排序方式: 共有71条查询结果,搜索用时 15 毫秒
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设计并镀制了193nm Al2O3/MgF2反射膜,对它们在空气中分别进行了250-400℃的高温退火,测量了样品的透射率光谱曲线和绝对反射率光谱曲线.发现样品在高反射区的总的光学损耗随退火温度的升高而下降,而后趋于饱和.采用总积分散射的方法对样品在不同退火温度下的散射损耗进行了分析,发现随着退火温度的升高散射损耗有所增加.因此,总的光学损耗的下降是由于吸收损耗而不是散射损耗起主导作用.对Al2O3材料的单层膜进行了同等条件的退火处理,由它们光学性能的变化推导出它们的折射率和消光系数的变化,从而解释了相应的多层膜光学性能变化的原因.反射膜的反射率在优化联系、镀膜工艺与退火工艺的基础上达98%以上. 相似文献
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Moessbauer studies on the effect of substitution with 3% Al, Co, Mn atoms in the intermetallic compound of Hf0.8Ta0.2Fe2 are reported. The Al substitution leads to increase of the FM-AFM transition temperature and to decrease of the AFM-PM transition temperature. The Co substitution leads to disappearance of the FM state, only showing some FM impurity component, while Mn substituted compound indicates coexistence of FM and AFM states at low temperature. The phenomena imply complex itinerant electron properties in these magnetic systems. 相似文献
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This study analyses the bovine SRY DNA sequence by direct sequencing procedure, followed by the designation of the PCR primers specific for bovine SRY. Using PCR amplification of bovine SRY gene, the embryo sex was determined. The results of the embryo sex identification were confirmed after the embryo transfer and pregnancies. 相似文献
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针对氮化碳(C3N4)光生电荷易复合、光催化性能有限的不足,我们制备N和F共掺杂C3N4(NF-C3N4),以提升其光催化性能。利用NH4F在高温下原位分解产生的HF和NH3,对C3N4刻蚀的同时实现N和F双元素共掺杂。以氯化铵(NH4Cl)为对照,制备N掺杂C3N4(N-C3N4)。利用扫描电子显微镜(SEM)、能谱仪(EDS)、X射线光电子能谱(XPS)、X射线衍射(XRD)、比表面积测试和电化学表征手段研究N、F共掺杂对C3N4形貌、成分、结构和物化性质等的影响规律。相比于C3N4和N-C3N4,NF-C3N4呈多孔状,比表面积增大,光生电荷的生成、分离和转移均被促进,NF-C3N4光催化还原Cr (Ⅵ)的速率是C3N4的2.6倍、N-C3N4的1.7倍。进一步考察了不同前驱体(尿素、双氰胺和三聚氰胺)对制备C3N4的影响,发现以尿素为前驱体的C3N4与NH4F的质量比为3∶2时,NF-C3N4呈现最佳的光催化性能。催化剂用量、光照强度、空穴捕获剂浓度的增加和pH的降低均能提高Cr (Ⅵ)还原速率。在NF-C3N4浓度为0.1 g·L-1、pH=3、cEDTA-2Na=2 mmol·L-1、40 min可见光照射后,Cr (Ⅵ)去除率达到90%。5次循环实验表明,优化制备的NF-C3N4光催化还原Cr (Ⅵ)的性能保持良好,具有较高的稳定性。 相似文献
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A thermodynamic theory is formulated to describe the phase transition and critical phenomenon in traffic flow.Based on the two-velocity difference model,the time-dependent Ginzburg-Landau (TDGL) equation under certain condition is derived to describe the traffic flow near the critical point through the nonlinear analytical method.The corresponding two solutions,the uniform and the kink solutions,are given.The coexisting curve,spinodal line and critical point are obtained by the first and second derivatives of the thermodynamic potential.The modified Korteweg de Vries (mKdV) equation around the critical point is derived by using the reductive perturbation method and its kink-antikink solution is also obtained.The relation between the TDGL equation and the mKdV equation is shown.The simulation result is consistent with the nonlinear analytical result. 相似文献
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Shu-Zhen LIU Zhi-Qing ZHANG Fang WANG Ting ZHOU Xiu-Feng WANG Gou-Dong ZHANG Ting-Ting LIU Hong-Zhi ZHANG 《物理化学学报》2017,33(10):2052-2057
滚环扩增(RCA)反应作为一种简单高效的等温酶促反应,现已发展为核酸扩增领域的新技术,其产物在组装体搭建和多功能材料的制备方面有着广泛的应用。本文采用琼脂糖凝胶、紫外和透射电镜(TEM)等手段,探究了时间、三磷酸脱氧核糖核苷(dNTPs)、酶以及引物的浓度等因素对脱氧核糖核酸(DNA)滚环扩增产物的影响。结果表明:在反应开始的前30 min,RCA产物的长度受时间的影响比较明显;随着dNTPs浓度的提高,RCA产物的链长增长,浓度也不断提高;酶和引物的浓度对滚环扩增产物的长度没有明显影响,但对RCA产物浓度的影响较大,过量的酶致使RCA产物的含量显著下降。 相似文献
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