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11.
Two kinds of ferromagnetic SiC based nanowires with and without Ni catalyst were successfully synthesized by employing microwave heating method. The comprehensive characterizations and vibrating sample magnetometer (VSM) have been applied to investigate the micro-structures and magnetic properties of as-grown nanowires. For the nanowires synthesized without using Ni catalyst, the diameters and lengths are in the range of 20–60 nm and dozens of micrometers, respectively. Particularly, the results of transmission electron microscopy (TEM) show that the nanowires consist of SiC core and SiOx shell. The SiC/SiOx coaxial nanowires exhibit room-temperature ferromagnetism with saturation magnetization (Ms) of 0.2 emu/g. As to the nanowires obtained using Ni catalyst, the scanning electron microscopy (SEM) results indicate that the Ni catalyzed nanowires have a nano-particle attached on the tip and a uniform diameter of approximately 50 nm. The vapor-liquid-solid (VLS) growth mechanism can be used to explain the formation of the Ni catalyzed nanowires. The detection result of VSM indicates that the Ni catalyzed nanowires possess the paramagnetism and the ferromagnetism, simultaneously. The enhancement of the ferromagnetism, compared with the SiC/SiOx coaxial nanowires, could be attributed to the Ni2Si and NiSi phases.  相似文献   
12.
The electronic structures and magnetic behaviors of graphene with 5d series transition metal atom substitutions are investigated by performing first-principles calculations. All the impurities are tightly bonded to single vacancy in a graphene sheet. The substitutions of La and Ta lead to Fermi level shifting to valence and conduction band, respectively. Both the two substitutions result in metallic properties. Moreover, the Hf, Os and Pt-substituted systems exhibit semiconductor properties, while the Re and Ir-substituted ones exhibit robust half-metallic properties. Interestingly, W-substituted system shows dilute magnetic semiconductor property. On the other hand, the substitution of Ta, W, Re and Ir induce 0.86 μB, 2 μB, 1 μB and 0.99 μB magnetic moment, respectively. Our studies demonstrate that the 5d series transition metal substituted graphene have potential applications in nanoelectronics, spintronics and magnetic storage devices.  相似文献   
13.
吴倩  高庆平  孙丽梅  郭焕美  台夕市  李丹  刘莉  凌崇益  孙旭平 《催化学报》2021,42(3):482-489,中插48-中插52
电化学水分解制氢作为重要的生产氢能的新能源技术,包括氢气析出反应(HER)和氧气析出反应(OER).然而,OER进行的是多步电子转移过程,动力学过程缓慢且过电位高,严重制约了电解水制氢的发展.因此开发低成本、高效稳定的非贵金属催化剂替代贵金属催化剂(RuO2,IrO2)来降低过电位,减少能源消耗十分必要.Ni3S2由于其高导电性、高活性、低成本等优点,具有作为贵金属催化剂替代品的广阔应用前景,但其OER性能仍需进一步提高.对已有的有效OER催化剂进行表界面调控是提高催化剂性能的一种有效策略.CeO2中的Ce3+和Ce4+价态之间可以灵活过渡,使其具有良好的电子/离子导电性、可逆的表面氧离子交换和较高的储氧能力.CeO2的多价性使其有机会与其它基质产生强烈的电子相互作用,良好的电子/离子导电性和较高的储氧能力是提高催化剂析氧活性的有利因素.因此,用CeO2对Ni3S2进行修饰是提高其析氧活性的有效途径.基于此,本文运用水热和电沉积相结合的方法将CeO2修饰到Ni3S2纳米片上,制备得到生长于泡沫镍上的Ni3S2-CeO2纳米片阵列(Ni3S2-CeO2/NF),并运用X射线粉末衍射(XRD)、扫描电镜(SEM)、透射电镜(TEM)、X射线光电子能谱(XPS)等手段进行了表征,以三电极系统测试了其电催化析氧性能及稳定性,并通过密度泛函理论计算进行了验证.XRD结果表明,复合材料中确实存在Ni3S2和CeO2.通过SEM发现,泡沫镍基底上均匀分布着Ni3S2纳米片阵列;电沉积CeO2后,Ni3S2-CeO2仍保持其纳米片特性,但表面变得粗糙.Ni3S2-CeO2的TEM结果也证实了纳米片结构的形成,高分辨率TEM图像清晰的显示出Ni3S2和CeO2之间具有明显的界面.XPS结果表明,Ni3S2-CeO2的Ni 2p的结合能与Ni3S2相比出现负位移.与纯CeO2的Ce 3d谱图相比,Ni3S2-CeO2杂化体系中Ce4+的比例明显增加,表明Ce的价态发生了重排,部分电子转移给了Ni元素.这些结果均说明Ni3S2与CeO2之间存在着较强的电子相互作用.相应的电催化测试结果显示,在1.0 M KOH中,当电流密度达到20 mA cm–2时,Ni3S2/NF需提供356 mV的过电位,Ni3S2-CeO2/NF只需264 mV的过电位,仅次于RuO2/NF.而且,Ni3S2-CeO2/NF在中性条件下也显示出了较理想的析氧活性.Ni3S2-CeO2/NF的Tafel斜率明显低于CeO2/NF和Ni3S2/NF,表明其具有良好的OER反应动力学.循环伏安法和计时电位法结果均表明,Ni3S2-CeO2/NF具有良好的电化学稳定性.电化学阻抗谱测试结果表明,与Ni3S2/NF和CeO2/NF相比,Ni3S2-CeO2/NF明显具有更小的半圆直径,说明其电荷转移阻抗更小,进一步表明CeO2的修饰有助于催化过程中电子的快速转移.在非法拉第区域的循环伏安扫描曲线以及拟合扫描速度对电容电流曲线结果显示,Ni3S2-CeO2/NF的最大电容值大于CeO2/NF和Ni3S2/NF,表明其暴露了更多的活性位点,具有更大的电化学活性表面积;而且,Ni3S2-CeO2/NF在400和500 mV时的电催化析氧转换频率明显高于Ni3S2/NF和CeO2/NF,进一步说明Ni3S2-CeO2/NF具有更高的本征催化活性.密度泛函理论计算表明,由于*OH,*O和*OOH与Ni3S2-CeO2中的Ni和Ce原子相互作用的存在,使得反应中间产物与Ni3S2-CeO2之间的结合强度较纯Ni3S2或CeO2强,使其显示出了更高的OER性能.在经过24 h连续电解后,SEM和TEM结果均表明,Ni3S2-CeO2/NF材料仍保持了其纳米片形貌.稳定性测试后的XPS结果表明,Ni 2p对应的峰强度降低,而与氧化镍物种对应的峰强度增强;S元素在Ni3S2-CeO2表面的信号强度明显降低.根据文献报道,在强烈的氧化环境下,过渡金属硫化物会部分转化为氧化物或氢氧化物,这通常被认为是OER过程的实际催化物种.  相似文献   
14.
Three dimensional Liesegang spherical layers of CaHPO4 in gelatin ball were performed by employing CaCl2 and Na2HPO4 as the inner and outer electrolyte, respectively. Effects of concentrations of inner and outer electrolyte as well as pH on the morphologies of Liesegang rings (LRs) were investigated. As a result, it was observed that the time law, spacing law and width law found in 1D/2D gel systems were obeyed in this 3D gelatin system. The interaction of Ca2+ and HPO4 2? with gelatin matrix played a key role to the formation of LRs due to the existence of carboxylic groups on the gelatin chains. Using Ca2+ as the inner electrolyte, LRs were prepared. However, employing HPO4 2? as inner electrolyte, LRs were not obtained. Moreover, pH of gelatin solution greatly impacted on the formation of LRs. The number of LRs increased with the decrease of pH, whereas the width inversely decreased. pH 4.40 was a turn point, from which the spacing coefficient abruptly increased as pH increased. All these results indicated that the network was created by the interaction of Ca2+ and –COO? of gelatin chains, which dominated the formation of CaHPO4 LRs in gelatin.  相似文献   
15.
Emerging as a cost-effective and robust enzyme mimic, nanozymes have drawn increasing attention with broad applications ranging from cancer therapy to biosensing. Developing nanozymes with both accelerated and inhibited biocatalytic properties in a biological context is intriguing to peruse more advanced functions of natural enzymes, but remains challenging, because most nanozymes are lack of enzyme-like molecular structures. By re-visiting and engineering the well-known Fe-N-C electrocatalyst that has a heme-like Fe-Nx active sites, herein, it is reported that Fe-N-C could not only catalyze drug metabolization but also had inhibition behaviors similar to cytochrome P450 (CYP), endowing it a potential replacement of CYP for preliminary evaluation of massive potential chemicals, drug dosing guide, and outcome prediction. In addition, in contrast to electrocatalysts, the highly graphitic framework of Fe-N-C may not be obligatory for a competitive CYP-like activity.  相似文献   
16.
设计并合成了一系列FGF401类似物以研究其FGFR4抑制、抗肿瘤活性及其构效关系.研究发现了N-(5-氰基-4-(2-甲氧基乙基氨基)吡啶-2-基)-7-甲酰基-6-(N-甲基四氢吡喃-4-甲酰胺)甲基-1,2,3,4-四氢-1,8-萘啶-1-甲酰胺(8ac)不仅在酶和细胞学水平上对FGFR4具有强效的的抑制活性,并表现出了出色的选择性.其活性及选择性优于阳性对照FGF401,并且在HCC (hepatocellular carcinoma)动物移植瘤模型中显著抑制肿瘤生长,还引起了肿瘤萎缩.  相似文献   
17.
《中国化学快报》2020,31(9):2309-2313
Conductive MOFs could exhibit full potential as integrated electrode materials for supercapacitors without interference from additional conductive additives. Here we report an anionic Co-MOF cage with zeolite framework, which was balanced by the redox-active guest [Co(H2O)6]2+ and protonated [(CH3)2NH2]2+ ions. Benefit from the unique ion skeleton structure, Co-MOF exhibits a conductivity higher than most of reported MOFs with the value of 1.42 × 10-3 S/cm, which can be directly fabricated as electrode for supercapacitors. A maximum specific capacitance of 236.2 F/g can be achieved at a current density of 1 A/g of Co-MOF. Additionally, the electric performance and morphology of this Co-MOF can be modified by cetyltrimethylammonium bromide (CTAB) and the maximum specific capacitance could increase up to 334 F/g at 1 A/g when the ratio of ligand and CTAB is 1:6 (Co-MOF-6). Furthermore, the specific capacitance can retain at 64.04% and 77.92% of the initial value after 3000 cycles of Co-MOF and Co-CTAB-6, respectively. Obviously, the addition of CTAB further improves both capacitance and cycle stability.  相似文献   
18.
为了掌握聚脲喷涂加固砖填充墙的抗爆特性,基于一种改进的大型爆炸试验装置,开展了聚脲加固框架砖填充墙的原型爆炸试验,分析了爆炸荷载作用下加固砖墙的动力响应特征和破坏过程及模式,揭示了其失效破坏机理。研究结果表明,聚脲加固可大幅提升填充墙构件的抗爆性能,显著增加填充墙构件的变形延性;加固砖墙受爆炸荷载作用发生振动的过程其体系刚度不断变化,最高相差133%;随着比例距离降低,加固砖墙的破坏模式逐渐由弯曲破坏转为剪切破坏,聚脲厚度超过6 mm可以有效限制局部剪切破坏现象;基于砖墙和聚脲涂层的抗力函数建立的理论计算模型,可以较为准确地预测爆炸作用下背爆面加固双向砖墙的正向位移响应过程。  相似文献   
19.
20.
以聚碳酸酯超滤膜为基板,用化学镀的方法在超滤膜上沉积金,制得直径在45nm左右的金纳米通道阵列,利用制得的金纳米通道阵列搭建离子电流测量平台,可实现对羊抗人IgG分子的浓度检测.当羊抗人IgG分子通过直径45nm的金纳米通道时,由于物理占位及表面电荷的影响,会引起离子电流发生变化;在KCl浓度为0.15mol/L(pH7.48)溶液中,IgG分子的物理占位对离子电流有阻塞作用,会导致电流减小,IgG浓度在1.8~18ng/mL范围内,减小量与浓度成线性关系;实现了对IgG的定量检测.KCl浓度降低到0.025mol/L时,由于IgG分子扩散层内反离子对通道内离子浓度的贡献占主导地位,从而造成离子电流随着IgG浓度增大而增大.  相似文献   
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