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The chiral phase transition and equation of state are studied within a novel self-consistent mean-field approximation of the two-flavor Nambu-Jona-Lasinio model. In this newly developed model, modifications to the chemical μ and chiral chemical \begin{document}$\mu_5$\end{document} potentials are naturally included by introducing vector and axial-vector channels from Fierz-transformed Lagrangian to the standard Lagrangian. In the proper-time scheme, the chiral phase transition is a crossover in the \begin{document}$T-\mu$\end{document} plane. However, when \begin{document}$\mu_5$\end{document} is incorporated, our study demonstrates that a first order phase transition may emerge. Furthermore, the chiral imbalance will soften the equation of state of quark matter. The mass-radius relationship and tidal deformability of quark stars are calculated. The maximum mass and radius decrease as \begin{document}$\mu_5$\end{document} increases. Our study also indicates that the vector and axial-vector channels exhibit an opposite influence on the equation of state.  相似文献   
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Zhang  Ning  Zhang  Bin  Pang  Yong  Yang  Hong-Sheng  Zong  Lu  Duan  Yong-Xin  Zhang  Jian-Ming 《高分子科学》2022,40(4):373-383
Chinese Journal of Polymer Science - Macromolecule nanocrystal network and strong interfacial interaction are always beneficial to enhance the mechanical property of polymer-based nanocomposites....  相似文献   
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Elucidation of relationship among chemical structure, cellular uptake, localization, and biological activity of anticancer metal complexes is important for the understanding of their mechanisms of action. Organometallic rhenium(I) tricarbonyl compounds have emerged as potential multifunctional anticancer drug candidates that can integrate therapeutic and imaging capabilities in a single molecule. Herein, two mononuclear phosphorescent rhenium(I) complexes ( Re1 and Re2 ), along with their corresponding dinuclear complexes ( Re3 and Re4 ), were designed and synthesized as potent anticancer agents. The subcellular accumulation of Re1–Re4 was conveniently analyzed by confocal microscopy in situ in live cells by utilizing their intrinsic phosphorescence. We found that increased lipophilicity of the bidentate ligands could enhance their cellular uptake, leading to improved anticancer efficacy. The dinuclear complexes were more potent than the mononuclear counterparts. The molecular anticancer mechanisms of action evoked by Re3 and Re4 were explored in detail. Re3 with a lower lipophilicity localizes to lysosomes and induces caspase‐independent apoptosis, whereas Re4 with higher lipophilicity specially accumulates in mitochondria and induces caspase‐independent paraptosis in cancer cells. Our study demonstrates that subcellular localization is crucial for the anticancer mechanisms of these phosphorescent rhenium(I) complexes.  相似文献   
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Alkane nanocapsule is a kind of promising phase-change material. However, it is difficult to prepare alkane nanocapsule with an elastic shell by traditional method. Therefore, nonionic polyurethane with specially designed structure was synthesized. Octadecane nanocapsule prepared by this polyurethane not only had an elastic shell but also showed some good properties in other aspects. The polyurethane structure was characterized by infrared, hydrogen-1 nuclear magnetic resonance, and gel permeation chromatography. The conductivity of emulsification process was tracked. The average particle sizes of nanocapsules were measured by quasi-elastic light scattering and fell in the range of 240 to 485 nm. Octadecane nanocapsules showed a core–shell structure under transmission electron microscopy. The nanocapsule dispersions had a rather good stability under high-speed shearing and freezing–thawing tests. All of the coalescence ratios were less than 5 wt.% after testing. The fusion enthalpy of nanocapsules reached to 83 J g?1. It was found that the dried nanocapsule powder had rather good re-dispersion ability, and stable dispersions were obtained simply by agitating the powder into water. Coalescences of re-dispersed dispersions were all less than 1.8 wt.%, and their average particle sizes were in the range of 420 to 675 nm. There was almost no change in fusion enthalpy and melt temperature before and after re-dispersion, which indicated that the polyurethane shell had a good protection of octadecane from leaking out of the nanocapsule.  相似文献   
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Competition from hydrogen/oxygen evolution reactions and low solubility of N2 in aqueous systems limited the selectivity and activity on nitrogen fixation reaction. Herein, we design an aerobic-hydrophobic Janus structure by introducing fluorinated modification on porous carbon nanofibers embedded with partially carbonized iron heterojunctions (Fe3C/Fe@PCNF-F). The simulations prove that the Janus structure can keep the internal Fe3C/Fe@PCNF-F away from water infiltration and endow a N2 molecular-concentrating effect, suppressing the competing reactions and overcoming the mass-transfer limitations to build a robust “quasi-solid–gas” state micro-domain around the catalyst surface. In this proof-of-concept system, the Fe3C/Fe@PCNF-F exhibits excellent electrocatalytic performance for nitrogen fixation (NH3 yield rate up to 29.2 μg h−1 mg−1cat. and Faraday efficiency (FE) up to 27.8 % in nitrogen reduction reaction; NO3 yield rate up to 15.7 μg h−1 mg−1cat. and FE up to 3.4 % in nitrogen oxidation reaction).  相似文献   
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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. 随着水热时间的延长, HZSM-5分子筛壳层不断增厚, 结晶度不断增大, 但分子筛组成基本不变, 酸量与分子筛壳层厚度正相关. 在费托合成反应中, Raney Fe@HZSM-5核壳催化剂上的CO转化率和汽油段产物选择性随分子筛壳层厚度呈火山型变化趋势, 说明反应需要适宜的酸量, 酸量过低或过高均不利于得到高的催化活性及汽油段产物选择性. 在水热合成时间为4 d制得的Raney Fe@HZSM-5核壳催化剂上, 当CO转化率为92%时, C5~C11汽油段产物选择性可达71%, 异正比为1.9. 当合成气中的n(H2)/n(CO)比从2降为1时, 汽油段产物选择性和异正比进一步提高至73%和2.1, 显示了将该催化剂用于煤基或生物质基合成气转化为高辛烷值汽油的良好潜力.  相似文献   
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催化剂的微观结构在催化还原反应、有机物氧化反应及有机物转化反应中起着关键作用。本文利用无模板方法合成了多金核中空二氧化铈微球催化剂。将制备好的二氧化铈中空微球浸渍到一定浓度的氯金酸溶液中,然后多次洗涤除去表面吸附的氯金酸离子,最后通过硼氢化钠还原制成中空氧化铈微球包覆的多金核的核壳结构催化剂。将该核壳结构材料用于硝基苯酚加氢反应与金纳米粒子及氧化铈微球相比,多金核中空二氧化铈核壳结构表现出优越的活性和稳定性。通过这种浸渍洗涤再还原的简单方法合成的多金核二氧化铈催化剂有望应用于生物医药和能源环境等领域。  相似文献   
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A pentanidium‐catalyzed highly enantioselective conjugate addition of 3‐alkyloxindoles to phenyl vinyl sulfone has been demonstrated. This approach allows the construction of 3,3‐dialkyl‐substituted oxindole frameworks with high yield and excellent enantioselectivity (up to 99 %) under simple phase‐transfer conditions. A variety of oxindoles bearing all‐carbon quaternary stereogenic centers were obtained in the presence of 0.25 mol % pentanidium. Meanwhile, practicality was illustrated by a gram‐scale asymmetric synthesis of two 3,3‐dialkyl‐substituted oxindoles. The resulting adduct can be smoothly transformed to the natural product analogue in a short synthetic route.  相似文献   
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