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排序方式: 共有727条查询结果,搜索用时 387 毫秒
1.
建立了同时测定尿液中复方α-酮酸片5种有效成分(消旋羟蛋氨酸钙(HMACa)、酮缬氨酸钙(KVCa)、消旋酮异亮氨酸钙(KILCa)、酮亮氨酸钙(KLCa)和酮苯丙氨酸钙(KPACa))的离子对反相高效液相色谱法。分别考察了离子对试剂浓度、缓冲盐浓度和流动相pH值等参数对分离情况的影响。最终采用Waters Symmetry C18色谱柱(250 mm×4.6 mm,5μm);以乙腈和含15 mmol/L四丁基氢氧化铵的20 mmol/L磷酸盐缓冲液(pH 7.0)为流动相进行梯度洗脱,流速为1.0 mL/min;柱温为35℃;检测波长为210 nm。在上述条件下,5种有效成分得到很好的分离,并且不受尿液中内源性基质的干扰,在20~200 mg/L范围内线性关系良好(r≥0.999 0);HMACa、KVCa、KILCa、KLCa和KPACa的检出限(S/N=3)分别为3.0、5.0、3.6、5.7和2.5 mg/L;定量限(S/N=10)分别为9.6、16.7、12.0、19.0和8.3 mg/L;日间、日内精密度均小于7%;平均回收率在86.79%~112.00%之间,RSD小于9%(n=5)。该方法准确,灵敏度高,重现性好,适用于尿液中这5种有效成分的检测。 相似文献
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Prof. Jen-Shyang Ni Tianliang Min Yaxi Li Menglei Zha Dr. Pengfei Zhang Prof. Chun Loong Ho Prof. Kai Li 《Angewandte Chemie (Weinheim an der Bergstrasse, Germany)》2020,132(25):10265-10271
Planar luminogens have encountered difficulties in overcoming intrinsic aggregation-caused emission quenching by intermolecular π-π stacking interactions. Although excited-state double-bond reorganization (ESDBR) can guide us on designing planar aggregation-induced emission (AIE) luminogens (AIEgens), its mechanism has yet been elucidated. Major challenges in the field include methods to efficiently restrict ESDBR and enhance AIE performance without using bulky substituents (e.g., tetraphenylethylene and triphenylamine). In this study, we rationally developed fluoro-substituent AIEgens with stronger intermolecular H-bonding interaction for restricted molecular motions and increased crystal density, leading to decreased nonradiative decay rate by one order of magnitude. The adjusted ESDBR properties also show a corresponding response to variation in viscosity. Furthermore, their aggregation-induced reactive oxygen species (ROS) generations have been discovered. The application of such planar AIEgen in treating multidrug-resistant bacteria has been demonstrated in a mouse model. The relationship between ROS generation and distinct E/Z-configurational stacking behaviors have been further understood, providing a design principle for synthesizing planar AIEgen-based photosensitizers. 相似文献
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盐酸氨溴索在碳糊电极上阳极伏安法的研究 总被引:4,自引:0,他引:4
在0.5 mol/L H2SO4底液中,用碳糊电极阳极伏安法测定盐酸氨溴索,被测的阳极峰电位为1.10V(vs.SCE),另外,在0.46V处还产生一对可逆的氧化还原峰。1.10 V处的峰电流与盐酸氨溴索的浓度在3.98×10~(-7)~6.34 × 10~(-5)mol/L范围内呈良好的线性关系,该方法的检出下限为3.0 × 10~(-8)mol/L。用标准加入法测得回收率范围为92.8%~102%,RSD为2.9%(n=10)。对电极响应机理进行了初步探讨,氨溴索在1.10 V处的氧化为不可逆过程,其氧化产物在0.460V处产生一对2电子2质子受扩散控制的可逆波,用该波也可进行定量测定并且干扰较少,但灵敏度略低。 相似文献
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Chen H Aleksandrov A Chen Y Zha S Liu M Orlando TM 《The journal of physical chemistry. B》2005,109(22):11257-11262
Polycrystalline gadolinia-doped ceria (GDC) surfaces were studied using low-energy (5-400 eV) electron stimulated desorption (ESD). H(+), O(+), and H(3)O(+) were the primary cationic desorption products with H(+) as the dominant channel. H(+), H(3)O(+), and O(+) have a 22 eV threshold followed by a yield change around 40 eV. H(+) also has an additional yield change approximately 75 eV and O(+) has an additional change approximately 150 eV. The O(+) ESD yield change approximately 150 eV may indicate bond breaking of Gd-O and the involvement of oxygen vacancies. The H(+) and H(3)O(+) threshold data collectively indicate the presence of hydroxyl groups and chemisorbed water molecules on the GDC surfaces. ESD temperature dependence measurements show that the interaction of water with GDC surface defect sites, mainly oxygen vacancies, influences the desorption of H(+), O(+), and H(3)O(+). The temperature dependence of the O(+) ESD at 400 eV incident electron energy yields a 0.21 eV activation energy. This is close to the energy needed for oxygen vacancy production next to a pair of Ce(3+) on a CeO(2) surface. These results may indicate a correlation between the O(+) ESD yield and oxygen vacancy density on GDC surfaces and a potential correlation of O(+) ESD and GDC ionic conductivity. 相似文献
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Three new alkaloids, longistylumphyllines A–C (1–3), together with the six known alkaloids deoxycalyciphylline B, deoxyisocalyciphylline B, methyl homosecodaphniphyllate, daphnicyclidin A, daphnicyclidin B, and daphnicyclidin F, were isolated from the stems and leaves of Daphniphyllum longistylum. Their structures and relative configuration were elucidated on the basis of spectroscopic data, especially 1D and 2D NMR techniques. 相似文献
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