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161.
162.
储能技术的革命性变化对下一代锂离子电池(LIBs)负极材料提出了更高的要求。近年来,一类具有复杂化学计量比的新型材料——高熵氧化物(HEOs)逐渐进入人们的视野并走向繁荣。理想的元素可调节性和吸引人的协同效应使 HEOs有望突破传统阳极的综合性能瓶颈,为电化学储能材料的设计和发展提供新的动力。本文分别从化学成分调控和结构设计2个方面结合本课题组近年来的研究及国内外重要文献,综述了HEOs作为LIBs负极材料的研究进展。在化学成分调控方面通过金属杂原子掺杂、非金属杂原子掺杂来提高HEOs的本征活性。在结构设计方面,通过构建一维结构、二维结构、三维结构、空心结构以及复合碳材料来增加HEOs的反应活性位点数量,从而提高储锂性能。最后,对HEOs在LIBs领域的发展进行了展望。  相似文献   
163.
用不同的预处理气氛制备了CeO2/γ-Al2O3载体以调节表面Ce的价态,并以Cu(CH3COO)2为前驱体制备了CuCeAl催化剂。XRD和H2-TPR的结果表明在还原气氛下处理的CeO2/γ-Al2O3载体具有更多的活性氧原子,因此相应的CuCeAl催化剂表面有更多分散态的Cu2+/Cu+物种。NO+CO反应的结果表明分散态的Cu2+/Cu+是NO转化的活性物质,而Cu0在低温下具有较好的N2选择性。因此,同时含有分散态Cu2+/Cu+和少量晶相Cu0的催化剂具有最好的催化性能。  相似文献   
164.
在细胞和分子水平上,研究了稀土化合物氯化铽(TbCl3)对成骨细胞MC3T3-E1增殖、分化及矿化功能的影响。结果表明,细胞水平上,浓度为0.0001、0.001、0.01、0.1、1和10 μmol·L-1的TbCl3均促进MC3T3-E1细胞的增殖、分化及其矿化功能,然而,当浓度升至为100和1000 μmol·L-1时,TbCl3表现出抑制作用。分子水平上,浓度为0.0001和0.1 μmol·L-1的TbCl3明显上调成骨分化相关基因骨形成蛋白2(BMP-2),碱性磷酸酶(ALP),骨涎蛋白(BSP),Ⅰ型胶原蛋白(Col Ⅰ),骨钙素(OCN)和runt 相关转录因子2(Runx2)的表达。浓度为1 000 μmol·L-1的TbCl3则抑制上述成骨分化相关基因的表达。浓度为0.000 1、0.1和1 μmol·L-1的TbCl3促进成骨分化相关蛋白Runx2,BMP-2和OCN的表达;结果显示,低浓度的TbCl3促进MC3T3-E1细胞的成骨分化及矿化功能,而高浓度TbCl3则呈现出抑制作用。TbCl3通过调控Runx2的表达刺激早期成骨分化相关基因BMP-2、Col Ⅰ和晚期成骨分化相关基因ALP、OCN的表达,从而诱导MC3T3-E1成骨分化。  相似文献   
165.
黄渤海近岸海域酚类内分泌干扰物分布特征及其来源解析   总被引:1,自引:0,他引:1  
在黄渤海近岸海域采集了34个水体样品,利用HPLC-MS/MS分析了双酚A、辛基酚、壬基酚、2,4-二氯酚、对叔丁基苯酚和对特辛基苯酚等6种酚类内分泌干扰物的含量,并探讨了其分布特征及来源.结果表明,中国北部近岸海域6种酚类内分泌干扰物的含量范围在5.25~1351.20ng/mL之间.结合因子分析和层次聚类分析结果,说明渤海、黄海近岸海域中酚类化合物主要以辛基酚、壬基酚、2,4-二氯酚为主,局部海域伴有双酚A的高残留;从整个海域范围看,黄渤海近岸海域水体中酚类化合物污染状况具有区域特征,整体呈现出南高北低的特点,且酚类物质分布具有明显的地区特性,一定程度上具有聚集性;来源解析结果表明黄渤海近岸海域中酚类内分泌干扰物主要来源为生活污水和工业废水.  相似文献   
166.
光谱分析法研究瓜环对苯并咪唑衍生物的分子识别   总被引:1,自引:0,他引:1  
利用紫外吸收光谱法、荧光光谱法测定了三种苯并咪唑衍生物与六、七、八元瓜环的相互作用,计算出了主客体配合物的稳定常数,并考察了酸度对苯并咪唑衍生物与瓜环相互作用的影响,最后用紫外吸收光谱法测定了瓜环对三种客体化合物的回收率。实验结果表明:在一定的pH范围内,用紫外吸收光谱法、荧光光谱法可以很明显的观察到瓜环与三种客体的相互作用。六元瓜环与客体相互作用形成1∶1的包结配合物,七、八元瓜环与客体相互作用分别形成1.5∶1和1∶2的包结配合物,六、八元瓜环与三种客体相互作用形成的主客体配合物的稳定常数分别在103~104L·mol-1和1011~1012L2·mol-2范围内。瓜环对三种客体的回收率在98%~105%之间。  相似文献   
167.
The perfluoroalkyl substances(PFS) have attracted considerable attention in recent years as a persistent global pollutant to be able to bioaccumulate in higher organisms.In this paper,theoretical analysis on electronic structures,optoelectronic properties and absorption spectra properties of the perflurooctane sulfonate(PFOS) in gas phase have been investigated by using the DFT/TD-DFT method.The geometric structures,electrostatic potentials,energy gaps,ionization potentials,electron affinities,frontier molecular orbital,excitation energies and absorption spectra for the ground state of PFOS were calculated.The result indicates that the ability of accepting electron of neutral PFOS is larger than that of anionic PFOS,while the electron excited by UV irradiation from HOMO to LUMO in the anionic PFOS is easier than that in the neutral PFOS.  相似文献   
168.
Two new prodrugs, bearing two and three 5‐fluorouracil (5‐FU) units, respectively, have been synthesized and were shown to efficiently treat human breast cancer cells. In addition to 5‐FU, they were intended to form complexes through H‐bonds to an organo‐bridged silane prior to hydrolysis‐condensation through sol–gel processes to construct acid‐responsive bridged silsesquioxanes (BS). Whereas 5‐FU itself and the prodrug bearing two 5‐FU units completely leached out from the corresponding materials, the prodrug bearing three 5‐FU units was successfully maintained in the resulting BS. Solid‐state NMR (29Si and 13C) spectroscopy show that the organic fragments of the organo‐bridged silane are retained in the hybrid through covalent bonding and the 1H NMR spectroscopic analysis provides evidence for the hydrogen‐bonding interactions between the prodrug bearing three 5‐FU units and the triazine‐based hybrid matrix. The complex in the BS is not affected under neutral medium and operates under acidic conditions even under pH as high as 5 to deliver the drug as demonstrated by HPLC analysis and confirmed by FTIR and 13C NMR spectroscopic studies. Such functional BS are promising materials as carriers to avoid the side effects of the anticancer drug 5‐FU thanks to a controlled and targeted drug delivery.  相似文献   
169.
The metal‐directed supramolecular synthetic approach has paved the way for the development of functional nanosized molecules. In this work, we report the preparation of the new nanocapsule 3? (CF3SO3)8 with a A4B2 tetragonal prismatic geometry, where A corresponds to the dipalladium hexaazamacrocyclic complex Pd‐1 , and B corresponds to the tetraanionic form of palladium 5,10,15,20‐tetrakis(4‐carboxyphenyl)porphyrin ( 2 ). The large void space of the inner cavity and the supramolecular affinity for guest molecules towards porphyrin‐based hosts converts this nanoscale molecular 3D structure into a good candidate for host–guest chemistry. The interaction between this nanocage and different guest molecules has been studied by means of NMR, UV/Vis, ESI‐MS, and DOSY experiments, from which highly selective molecular recognition has been found for anionic, planar‐shaped π guests with association constants (Ka) higher than 109 M ?1, in front of non‐interacting aromatic neutral or cationic substrates. DFT theoretical calculations provided insights to further understand this strong interaction. Nanocage 3? (CF3SO3)8 can not only strongly host one single molecule of M(dithiolene)2 complexes (M=Au, Pt, Pd, and Ni), but also can finely tune their optical and redox properties. The very simple synthesis of both the supramolecular cage and the building blocks represents a step forward for the development of polyfunctional supramolecular nanovessels, which offer multiple applications as sensors or nanoreactors.  相似文献   
170.
One of the most important reactions in fullerene chemistry is the Diels–Alder (DA) reaction. In two previous experimental studies, the DA cycloaddition reactions of cyclopentadiene (Cp) and 1,2,3,4,5‐pentamethylcyclopentadiene (Cp*) with La@C2v‐C82 were investigated. The attack of Cp was proposed to occur on bond 19 , whereas that of Cp* was confirmed by X‐ray analysis to be over bond o . Moreover, the stabilities of the Cp and Cp* adducts were found to be significantly different, that is, the decomposition of La@C2v‐C82Cp was one order of magnitude faster than that of La@C2v‐C82Cp*. Herein, we computationally analyze these DA cycloadditions with two main goals: First, to compute the thermodynamics and kinetics of the cycloadditions of Cp and Cp* to different bonds of La@C2v‐C82 to assess and compare the regioselectivity of these two reactions. Second, to understand the origin of the different thermal stabilities of the La@C82Cp and La@C82Cp* adducts. Our results show that the regioselectivity of the two DA cycloadditions is the same, with preferred attack on bond o . This result corrects the previous assumption of the regioselectivity of the Cp attack that was made based only on the shape of the La@C82 singly occupied molecular orbital. In addition, we show that the higher stability of the La@C82Cp* adduct is not due to the electronic effects of the methyl groups on the Cp ring, as previously suggested, but to higher long‐range dispersion interactions in the Cp* case, which enhance the stabilization of the reactant complex, transition state, and products with respect to the separated reactants. This stabilization for the La@C82Cp* case decreases the Gibbs reaction energy, thus allowing competition between the direct and retro reactions and making dissociation more difficult.  相似文献   
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