【无机化学学报】doi: 10.11862/CJIC.20240255
采用原位聚合法制备了氯氧化铋(BiOCl)与聚苯胺(PANI)复合的Ⅱ型异质结光催化剂BiOCl/PANI,并采用X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)、透射电子显微镜(TEM)、X射线光电子能谱(XPS)、紫外可见漫反射光谱(UV-Vis DRS)和N2吸附-脱附测试等多种技术手段对其进行了表征,考察了BiOCl/PANI在模拟可见光下对罗丹明B (RhB)的光催化降解性能。实验结果表明:BiOCl/PANI催化剂比PANI和BiOCl具有更高的光催化活性,在RhB质量浓度为50 mg·L-1、PANI与BiOCl的物质的量之比为0.02∶1、50 mg·L-1的催化剂条件下,所制备的BiOCl/PANI光催化150 min后,RhB降解率为98.8%,速率常数为0.031 min-1;经过4次循环实验后,RhB降解率从98.8%降低至98.4%,表现出良好的稳定性和可重复利用性。光催化剂BiOCl/PANI实现了电子和空穴对的快速分离,降低了二者在催化剂内部的复合速率,提高了光催化性能。
【大学化学】doi: 10.12461/PKU.DXHX202405147
仪器分析实验“分子荧光法测定罗丹明B的含量”存在实验过于简单、未考虑实际情况等问题。因此,本改进实验在三维荧光扫描模式下获取样本数据,不进行复杂预处理,而是运用化学计量学算法解析出目标分析物的纯信号,进而实现了染色辣椒中罗丹明6G和123的同时测定。本改进实验提高了学生全面考虑问题和创新解决问题的能力。
【大学化学】doi: 10.3866/PKU.DXHX202311043
介绍了用Diamond软件构造47种晶体单形模型的方法及其在教学中的应用。
【无机化学学报】doi: 10.11862/CJIC.20240219
A simple two-step hydrothermal method synthesized four different CdS/Fe3O4 photocatalysts with varying ratios of mass of CdS to Fe3O4. The composition and morphology of the prepared samples were investigated using X-ray diffraction (XRD), Raman spectrum, X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM), and transmission electron microscopy (TEM). Solid UV reflectance spectra testing found that CdS/Fe3O4 nanocomposites had good light absorption throughout the spectral range, promoting their photocatalytic properties. Under visible light irradiation, CdS/Fe3O4 (2:5) with a mass ratio of 2:5 exhibited excellent photocatalytic performance, with a degradation rate of 98.8% for rhodamine B. Furthermore, after five cycles of photocatalytic degradation reaction, the rhodamine B degradation rate remained at 96.2%, indicating that the photocatalysts have good photocatalytic stability.
【无机化学学报】doi: 10.11862/CJIC.20250028
A flower-like BiOBr photocatalyst (CS/BiOBr) was prepared by using the carbon material derived from corn straw (CS) as the carrier. The prepared composites were characterized by X - ray diffraction (XRD), Fourier transform infrared (FIIR) spectra, scanning electron microscope (SEM), X - ray photoelectron spectra (XPS), and UV-Vis diffuse reflectance spectra (UV-Vis DRS). The SEM analyses indicate that the introduction of CS promotes the formation of a unique flower-like structure in BiOBr, which not only optimizes the efficiency of light capture but also increases the specific surface area of BiOBr. The bandgap of the composite was narrower compared with the pure BiOBr. The CS/BiOBr composites exhibited higher photocatalytic activity than pure CS and BiOBr under visible light irradiation, and a higher first-order reaction rate constant (k) of 0.043 7 min-1 than BiOBr (0.014 6 min-1), and exhibited excellent stability and reusability during the cyclic run. The enhanced photocatalytic activity is attributed to the efficient separation of photoinduced electrons and holes. Superoxide radicals and holes were the major active species.
【无机化学学报】doi: 10.11862/CJIC.20250311
Bi2O3@BiVO4 composites were synthesized using the solvothermal method with ethylene glycol as the solvent. Bi2O3 was grown on the surface of BiVO4 by regulating the reaction temperature. The adsorption performance of the composite for rhodamine B (RhB) was investigated. The results indicate that the reaction temperature significantly impacts the morphology and adsorption performance of Bi2O3@BiVO4. The Bi2O3@BiVO4 composite prepared at 180 ℃ (180-BO@BVO) consisted of nanoparticles with an average size of 7 nm, featuring a higher concentration of oxygen vacancies on the surface, but with a lower specific surface area (only 1.2 m2·g-1). 180-BO@BVO, with oxygen species adsorbed at surface oxygen vacancies carrying a negative charge, achieved an impressive RhB removal efficiency of up to 83.0% through electrostatic interaction with RhB. The adsorption process follows the Langmuir isotherm and the pseudo-second-order kinetic model, suggesting that it is predominantly governed by chemical adsorption. After five cycles of adsorption experiments, the removal efficiency of RhB by composites remained basically unchanged (more than 80%), demonstrating excellent regeneration performance.
【大学化学】doi: 10.12461/PKU.DXHX202506057
本文介绍了一种污水处理方法——光催化-非均相芬顿耦合技术,引导学生以光芬顿降解罗丹明B作为研究对象。采用原位离子交换反应制备硫化FeOCl (FeS/FeOCl)异质结催化剂,表征其结构、形貌和光学性质,并探究其光芬顿降解罗丹明B的性能。该实验易于操作,现象明显,有助于提高本科生的实验操作技能,培养科研能力,并增强环保意识。
【无机化学学报】doi: 10.11862/CJIC.20240231
A mononuclear CoⅡ complex, [Co(H2dapsc)(H2O)Cl]Cl·2H2O (1), with a pentagonal bipyramidal configuration was obtained by reflux reaction of CoCl2·6H2O and 2, 6-diacetylpyridine-bis(semicarbazone) (H2dapsc) in a mixed solvent of water and ethanol. The neutral ligand H2dapsc molecule provides five coordination atoms to form the equatorial plane of 1, while a water molecule and a Cl- ion occupy their axial positions. At the same time, the solid structure contains a valence counteranion Cl- ion and two lattice water molecules. The study of DC magnetic susceptibility indicates that complex 1 has strong magnetic anisotropy. The AC magnetic properties show the existence of slow magnetic relaxation behavior, which is dominated by both direct and Raman processes. The energy barrier for magnetization reversal was 55.55 K. Based on theoretical calculations, it can be concluded that the main reason for the slow magnetic relaxation behavior is the rhombic anisotropy of the pentagonal bipyramidal structure. The calculated D and E values were 45.68 and-0.32 cm-1.
【大学化学】doi: 10.12461/PKU.DXHX202406023
单分子电子学作为纳米技术的重要分支,致力于研究单个分子的电学特性,为发展超小型、低功耗电子器件提供理论基础与技术支撑。精确调控单分子结的电子传输性质,是该领域面临的核心技术挑战。电化学调控,凭借其卓越的调控性和可逆性,正成为单分子电子学中一个极具潜力的研究方向。本文综述了近十年电化学调控在单分子电子学中的应用进展,涵盖了电输运能级、分子价态、电极与分子间键合方式以及离子液体双电层栅极的调控策略。通过分析具体案例,旨在帮助学生了解单分子电子学的研究前沿,理解其在现代纳米电子学中的重要性。
【物理化学学报】doi: 10.1016/j.actphy.2025.100100
乙醇脱氢是乙醇催化转化过程中的关键基元步骤,铜(Cu)基合金催化剂是该反应最具前景的候选材料。然而,由于合金催化剂在反应条件下固有的结构复杂性和动态演变特性,阐明合金组分与主体金属间协同效应的内在机制仍具挑战性。本研究设计了结构明确的单原子钯(Pd)修饰Cu-MFI催化剂用于乙醇脱氢制乙醛和氢气。通过球差校正高角环形暗场扫描透射电子显微镜(AC-HAADF-STEM)、X射线吸收光谱(XAS)、X射线光电子能谱(XPS)等系统表征结合密度泛函理论(DFT)计算表明,Pd原子被均匀分散在Cu催化剂表面并被Cu原子隔离,该单原子位点配位数为9–10、带−0.36e电荷。在乙醇脱氢反应中,新生成的Pdδ−和Cuδ+位点协同作用降低了乙醇中C—H键断裂的活化能垒,同时增强了氢吸附和H—H键耦合能力,使得Pd/Cu-MFI催化剂获得更高的乙醇转化率和乙醛产率。
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