首页 | 官方网站   微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 62 毫秒
1.
芦荟甙的伏安行为及其应用研究   总被引:1,自引:1,他引:0  
芦荟甙在0.05mol·L^-1硫酸溶液中出现一灵敏的吸附伏安峰,峰电位为0.23V(vs.Ag/Cl)。峰电流与芦荟甙的浓度在2.0×10^-8~4.0×10^-7mol·L^-1和4.0×10^-7~6.0×10^-6mol·L^-1范围内成线性关系,检出限为5.0×10^-9mol·L^-1(富集时间为150s)。用线性扫描和循环估安法研究了体系的电化学行为,并应用于芦荟原胶中芦荟甙的的测定  相似文献   

2.
离心光度法测定酒中微量Zn(Ⅱ)的方法研究   总被引:1,自引:0,他引:1  
研究了一种高灵敏测定酒中微量Zn(Ⅻ)的新方法-离心光度法,在pH为1.30的Zn-SCN-CV三元离子缔合物体系中,λmax为598nm的表观摩尔吸光系数ε598为3.39×10^5L.mol^-1cm^-1,Zn(Ⅱ)在1.5×10^-6-13.8×10^-6mol.L^-1范围内呈线性关系。  相似文献   

3.
在pH4.5缓冲溶液中,安眠酮在-1.17V处产生一灵敏吸附极谱波,利用此波可测定微量安眠酮,线性范围为1.0×10^-7 ̄1.0×10^-6mol·L^-1,检测下限为9.0×10^-8mol·L^-1,所提出的方法用于片剂及血清中安眠酮的测定,结果满意。  相似文献   

4.
锇—钼酸盐—碱性染料显色反应的研究   总被引:1,自引:0,他引:1  
在聚乙烯醇存在下,锇与钼酸铵和碱性染料罗丹明B,丁基罗丹明B,耐尔蓝形成离子缔合物,不同碱性染料所形成的缔合物服从比耳定律的浓度范围和摩尔吸光系分别是:0-1.2μg/25ml和ε570nm=2.62×10^6L.mol^-1cm^-1;0-1.0μg/25ml和ε570nm=2.86×10^6L.cm^-1;0-1.8μg/25ml和ε585nm=2.81×10^6L.cm^-1;0-1.8μg  相似文献   

5.
利用矿相显微镜和与之配套使用的微型加载装置,对预制裂纹脆性材料的断裂特性进行了研究,得出了在单轴及双轴应力作用下K1-K1的变化关系:K1/Klc=8.67×10^-7(K1/Klc)^2-0.84K1/K1c+1.94×10^4和K1/K1c=1.56×10^-6(K1/K1c)^2-2.95K1/K1c+4.70×10^6,并与理论结果进行了对比,此外还得出了开裂角θ与裂纹倾角β的关系:θ=6  相似文献   

6.
利用Ni-Ti合金电极表面具有生物相容性和电化学特性,建立了Ni-Ti合金电极测定半胱氨酸的方法,并探讨其测量的机理。该法测定半胱氨酸的线性范围为8.25×10^-7 ̄8.25×10^-5mol·L^-1,相对标准偏差为6.8%。  相似文献   

7.
魏洽  颜流水 《江西科学》1999,17(3):168-172
用恒电位法在电化学聚合吡咯的同时,将酪氨酸酶固定在导电聚吡咯膜内,制成一种灵敏、稳定的酪氨酸酶电极。讨论了溶液pH值和聚合电位对本科固定化的影响,对酶分子嵌入前后吡咯膜的SEM图和CV曲线进行了分析和比较。该电极响应对甲苯酚的线性范围为5.0×10^-8~1.0×10^-6mol·L^-1,最适pH值为6.6,酶反应表现上遵循Michaelis-Mente动力学,表观米氏常数为2.2×10^-5m  相似文献   

8.
几种含硫有机化合物与铜的络合物的极谱行为研究   总被引:1,自引:0,他引:1  
高胱氨酸、6-巯基嘌呤和硫尿嘧啶均能与铜离子作用而在汞电极上产生两个吸附波、在柠檬酸钠溶液中,高胱氨酸与铜的络合物在-0.06V处产生的阳极化波较为灵敏,其检测限为2×10^-8mol/L高胱氨酸,线性范围为8×10-6~1×10^-5mol/L.6-巯基嘌呤和硫尿嘧啶在乙二胺介质中与铜产生的络合物波较好,前者在-0.83V处和后者在-0.44V处的阴极波较适合于分析,它们的检测限分别为8×10^  相似文献   

9.
通过一系列滴定量热测定,求得了298.15K时十二钨硅酸及其6DMF、8DMSO加合物的标准生成焓,其数值分别为-(13.14±0.01)×10^3KJ·mol^-1、-(13.61±0.01)×10^3KJ·mol^-1及-(13.86±0.01)×10^3KJ·mol^-1。  相似文献   

10.
研究了次黄嘌呤在铜电极上的电化学行为。实验发现,以1.96×10^-3 ̄4×10^-4mol·L^-1NaOH作支持电解质时,在-0.25 ̄-0.40V的电位范围内有一灵敏的阴极峰,它是吸附于铜电极表面的Hxa与Cu^+络合物的溶出伏安峰,在选择的实验条件下,峰高与Hxa的浓度在1.46×10^-6 ̄2×10^-3mol·L^-1范围内呈良好的线性关系,最低检测限为5.6×10^-8mol·L^-  相似文献   

11.
Language markedness is a common phenomenon in languages, and is reflected from hearing, vision and sense, i.e. the variation in the three aspects such as phonology, morphology and semantics. This paper focuses on the interpretation of markedness in language use following the three perspectives, i.e. pragmatic interpretation, psychological interpretation and cognitive interpretation, with an aim to define the function of markedness.  相似文献   

12.
理论推导与室内实验相结合,建立了低渗透非均质砂岩油藏启动压力梯度确定方法。首先借助油藏流场与电场相似的原理,推导了非均质砂岩油藏启动压力梯度计算公式。其次基于稳定流实验方法,建立了非均质砂岩油藏启动压力梯度测试方法。结果表明:低渗透非均质砂岩油藏的启动压力梯度确定遵循两个等效原则。平面非均质油藏的启动压力梯度等于各级渗透率段的启动压力梯度关于长度的加权平均;纵向非均质油藏的启动压力梯度等于各渗透率层的启动压力梯度关于渗透率与渗流面积乘积的加权平均。研究成果可用于有效指导低渗透非均质砂岩油藏的合理井距确定,促进该类油藏的高效开发。  相似文献   

13.
As an American modern novelist who were famous in the literary world, Hemingway was not a person who always followed the trend but a sharp observer. At the same time, he was a tragedy maestro, he paid great attention on existence, fate and end-result. The dramatis personae's tragedy of his works was an extreme limit by all means tragedy on the meaning of fearless challenge that failed. The beauty of tragedy was not produced on the destruction of life, but now this kind of value was in the impact activity. They performed for the reader about the tragedy on challenging for the limit and the death.  相似文献   

14.
正The periodicity of the elements and the non-reactivity of the inner-shell electrons are two related principles of chemistry,rooted in the atomic shell structure.Within compounds,Group I elements,for example,invariably assume the+1 oxidation state,and their chemical properties differ completely from those of the p-block elements.These general rules govern our understanding of chemical structures and reactions.Using first principles calcula-  相似文献   

15.
We have developed an adiabatic connection to formulate the ground-state exchange-correlation energy in terms of pairing matrix linear fluctuations.This formulation of the exchange-correlation energy opens a new channel for density functional approximations based on the many-body perturbation theory.We illustrate the potential of such approaches with an approximation based on the particle-particle Random Phase Approximation(pp-RPA).This re-  相似文献   

16.
正The electronic and nuclear(structural/vibrational)response of 1D-3D nanoscale systems to electric fields gives rise to a host of optical,mechanical,spectral,etc.properties that are of high theoretical and applied interest.Due to the computational difficulty of treating such large systems it is convenient to model them as infinite and periodic(at least,in first approximation).The fundamental theoretical/computational problem in doing so is that  相似文献   

17.
For molecular systems,the quantum-mechanical treatment of their responses to static electromagnetic fields usually employs a scalar-potential treatment of the electric field and a vector-potential treatment of the magnetic field.Although the potential for each field separately is associated with the choice of an(unphysical)origin,the precise choice of the origin for the electrostatic field has little consequences for the results.This is different for the  相似文献   

18.
Franck-Condon factors bridge the gap between theoretical modeling and experimental observations for molecular electronic spectroscopy and electron transfer.Under the displaced harmonic oscillator approximation,multidimensional Franck-Condon factors are decomposed into a product of many one-dimensional(1D)Franck-Condon(FC)factors,and each 1D-FC factor is associated with one Huang-Rhys factor that determines the leading contribution of  相似文献   

19.
<正>"The Journal of Shanghai Normal University:Mathematics"is published by Shanghai Normal University as regular issues of The Journal of Shanghai Normal University each year from 2014 in English.The editors-in-chief of the issues are professors Yuhao Cong and Maoan Han.The Journal of Shanghai Normal University was started in 1958 with  相似文献   

20.
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司    京ICP备09084417号-23

京公网安备 11010802026262号