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71.
Zn-I2 batteries have attracted attention due to their low cost, safety, and environmental friendliness. However, their performance is still limited by the irreversible growth of Zn dendrites, hydrogen evolution reactions, corrosion, and shuttle effect of polyiodide. In this work, we have prepared a new porous polymer (CD-Si) by nucleophilic reaction of β-cyclodextrin with SiCl4, and CD-Si is applied to the solid polymer electrolyte (denoted PEO/PVDF/CD-Si) to solve above-mentioned problems. Through the anchoring of the CD-Si, a conductive network with dual transmission channels was successfully constructed. Due to the non-covalent anchoring effect, the ionic conductivity of the solid polymer electrolytes (SPE) can reach 1.64×10−3 S cm−1 at 25 °C. The assembled symmetrical batteries can achieve highly reversible dendrite-free galvanizing/stripping (stable cycling for 7500 h at 5 mA cm−2 and 1200 h at 20 mA cm−2). The solid-state Zn-I2 battery shows an ultra-long life of over 35,000 cycles at 2 A g−1. Molecular dynamics simulations are performed to elucidate the working mechanism of CD-Si in the polymer matrix. This work provides a novel strategy towards solid electrolytes for Zn-I2 batteries.  相似文献   
72.
Extreme fast charging (XFC) of high-energy Li-ion batteries is a key enabler of electrified transportation. While previous studies mainly focused on improving Li ion mass transport in electrodes and electrolytes, the limitations of charge transfer across electrode–electrolyte interfaces remain underexplored. Herein we unravel how charge transfer kinetics dictates the fast rechargeability of Li-ion cells. Li ion transfer across the cathode–electrolyte interface is found to be rate-limiting during XFC, but the charge transfer energy barrier at both the cathode and anode have to be reduced simultaneously to prevent Li plating, which is achieved through electrolyte engineering. By unlocking charge transfer limitations, 184 Wh kg−1 pouch cells demonstrate stable XFC (10-min charge to 80 %) which is otherwise unachievable, and the lifetime of 245 Wh kg−1 21700 cells is quintupled during fast charging (25-min charge to 80 %).  相似文献   
73.
As an emerging class of promising porous materials, the development of two-dimensional conductive metal organic frameworks (2D c-MOFs) is hampered by the few categories and tedious synthesis of the specific ligands. Herein, we developed a nonplanar hexahydroxyl-functionalized Salphen ligand (6OH-Salphen) through a facile two-step synthesis, which was further applied to construct layered 2D c-MOFs through in situ one pot synthesis based on the synergistic metal binding effect of the N2O2 pocket of Salphen. Interestingly, the C2v-symmetry of ligand endows Cu-Salphen-MOF with periodically heterogeneous pore structures. Benefitting from the higher metal density and shorter in-plane metal-metal distance, Cu-Salphen-MOF showcased excellent NO2 sensing performance with good sensitivity, selectivity and reversibility. The current work opens up a new avenue to construct 2D c-MOF directly from nonplanar ligands, which greatly simplifies the synthesis and provides new possibilities for preparing different topological 2D c-MOF based functional materials.  相似文献   
74.
With the continuous updating of cancer treatment methods and the rapid development of precision medicine in recent years, there are higher demands for advanced and versatile drug delivery systems. Scientists are committed to create greener and more effective nanomedicines where the carrier is no longer limited to a single function of drug delivery. Polyphenols, which can act as both active ingredients and fundamental building blocks, are being explored as potential multifunctional carriers that are efficient and safe for design purposes. Due to their intrinsic anticancer activity, phenolic compounds have shown surprising expressiveness in ablation of tumor cells, overcoming cancer multidrug resistance (MDR), and enhancing immunotherapeutic efficacy. This review provides an overview of recent advances in the design, synthesis, and application of versatile polyphenol-based nanosystems for cancer therapy in various modes. Moreover, the merits of polyphenols and the challenges for their clinical translation are also discussed, and it is pointed out that the novel polyphenol delivery system requires further optimization and validation.  相似文献   
75.
A cross-1,3-dipolar cycloaddition reaction of α-halohydroxamates (in situ generated azaoxyallyl cations) with N,N′-cyclic azomethine imines was developed. The synthetic protocol provided facile and rapid access to pyrazolo[1,2-a][1,2,4]triazine derivatives in good yields and excellent diastereoselectivities under mild metal-free conditions.  相似文献   
76.
铁矿物相的准确定量对矿物价值评价及选冶工艺研究有重要作用,现有化学法流程复杂效率低,X射线衍射全谱拟合法可溯源性差,结果准确性难以评价和验证。本研究建立了以Si为内标,以Cu靶X射线为辐射光源,步进扫描方式获得衍射谱图,以待测相含量为横坐标,待测相与内标相峰面积比值为纵坐标建立校准曲线,以曲线对铁矿中Fe3O4、Fe2O3和SiO2物相进行定量的方法。试验对制样条件、扫描参数、内标物选择、积分方式、重叠峰校正等进行了优化选择,结果表明,试样全部通过45 μm标准筛,Si内标比例为10%,步进长度0.01°,步进时间30S,选择对Fe3O4(311)、Fe2O3(104)、SiO2(011)和Si(111)的衍射峰进行积分强度计算,可获得最优结果。在选定工作条件下,Fe3O4在1.07~100%范围内线性相关系数(R2)为0.9953,相对标准偏差(RSD)1.1%~13.2% (n=6),加标回收率99.7 %~114.8 %,检出限(LOD)4.29%;Fe2O3在1.51~100%范围内线性相关系数(R2)为0.9991,相对标准偏差(RSD)2.8%~10.6% (n=6),加标回收率87.1%~112.2%,检出限(LOD)2.56%;SiO2在0.79~29.72 %范围内线性相关系数(R2)为0.9957,相对标准偏差(RSD)3.2%~10.3% (n=6),加标回收率86.6%~98.9%,检出限(LOD)0.68%。方法易溯源、准确性易评价和验证,适合开展标准化检测和应用。  相似文献   
77.
引入了C-伪预解式的概念,并讨论了它的一些性质及收敛性,最后给出了C-伪预解式收敛的一个充分条件.  相似文献   
78.
应用D412螯合树脂作为富集柱填充物,将在线分离富集装置与火焰原子吸收光谱法联用测定水中镍(Ⅱ)的含量。优化的试验条件如下:1富集柱采用干法填充;2吸附介质的p H为6;3进样速率为5 m L·min-1;4 3 mol·L-1硝酸溶液(洗脱剂)用量为2.5 m L;5洗脱速率为7.5 m L·min-1。镍的质量浓度在50μg·L-1以内与其吸光度呈线性关系,检出限(3s)为0.35μg·L-1。方法用于自来水和河水样品的分析,加标回收率在96.0%~101%之间,测定值的相对标准偏差(n=7)在2.5%~3.1%之间。  相似文献   
79.
通过水热法合成了2个配位聚合物:[Cu(H2dpcp)2]n(1)和[Mn2(Hdpcp)2(H2O)2·2H2O]n(2)[H3dpcp=5-(2,4-二羧基苯基)-2-羧基吡啶],H3dpcp由3-(2,4-二羧基苯基)-2,6-二羧基吡啶(H4dpdp)原位脱羧生成。X-射线单晶衍射测得2个化合物都属于单斜晶系,化合物1结晶在P21/c空间群,a=0.639(13)nm,b=1.835(4)nm,c=1.115(2)nm,β=102.29(3)°,Z=2;化合物2结晶在C2/c空间群,a=3.126(6)nm,b=1.004(2)nm,c=1.080(2)nm,β=93.73(3)°,Z=4。化合物1以配体H2dpcp-桥连Cu( Ⅱ)形成一维链状结构。化合物2通过Hdpcp2-桥连Mn( Ⅱ)形成二维层状结构,并进一步通过氢键作用形成三维超分子结构。负的Weiss常数θ表明化合物2存在反铁磁耦合作用。  相似文献   
80.
合成了丙二硫醚桥联2个乙酰丙酮的双β-二酮分子1,3-二(3-硫醚基-2,4-戊二酮基)丙烷(L1),以此为配体与镍(Ⅱ)作用得到配合物,通过元素分析和摩尔电导分析方法确定了镍(Ⅱ)配合物的化学组成,比较分析了配位前后的游离配体与配合物的红外及紫外吸收光谱,采用紫外光谱滴定法对配体L1与Ni(Ⅱ)离子在溶液中的配位行为进行了模拟研究,并进行金属离子液膜传输实验考察了L1对Ni(Ⅱ)的液膜传输性能。结果显示,L1通过4个O原子与Ni(Ⅱ)配位成键形成配合物,且对Ni(Ⅱ)具有良好的液膜传输性。  相似文献   
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