Tiexin Cheng Wenxing Li Kaiji Zhen 《Reaction Kinetics and Catalysis Letters》2005,85(1):57-64
Summary The oxidation of hexanol in the presence of the Keggin-type heteropoly compounds (HPCs) H3PMonW12-nO40 (denoted as PMonW12-n, n=0,1) and Na5PW11ZO39 (denoted as PW11Z, Z = Mn, Fe, Co, Ni, Cu and Zn) was carried out to produce hexanal and hexanoic acid. The reaction was conducted in tert-butanol (t-BuOH), using cetylpyridinium bromide (CPB) salts of HPA and 15% aqueous H2O2 as oxidant under mild condition. The PMoW11 catalyst showed higher hexanol conversion of 25%, the lowest selectivity to hexanal of 64.4% and an efficient utilization of H2O2 of 34%. Over the transition metal substituted PW11Z catalysts decomposition of H2O2 was rapid. For these PW11Z catalysts, the efficient utilization of H2O2 decreased to 9% or even lower. By means of IR, UV-visible and GC-MS techniques the catalysts were characterized. 相似文献
10.
Yulong Bai Wang Wan Yanan Huang Wenhan Jin Haochen Lyu Qiuxuan Xia Xuepeng Dong Zhenming Gao Yu Liu 《Chemical science》2021,12(24):8468
Co-aggregation of multiple pathogenic proteins is common in neurodegenerative diseases but deconvolution of such biochemical process is challenging. Herein, we developed a dual-color fluorogenic thermal shift assay to simultaneously report on the aggregation of two different proteins and quantitatively study their thermodynamic stability during co-aggregation. Expansion of spectral coverage was first achieved by developing multi-color fluorogenic protein aggregation sensors. Orthogonal detection was enabled by conjugating sensors of minimal fluorescence crosstalk to two different proteins via sortase-tag technology. Using this assay, we quantified shifts in melting temperatures in a heterozygous model protein system, revealing that the thermodynamic stability of wild-type proteins was significantly compromised by the mutant ones but not vice versa. We also examined how small molecule ligands selectively and differentially interfere with such interplay. Finally, we demonstrated these sensors are suited to visualize how different proteins exert influence on each other upon their co-aggregation in live cells.A little leak will sink a great ship! We prepared a series of multi-color protein aggregation sensors and developed a dual-color thermal shift assay to simultaneously and quantitatively report on protein co-aggregation of two different proteins. 相似文献