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91.
The microstructure of a mixed KCl and K2SO4 aqueous solution was studied using X-ray scattering (XRS), Raman spectroscopy, and molecular dynamics simulation (MD). Reduced structure functions [F(Q)], reduced pair distribution functions [G(r)], Raman spectrum, and pair distribution functions (PDF) were obtained. The XRS results show that the main peak (r = 2.81 Å) of G(r) shifted to the right of the axis (r = 3.15 Å) with increased KCl and decreased K2SO4. The main peak was at r = 3.15 Å when the KCl concentration was 26.00% and the K2SO4 concentration was 0.00%. It is speculated that this phenomenon was caused by the main interaction changing, from K-OW (r = 2.80 Å) and OW-OW (r = 2.80 Å), to Cl-OW (r = 3.14 Å) and K+-Cl (r = 3.15 Å). According to the trend of the hydrogen bond structure in the Raman spectrum, when the concentration of KCl was high and K2SO4 was low, the destruction of the tetrahedral hydrogen bond network in the solution was more serious. This shows that the destruction strength of the anion to the hydrogen bond network structure in solution was Cl > SO42−. In the MD simulations, the coordination number of OW-OW decreased with increasing KCl concentration, indicating that the tetrahedral hydrogen bond network was severely disrupted, which confirmed the results of the Raman spectroscopy. The hydration radius and coordination number of SO42− in the mixed solution were larger than Cl, thus revealing the reason why the solubility of KCl in water was greater than that of K2SO4 at room temperature.  相似文献   
92.
Cancer is a leading cause of death worldwide, with an increasing mortality rate over the past years. The early detection of cancer contributes to early diagnosis and subsequent treatment. How to detect early cancer has become one of the hot research directions of cancer. Tumor biomarkers, biochemical parameters for reflecting cancer occurrence and progression have caused much attention in cancer early detection. Due to high sensitivity, convenience and low cost, biosensors have been largely developed to detect tumor biomarkers. This review describes the application of various biosensors in detecting tumor markers. Firstly, several typical tumor makers, such as neuron-specific enolase (NSE), carcinoembryonic antigen (CEA), prostate-specific antigen (PSA), squamous cell carcinoma antigen (SCCA), carbohydrate, antigen19-9 (CA19-9) and tumor suppressor p53 (TP53), which may be helpful for early cancer detection in the clinic, are briefly described. Then, various biosensors, mainly focusing on electrochemical biosensors, optical biosensors, photoelectrochemical biosensors, piezoelectric biosensors and aptamer sensors, are discussed. Specifically, the operation principles of biosensors, nanomaterials used in biosensors and the application of biosensors in tumor marker detection have been comprehensively reviewed and provided. Lastly, the challenges and prospects for developing effective biosensors for early cancer diagnosis are discussed.  相似文献   
93.
在不同的水热合成时间下,以铁铝合金为铁源和铝源,四丙基氢氧化铵为分子筛的模板剂和抽提合金中的铝的碱,一步制得了以骨架铁为核、不同厚度的HZSM-5分子筛为壳的Raney Fe@HZSM-5催化剂.采用元素分析、氮物理吸附、X射线粉末衍射、氨脱附、扫描电子显微镜等手段,考察了水热时间对催化剂基本物化性质的影响.随着水热时...  相似文献   
94.
Matrine is a traditional botanical pesticide with a broad-spectrum biological activity that is widely applied in agriculture. Halopyrazole groups are successfully introduced to the C13 of matrine to synthesize eight new derivatives with a yield of 78–87%. The insecticidal activity results show that the introduction of halopyrazole groups can significantly improve the insecticidal activity of matrine on Plutella xylostella, Mythimna separata and Spodoptera frugiperda with a corrected mortality rate of 100%, which is 25–65% higher than matrine. The fungicidal activity results indicate that derivatives have a high inhibitory effect on Ceratobasidium cornigerum, Cibberella sanbinetti, Gibberrlla zeae and Collectot tichum gloeosporioides. Thereinto, 4-Cl-Pyr-Mat has the best result, with an inhibition rate of 23–33% higher than that of matrine. Therefore, the introduction of halogenated pyrazole groups can improve the agricultural activity of matrine.  相似文献   
95.
Natural products are a source for pesticide or drug discovery. In order to discover lead compounds with high fungicidal or herbicidal activity, new niacinamide derivatives derived from the natural product niacinamide, containing chiral flexible chains, were designed and synthesized. Their structures were confirmed by 1H NMR, 13C NMR and HRMS analysis. The fungicidal and herbicidal activities of these compounds were tested. The fungicidal activity results demonstrated that the compound (S)-2-(2-chloronicotinamido)propyl-2-methylbenzoate (3i) exhibited good fungicidal activity (92.3% inhibition) against the plant pathogen Botryosphaeria berengriana at 50 μg/mL and with an EC50 of 6.68 ± 0.72 μg/mL, which is the same as the positive control (fluxapyroxad). Compound 3i was not phytotoxic and could therefore be used as a fungicide on crops. Structure-activity relationships (SAR) were studied by molecular docking simulations with the succinate dehydrogenase of the fungal mitochondrial respiratory chain.  相似文献   
96.
Anode-free lithium metal batteries (AF-LMBs) can deliver the maximum energy density. However, achieving AF-LMBs with a long lifespan remains challenging because of the poor reversibility of Li+ plating/stripping on the anode. Here, coupled with a fluorine-containing electrolyte, we introduce a cathode pre-lithiation strategy to extend the lifespan of AF-LMBs. The AF-LMB is constructed with Li-rich Li2Ni0.5Mn1.5O4 cathodes as a Li-ion extender; the Li2Ni0.5Mn1.5O4 can deliver a large amount of Li+ in the initial charging process to offset the continuous Li+ consumption, which benefits the cycling performance without sacrificing energy density. Moreover, the cathode pre-lithiation design has been practically and precisely regulated using engineering methods (Li-metal contact and pre-lithiation Li-biphenyl immersion). Benefiting from the highly reversible Li metal on the Cu anode and Li2Ni0.5Mn1.5O4 cathode, the further fabricated anode-free pouch cells achieve 350 W h kg−1 energy density and 97% capacity retention after 50 cycles.

Benefiting from highly reversible structure evolution of pre-lithiated Li-rich Li2Ni0.5Mn1.5O4 cathode, the corresponding anode-free pouch cell delivers a considerable energy density of 350 W h kg−1 and 97% capacity retention after 50 cycles.  相似文献   
97.
2015年9月15日,由中国工程物理研究院激光聚变研究中心承担研制的神光-Ⅲ主机装置成功完成了48束激光三倍频180 kJ/3 ns、峰值功率60 TW的输出测试实验,标志着神光-Ⅲ主机装置已全面建成并达到设计指标,成为现有输出能力世界排名第二、亚洲排名第一的惯性约束聚变激光驱动器。神光-Ⅲ主机装置可输出48束阵列化的大口径高功率脉冲激光(分为6个束组,每个束组为一个42的光束阵列),主要由前端、预放、主放、测量与光束控制、靶场、计算机集中控制等六大系统组成。神光-Ⅲ主机装置的研制,凝集了我国在光学、激光、脉冲功率、精密机械、快电子学、自动控制、化学清洗、超精密加工等多个学科领域的顶尖技术成就,堪称中国光学工程界的奇迹。神光-Ⅲ主机装置采用腔内四程放大+变口径90翻转U型反转器+助推三程放大的总体构型,在未使用大口径隔离组件的条件下,采用焦斑控制、精密准直、锥管镜面空间滤波及杂散光管理等技术措施,实现了基频光十万倍增益、10 kJ量级输出状态下的自激振荡抑制与反激光规避,在系统具备50%以上透过率的前提下确保了装置的运行安全,大大提高了装置的性价比。神光-Ⅲ主机装置的建设过程中攻克了高精度种子光源、高品质激光束的预放大、精密同步、辐射定标损伤检测、全光路精密波前校正、甚多束光路自动准直、自动化靶瞄准定位、计算机集中控制、高效谐波转换、一搁准精密安装、超精密光学加工、缺陷控制损伤阈值提升等多项光学工程技术难关,确保了装置具备优秀的技术指标性能。神光-Ⅲ主机装置打破了激光系统串行调试的规律,基于基准体系技术,通过不同束组间的错级并行,实现总体集成工作的满负荷运转,确保了装置建设的总体进度和集成效率。装置从第一个光机模块进场到基本完成集成调试,用时仅四年半,创造了又一个中国速度。在工程建设过程中以自主研发的传输放大动力学设计软件、激光泵浦动力学软件、杂散光树叉追迹软件等为基础,融合了部分光学设计商用软件,构建了覆盖光学、结构、电气、控制等多个学科的高功率激光装置数字化设计平台,基本实现了装置设计的全面数字化。工程建设过程中形成的质量、安全、进度控制体系保证了工程顺利进行。神光-Ⅲ主机装置的全面建成,标志着我国在大型激光驱动器方面的总体设计、总体集成、精密装校、加工制造、光学检测、关键技术等核心能力实现了体系化发展与成熟,面向更大规模的激光驱动器研制的光学工程体系已基本形成。  相似文献   
98.
在保证引信勤务安全性和正常发射可靠性前提下,为实现引信小型化而设计了一种新型无源双阈值高g值MEMS惯性开关,其主要包括能够识别两种典型加速度环境(载荷1:15 000g-300 ms,载荷2:3000g-3 ms)的环境识别模块M1和为后续电路可靠供电的通电模块M2。环境识别模块M1主要通过控制带有Z型齿的质量块与对应L型挡块之间的碰撞来确定质量块的运动位移,进而控制通电模块M2的工作情况。基于两种典型加速度环境对MEMS惯性开关进行了动力学仿真并优化,仿真结果表明所设计的开关在载荷1环境下保持断开,而在载荷2环境下可靠闭合。  相似文献   
99.
利用响应面分析方法优化了用于压力传感器硅敏感芯体的刻蚀操作条件。主要考虑了温度、KOH浓度和腐蚀时间三个操作参数,将它们的范围分别设定为40~60 ℃,0.4~0.48 mol/L 和 5~12.5 h,并设定各向异性腐蚀速率为响应值。通过建立二次方模型,分析这些参数的单独影响以及多个操作条件之间对腐蚀速率的相互交叠作用。分析结果表明:模型可以精确预测99%的响应值,相比于腐蚀时间,溶液浓度和工作温度对刻蚀速率的影响更为明显。  相似文献   
100.
Harvesting seasons are crucial for the physicochemical qualities of large-leaf-variety black tea. To investigate the effect of harvesting seasons on physicochemical qualities, the color and sensory characteristics of black tea produced from “Yinghong 9” (Yh) and its mutant “Huangyu” (Hy) leaves were analyzed. The results demonstrated that Hy had better chemical qualities and sensory characteristics, on average, such as a higher content of tea polyphenols, free amino acids, caffeine, galloylated catechins (GaCs) and non-galloylated catechins (NGaCs), while the hue of the tea brew (ΔE*ab and Δb*) increased, which meant that the tea brew was yellower and redder. Moreover, the data showed that the physicochemical qualities of SpHy (Hy processed in spring) were superior to those of SuHy (Hy processed in summer) and AuHy (Hy processed in autumn), and 92.6% of the total variance in PCA score plots effectively explained the separation of the physicochemical qualities of Yh and Hy processed in different harvesting seasons. In summary, Hy processed in spring was superior in its physicochemical qualities. The current results will provide scientific guidance for the production of high-quality large-leaf-variety black tea in South China.  相似文献   
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