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111.
1 INTRODUCTION The rational design and synthesis of new metal- organic coordination polymers have generated con- siderable interest in supramolecular chemistry and material science owing to their intriguing structural diversities and potential applications as functional materials[1~3]. Molecular self-assembly has been pro- ved to be an efficient way to construct various inte- resting coordination polymers[4~6]. The coordina- tion covalent bond, hydrogen bond or other mole- cular interact… 相似文献
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In the 21st century, hydrogen energy is a novel energy source. Its use is expected to mitigate the problems of environmental pollution and global warming caused by the excessive use of conventional fossil fuels. The hydrogen evolution reaction (HER) for water splitting has attracted considerable attention because of its environmental friendliness. To improve electrocatalyst performance and reduce operation cost, carbon-based metal hybrid materials exhibiting high efficiency and catalytic activity have been developed. Among them, carbon dots (CDs) have garnered significant research attention and have been widely applied in biosensing, bioimaging, and energy conversion/storage because of their facile synthesis, biocompatibility, tunable photoluminescence, excellent stability, and good electronic properties. CDs are widely used as carriers in the construction of electrocatalysts prepared from carbon-based metal hybrid materials. At present, it is believed that CDs exhibit excellent confinement effects, which can effectively inhibit the growth and agglomeration of metal nanoparticles, thereby preparing well-distributed carbon-based metal hybrid materials with a uniform and controllable size. However, the formation process of the small-molecule raw materials of CDs has not been elucidated. In this study, CDs and small-molecule raw materials from synthetic CDs were used as precursors to prepare nitrogen-doped CD-supported ruthenium nanoparticle (Ru@CDs) and small-molecule-supported ruthenium nanoparticle (Ru@Molecule) hybrid materials, respectively. The interaction between the small molecules and Ru in the process of CD formation and the effect on HER performance were explored. Moreover, we prepared different carriers such as metal organic frameworks(MOF), carbon nanotubes (CNTs), and graphene (GO)-supported ruthenium nanoparticle hybrid materials. Among them, Ru@CDs exhibited controllable size and excellent dispersibility and exhibited outstanding HER activity and good stability. Ru@CDs were found to require a low overpotential of 22 mV to reach a current density of 10 mA·cm−2. Moreover, we observed the presence of an intermediate state between the molecules and CDs and demonstrated that the intermediate state exhibits no confinement effect. Furthermore, we found that with increasing calcination temperature, the intermediate state gradually changes to CDs. The unique spatial confinement between CDs and metal ions is key to the formation of monodisperse Ru nanoparticles. Our results confirmed that Ru@CDs serve as excellent HER catalyst supports. This work not only reveals the effect of the unique spatial confinement of CDs on the supported metals and their promoting effect on electrocatalytic activity but also provides guides the future development of CD-based metal hybrid electrocatalysts. 相似文献
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若干3d过渡金属的硫代脯氨酸配合物 总被引:4,自引:0,他引:4
合成了七个新的过渡金属的硫代脯氨酸(tcH)配合物,它们分别是:[M(tc)_2](M=Mn(Ⅱ),Co((Ⅱ))和Ni(Ⅱ)),[Ni(tc)(Ac)(H_2O)],[Ni(tc)(tcH)(H_2O)]NO_3·H_2O,[Ni(tc)(Py)_2(H_2O)NO_3和[Fe(tc)_2(Cl)(H_2O)]。上述配合物的磁化率,摩尔电导,热量分析,红外及电子光谱数据表明,它们都具有八面体构型,tcH主要通过亚氨氮和羧基氧原子与金属键合。文章对这些配合物的可能结构作了初步的讨论。 相似文献
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本文以烯烃、芳烃、多核芳烃、烯烃-烷烃混合物、烯烃-多核芳烃混合物、氯代烃和溴代烃等类型的化合物为代表, 考察了化合物结构对气相色谱-微波等离子体发射光谱联用测定化合物经验式结果的影响。对属于同系物的烃类选其中任一种为参比物, 测定准确度不受化合物结构的影响; 对含有非同系物的混合物, 如烯烃-多核芳烃, 参比物和被测物的结构对测定结果准确度有一定的影响, 选择其中的非同系物作参比物时, 所测得的经验式准确度相对较差; 含卤素原子的化合物结构对经验式测定影响较大, 必须选择结构相近(碳架结构和卤素原子数相近)的化合物作为经验式测定的参比物。 相似文献
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研究了用B掺杂替代Al对AB5型稀土贮氢合金相结构和电化学性能的影响。对M1Ni3.55Co0.75Mn0.4Al0.3-xBx(x=0,0.1,0.2,0.3)合金的研究结果表明:掺B后贮氢合金出现了CeCo4B第二相,导致贮氢合金的电化学容量下降;随B含量的增加和Al含量的减少,氢的扩散系数明显上升,合金的极化电阻减小,合金的高倍率放电性能和低温性能得到明显改善。 相似文献
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Pt3Co核-Pt壳型纳米粒子的制备及磁性 总被引:1,自引:1,他引:1
Pt3Co alloy nanoparticles were prepared by the reduction of H2PtCl6 and Co(OOCCH3)2 using NaBH4 as a reducing agent. The Pt3Co core-Pt shell nanoparticles (Pt3Co@Pt) were synthesized using hydrogen absorption reduction and characterized by plasma-atomic emission spectrometry (ICP), transmission electron microscopy (TEM), X-ray diffraction (XRD) and SQUID magnetometer. The results show that average size of Pt3Co@Pt nanoparticles is 3.6 nm with a standard deviation of 0.9 nm. Heating Pt3Co nanoparticles in air at 700 ℃ for 1 h, Co in Pt3Co nanoparticles was oxidized to Co3O4 and CoO; while no oxidation tendency was detected for Pt3Co@Pt nanoparticles. The crystallize structure of Pt3Co@Pt changed from the face centered cube (fcc) to the face centered tetragonal (fct) after the heating treatment. The coercivity of the heated Pt3Co@Pt reached to 276 Oe at room temperature. 相似文献
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以(+)-4,10-二氧杂三环[5.2.1.O^2,6]-癸-8-烯-3-醇为原料。经8步反应,对映选择性地合成出去氧维生素H的重要中间体:(2S,3S,4R)-2-正戊基-3,4-二叠氮基四氢噻吩。为对映选择性合成手性四氢噻吩类化合物提供了新的方法。 相似文献