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研究了一类含极大η-单调算子的广义非线性混合似变分包含组.依据不动点理论和极大η-单调算子的预解算子技巧,在Hilbert空间中提出了一种求这类变分不等式组的逼近解的扰动迭代算法,并证明了这类算法的收敛性和稳定性.所得结果是新的,并推广和统一了近期文献中的一些相关结论. 相似文献
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柠檬酸荧光碳点的合成及其在Fe(Ⅲ)检测和细胞成像中的应用 总被引:1,自引:0,他引:1
以柠檬酸为原料,采用一步水热法合成荧光碳点。所合成的荧光碳点在310nm激发波长下的荧光量子产率为5.3%,发射光谱随着激发波长红移而红移。透射电镜(TEM)表征显示荧光碳点在水溶液中分布均匀,平均粒径为2.9nm。红外(IR)光谱和Zeta电位结果表明碳点表面有羧基和羟基等活性官能团。Fe(Ⅲ)对这些荧光碳点表现出选择性猝灭效果,这种现象可以用于Fe(Ⅲ)检测。在10mmol/L的HEPES缓冲溶液(pH=7.0)中,荧光碳点的荧光强度随着Fe(Ⅲ)浓度的增加逐渐衰减。该方法对Fe(Ⅲ)测定的线性范围为100~500μmol/L,检出限为112.5nmol/L。细胞成像结果表明,柠檬酸的碳点可进入到B16-F10细胞内,并在405nm和488nm激光照射下发出不同颜色的荧光。以上结果表明该碳点在Fe(Ⅲ)检测和细胞成像方面有潜在应用价值。 相似文献
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Effects of oxygen concentration and irradiation defects on the oxidation corrosion of body-centered-cubic iron surfaces: A first-principles study 下载免费PDF全文
Zhiqiang Ye 《中国物理 B》2022,31(8):86802-086802
Oxidation corrosion of steels usually occurs in contact with the oxygen-contained environment, which is accelerated by high oxygen concentration and irradiation. The oxidation mechanism of steels is investigated by the adsorption/solution of oxygen atoms on/under body-centered-cubic (bcc) iron surfaces, and diffusion of oxygen atoms on the surface and in the near-surface region. Energetic results indicate that oxygen atoms prefer to adsorb at hollow and long-bridge positions on the Fe(100) and (110) surfaces, respectively. As the coverage of oxygen atoms increases, oxygen atoms would repel each other and gradually dissolve in the near-surface and bulk region. As vacancies exist, oxygen atoms are attracted by vacancies, especially in the near-surface and bulk region. Dynamic results indicate that the diffusion of O atoms on surfaces is easier than that into near-surface, which is affected by oxygen coverage and vacancies. Moreover, the effects of oxygen concentration and irradiation on oxygen density in the near-surface and bulk region are estimated by the McLean's model with a simple hypothesis. 相似文献
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基于CT切片特征匹配的三维体重建 总被引:3,自引:2,他引:1
详细描述了医学解剖学切片图数据读取,特征提取和特征匹配.引入了解剖数据读取方法,叙述了切片匹配的两个过程:特征提取和特征匹配.提出了一种新的有效的特征匹配方法.所有切片图象在匹配之前首先进行了预处理(如滤波、二值化、细化等过程),特征是分区域进行提取的.匹配方法分两步,首先按照对应特征点之间距离的方法匹配特征点,然后用矩的方法进行切片之间匹配.体重建过程中还使用了三维等值面和插值方法.实验结果证实这种特征匹配方法不仅快速而且准确. 相似文献
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