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22.
This paper reports the development of a facile and effective approach, based on the use of Zr-based metal-organic frameworks (UiO-66) sensor with micropores geometry, shape and particle morphology for the visual detection and removal of ultra-traces of some toxic metal ions such as Bi(III), Zn(II), Pb(II), Hg(II) and Cd(II). UiO-66 was used as selective carriers for accommodating hydrophobic chromophore probes such as dithizone (DZ) without coupling agent for sensitive and selective discrimination of trace level of toxic analytes. The developed UiO-66 sensor was utilized for the detection of ultra-traces of some toxic metal ions with the naked eye. The new sensor displays high sensitivity and selectivity of a wide range of detectable metals analytes up to 10−10 mol dm−3 in solution, in a rapid analyte uptake response (seconds). The developed sensor is stable, cost effective, easy to prepare, and would be useful for rapid detection and removal of ultra-traces of toxic metal ions in water samples. 相似文献
23.
Matthias Ermer Julian Mehler Björn Rosenberger Dr. Marcus Fischer Dr. Peter S. Schulz Prof. Martin Hartmann 《ChemistryOpen》2021,10(2):233-242
Using ionic liquids (ILs) as linker precursors, the well-known metal-organic framework (MOF) UiO-66 (Universitetet i Oslo) and the recently reported MOF hcp UiO-66 (hexagonal closed packed) have been successfully synthesized and characterized. The advantage of the applied novel synthesis approach is an economically and environmentally benign work-up procedure, due to the better solubility of the IL. Additionally, the reactivity of the terephthalate anions is increased compared to terephthalic acid, resulting in faster MOF formation with an increased amount of defects in the MOF structure. In order to explore to the influence of defects on the catalytic performance, the cyclisation of citronellal to isopulegol was employed as test reaction. The activity of hcp UiO-66 and fcc UiO-66 (face centered cubic) is improved compared to other MOF or zeolite based catalysts, while the selectivity is similar. 相似文献
24.
通过后合成修饰方法(PSM)构筑了空心纳米球(Void@UiO-66-Ⅰ)和实心块(UiO-66-Ⅰ) 2种形貌的季铵盐功能化UiO-66-NH2(Zr), 得到兼具酸碱活性位点和氢键给体的新型功能化金属-有机框架材料. 通过一系列表征证明2种催化剂的成功合成, 并将它们用于催化转化CO2和氧化苯乙烯的环加成反应. 由于Void@UiO-66-Ⅰ催化剂的季铵盐部分含有大量的羟基和卤素阴离子, 可以通过氢键和亲核攻击与环氧化合物连接, 诱导环氧化合物开环, 促使反应顺利进行, 且催化剂的中空结构有利于物质进出催化剂, 起到加快反应速率的作用, 使得该催化剂在CO2与氧化苯乙烯环加成反应中表现出比实心块UiO-66-Ⅰ催化剂更好的催化性能. Void@UiO-66-Ⅰ催化剂在120 ℃, CO2压力为1.2 MPa, 反应时间为6 h, 无溶剂和助催化剂的反应条件下, 碳酸苯乙烯酯的收率和选择性分别为85.5%和95%. 相似文献
25.
β-cyclodextrin (β-CD) based materials have been studied widely as adsorbents and filter membranes for removing pollutants in air or water applications. The present study aimed to develop a sandwich structure of eletrospun nanofibrous membrane based on β-cyclodextrin and PA66 to achieve the high mechanical strength and flow-through adsorption of heavy metal ions in water. The surface and cross section morphology of PA66/β-cyclodextrin/PA66 nanofibrous membranes (PA66/β-CD/PA66 NMs) were examined using scanning electron microscopy (SEM). The physicochemical and mechanical properties of PA66/β-CD/PA66 NMs were analyzed by differential scanning calorimetry (DSC), thermogravimetric (TG) analysis and universal testing machine. The diameter of β-CD and PA66 electrospun fibers are 300–400 nm and 20–40 nm respectively. PA66/β-CD/PA66 NMs show a loosely arranged fibers and layer by layer structure. The tensile strength increases remarkably for PA66/β-CD/PA66 NMs, from 1.33 MPa of β-CD NMs to 23.17 MPa and the Young's modulus increases from 34.8 MPa to 253.3 MPa. The mechanical behavior of PA66/β-CD/PA66 NMs is a typical brittle fracture, and its microcosmic fracture diagrams are also involved. TGA/DSC results confirm the thermal crosslinking reaction is effective and complete. On the basis of SEM, DSC, TG and mechanical behavior analysis results, the molecular mechanism of in situ thermal crosslinking reaction is discussed. Fe3+、Ni2+ were used to confirm the ability to absorb heavy metal ions of PA66/β-CD/PA66 NMs. In conclusion, PA66/β-CD/PA66 NMs could be a promising solution for removal of metal ions by flow-through adsorption. 相似文献
26.
Dr. Tawheed Hashem Dr. Elvia P. Valadez Sánchez Dr. Peter G. Weidler Dr. Hartmut Gliemann Dr. Mohamed H. Alkordi Prof. Christof Wöll 《ChemistryOpen》2020,9(5):524-527
High quality, monolithic UiO-66-NH2 thin films on diverse solid substrates have been prepared via a low temperature liquid phase epitaxy method. The achievement of continuous films with low defect densities and great stability against high temperatures and hot water is proven, clearly outperforming other reported types of MOF thin films. 相似文献
27.
实际废水中存在的离子会对有机污染物的光催化降解产生影响。以ZrCl4和2,5-二羟基对苯二甲酸为原料,通过水热合成法成功制备了金属有机骨架材料UIO-66-2OH。通过红外(IR)、X射线粉末衍射(XRD)、X射线光电子能谱(XPS)和扫描电子显微镜(SEM)对UIO-66-2OH的结构进行表征。利用水中常见的金属阳离子和无机阴离子,探索UIO-66-2OH的光催化性能。研究发现,金属阳离子Fe3+和无机阴离子HCO3-、CO32-可以加快光催化降解的速度。然而,金属离子Na+、K+、Ca2+、Mg2+、Cu2+和无机阴离子Cl-、SO42-、PO43-会抑制光催化性能,且离子价态越高,抑制效果越明显。 相似文献
28.
以金属有机骨架材料UIO-66热解制备了具有片层簇状结构ZrO2.UIO-66热解条件影响CoMo S/ZrO2的晶相、表面原子含量、形貌以及比表面积(可达117.7 m2/g).随着热解温度升高,ZrO2晶相呈现由四方相向单斜相的转化,表面Mo含量呈现先减小后增加的趋势,片层结构逐渐变短,而簇状结构则逐渐由蓬松变得致密,比表面积逐渐减小.热解温度为600℃时出现催化剂片层结构的坍塌聚集以及晶相的破坏.当UIO-66热解温度为500℃、热解时间为4 h时,CoMoS/ZrO2明显出现单斜相,表面Mo原子含量较高,片层结构较均一,此催化剂在4-甲基酚加氢脱氧中显示出较高的活性和对甲苯的选择性,4-甲基酚转化率达100%,甲苯的选择性达82%. 相似文献
29.
采用溶剂热法合成了以锆为金属核心、2-氨基为配体的锆基金属有机骨架(UiO-66)纳米材料,通过静电纺丝技术制备出UiO-66自由分散的聚丙烯腈(PAN/UiO-66)纤维,可控热解得到多孔碳纳米纤维(porous carbon nanofibers,PCNFs),结合湿化学还原法在PCNFs表面沉积Pd纳米颗粒,得到PCNFs@Pd复合材料。通过扫描电子显微镜、透射电子显微镜、X射线衍射技术对其形貌、组成、结构进行表征;采用电化学工作站分别测试了PCNFs@Pd在0.1 mol·L-1KOH和0.1 mol·L-1HClO4电解质中氧还原性能(oxygen reduction reaction,ORR)。结果表明,在PAN纤维中添加UiO-66显著提高了PCNFs@Pd(Pd负载量为0.34%)复合材料的ORR性能。相比40%Pt/C,在碱性电解质中,PCNFs@Pd复合材料展示出更低的Tafel斜率、更优异的循环稳定性和耐甲醇中毒性。在酸性电解质中也表现出类似20%Pt/C的催化活性和循环稳定性。 相似文献
30.
Zirconium-based metal-organic framework materials (Zr−MOFs) have more practical usage over most conventional benchmark porous materials and even many other MOFs due to the excellent structural stability, rich coordination forms, and various active sites. However, their mass-production and application are restricted by the high-cost raw materials, complex synthesis procedures, harsh reaction conditions, and unexpected environmental impact. Based on the principles of “Green Chemistry”, considerable efforts have been done for breaking through the limitations, and significant progress has been made in the sustainable synthesis of Zr−MOFs over the past decade. In this review, the advancements of green raw materials and green synthesis methods in the synthesis of Zr−MOFs are reviewed, along with the corresponding drawbacks. The challenges and prospects are discussed and outlooked, expecting to provide guidance for the acceleration of the industrialization and commercialization of Zr−MOFs. 相似文献