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1.
黎林清  吕迎  李军  董晓丽  高爽 《化学进展》2012,24(5):747-756
本文分别从以骨架中的金属(金属簇)为催化中心的MOF材料、利用具有催化活性的刚性有机配合物构筑的MOF材料和MOF负载催化材料三个方面详细介绍了MOF作为催化剂在烯烃氧化反应中的应用情况,分析了其各自的优缺点。具有催化活性的刚性有机配合物构筑的MOF材料稳定性较好,能够引入具有光学活性的催化剂,可以作为不对称催化氧化催化剂使用,是未来的一个研究发展方向。  相似文献   

2.
Photocatalytic water splitting requires separation of the mixed H2 and O2 products and is often hampered by the sluggish O2‐producing half reaction. An approach is now reported to address these issues by coupling the H2‐producing half reaction with value‐added benzylamine oxidation reaction using metal–organic framework (MOF) composites. Upon MOF photoexcitation, the electrons rapidly reduce the protons to generate H2 and the holes promote considerable benzylamine oxidation to N‐benzylbenzaldimine with high selectivity. Further experimental characterizations and theoretical calculation reveal that the highly conjugated s‐triazine strut in the MOF structure is crucial to the efficient charge separation and excellent photocatalytic activity.  相似文献   

3.
Two highly efficient metal-organic framework catalysts TJU-68-NHPI and TJU-68-NDHPI have been successfully synthesized through solvothermal reactions of which the frameworks are merged with N-hydroxyphthalimide (NHPI) units, resulting in the decoration of pore surfaces with highly active nitroxyl catalytic sites. When t-butyl nitrite (TBN) is used as co-catalyst, the as-synthesized MOFs are demonstrated to be highly efficient and recyclable catalysts for a novel three-phase heterogeneous oxidation of activated C−H bond of primary and secondary alcohols, and benzyl compounds under mild conditions. Based on the high efficiency and selectivity, an environmentally benign system with good sustainability, mild conditions, simple work-up procedure has been established for practical oxidation of a wide range of substrates.  相似文献   

4.
As photocatalysis technology could transform renewable and clean solar energy into green hydrogen (H2) energy through solar water splitting, it is regarded as the “Holy Grail” in chemistry field in the 21st century. Unfortunately, the bottleneck of this technique still lies in the exploration of highly active, cost-effective, and robust photocatalysts. This work reports the design and synthesis of a novel zeolitic imidazole framework (ZIF) coupled Zn0.8Cd0.2S hetero-structured photocatalyst for high-performance visible-light-induced H2 production. State-of-the-art characterizations and theoretical computations disclose that the interfacial electronic interaction between ZIF and Zn0.8Cd0.2S, the high distribution of Zn0.8Cd0.2S on ZIF, and the atomically dispersed coordinately unsaturated Co sites in ZIF synergistically arouse the significantly improved visible-light photocatalytic H2 production performance.  相似文献   

5.
氮氧化物(NO x )是造成大气污染的主要污染物之一,工业窑炉和燃煤电厂等固定源以及以机动车为代表的移动源所排放的氮氧化物对生态环境造成了一系列的危害。为此控制并降低NO x 排放是当前十分艰巨的任务。金属有机骨架材料(MOFs)这种新型的多孔聚合材料由于其多活性位点、高比表面积、结构可修饰、易于功能化而表现出突出的多相催化性能近年来在低温工业脱硝领域逐渐受到关注。本文总结了MOFs材料在氨低温催化还原氮氧化物反应中的应用进展,重点阐述了单金属和双金属的MOFs材料的应用以及MOFs衍生物催化剂的研究。最后对MOFs在低温脱硝领域中目前存在的问题并对其发展方向和前景进行了展望。  相似文献   

6.
利用可见光将二氧化碳光还原为有用的化学品是一项有前景但充满挑战的工作. 金属有机骨架(MOFs)作为一种新兴的具高孔隙率、高比表面积、强吸附富集CO2能力、结构和功能可调的多孔材料, 在光催化二氧化碳还原反应中具有极强的应用潜力. 但大多数金属有机骨架材料存在可见光吸收范围窄、光生载流子快速复合等问题, 导致催化二氧化碳还原活性仍然较低. 通过静电自组装策略将纳米级胺基化金属有机骨架材料(NH2-MIL-88B(Fe))和羧酸化石墨烯量子点(GQD)通过静电作用结合, 得到GQD/NH2-MIL-88B(Fe)复合材料. 该复合催化剂有效结合了金属有机骨架强二氧化碳吸附富集能力和GQD的可见光吸收范围宽、电子传导能力强等优点, 因此与纯金属有机骨架材料NH2- MIL-88B(Fe)相比较, 该复合材料能高效光催化还原CO2为CO, 并在10 h可见光下活性高达590 μmol/g, 约为NH2-MIL-88B(Fe)活性的四倍. 这项工作为制备高活性催化CO2的金属有机骨架复合材料提供了借鉴.  相似文献   

7.
A Zr-based metal-organic framework has been synthesized and employed as a catalyst for photochemical carbon dioxide reduction coupled with water oxidation. The catalyst shows significant carbon dioxide reduction property with concomitant water oxidation. The catalyst has broad visible light as well as UV light absorption property, which is further confirmed from electronic absorption spectroscopy. Formic acid was the only reduced product from carbon dioxide with a turn-over frequency (TOF) of 0.69 h−1 in addition to oxygen, which was produced with a TOF of 0.54 h−1. No external photosensitizer is used and the ligand itself acts as the light harvester. The efficient and selective photochemical carbon dioxide reduction to formic acid with concomitant water oxidation using Zr-based MOF as catalyst is thus demonstrated here.  相似文献   

8.
Photocatalytic water splitting coupled with the production of highly value-added organic chemicals is of significant importance, which represents a very promising pathway for transforming green solar energy into chemical energy. Herein, we report a composite photocatalyst CdIn2S4@MIL-53-SO3Ni1/2, which is highly efficient on prompting water splitting for the production of H2 in the reduction half-reaction and selective oxidation of organic molecules for the production of highly value-added organic chemicals in the oxidation half-reaction under visible light irradiation. The superior photocatalytic properties of the composite photocatalyst CdIn2S4@MIL-53-SO3Ni1/2 should be ascribed to coating suspended ion catalyst (SIC), consisting of redox-active NiII ions in the anionic pores of coordination network MIL-53-SO3, on the surface of photoactive CdIn2S4, which endows photogenerated electron-hole pairs separate more efficiently for high rate production of H2 and selective production of highly value-added organic products, demonstrating great potential for practical applications.  相似文献   

9.
通过水热法及沉淀法,合成了纳微尺度铜金属有机框架催化剂。 通过FT-IR、TG及TEM等技术手段对其性能和结构进行了表征。 系统考察了催化剂、溶剂种类及用量、反应时间等因素对异丁香酚氧化制备香草醛的影响。 结果表明,用均苯三甲酸根(BTC)作配体时制备的催化剂Cu-BTC性能较佳。 以Cu-BTC为催化剂、30%(质量分数)H2O2为氧化剂、乙腈为介质,当n(异丁香酚):n(H2O2)=1:2.4时,50 ℃,反应8 h,异丁香酚转化率为94.4%,香草醛产率达到81.8%。 纳微尺度(粒径30~300 nm)Cu-BTC催化剂体现了良好的重复使用性能,连续反应5次,异丁香酚转化率保持在90%左右。  相似文献   

10.
Electrochemical synthesis of H2O2 with high productivity is a significant challenge in electrocatalysis. Herein, we develop Mg-ion contained covalent organic frameworks (MgP-DHTA-COF), comprising stacked 2D layers, well-defined skeletons, and well-ordered monodispersed active sites, for the electrocatalytic production of H2O2 directly from O2 and H2O. The precise-designed MgP-DHTA-COF achieves H2O2 selectivity up to 96%, high Faradaic efficiency of 91% and reliable stability for H2O2 synthesis in 0.10 mol L−1 KOH aqueous solution. Both experiments and simulations demonstrate that the pyrrolic-N fixed Mg ions in the knots promote the reactivity of COF and enhance the adsorption ability of OOH*. This work provides a valuable example for the design of an efficient electrocatalyst based on COFs for H2O2 production.  相似文献   

11.
Harnessing solar energy and converting it into renewable fuels by chemical processes, such as water splitting and carbon dioxide (CO2) reduction, is a highly promising yet challenging strategy to mitigate the effects arising from the global energy crisis and serious environmental concerns. In recent years, covalent organic framework (COF)-based materials have gained substantial research interest because of their diversified architecture, tunable composition, large surface area, and high thermal and chemical stability. Their tunable band structure and significant light absorption with higher charge separation efficiency of photoinduced carriers make them suitable candidates for photocatalytic applications in hydrogen (H2) generation, CO2 conversion, and various organic transformation reactions. In this article, we describe the recent progress in the topology design and synthesis method of COF-based nanomaterials by elucidating the structure-property correlations for photocatalytic hydrogen generation and CO2 reduction applications. The effect of using various kinds of 2D and 3D COFs and strategies to control the morphology and enhance the photocatalytic activity is also summarized. Finally, the key challenges and perspectives in the field are highlighted for the future development of highly efficient COF-based photocatalysts.  相似文献   

12.
We report an azide-functionalized cobaloxime proton-reduction catalyst covalently tethered into the Wurster-type covalent organic frameworks (COFs). The cobaloxime-modified COF photocatalysts exhibit enhanced photocatalytic activity for hydrogen evolution reaction (HER) in alcohol-containing solution with no presence of a typical sacrificial agent. The best performing cobaloxime-modified COF hybrid catalyzes hydrogen production with an average HER rate up to 38 μmol h−1 in ethanol/phosphate buffer solution under 4 h illumination. Ultrafast transient optical spectroscopy characterizations and charge carrier analysis reveal that the alcohol contents functioning as hole scavengers could be oxidized by the photogenerated holes of COFs to form aldehydes and protons. The consumption of the photogenerated holes thus suppresses exciton recombination of COFs and improves the ratio of free electrons that were effectively utilized to drive catalytic reaction for HER. This work demonstrates a great potential of COF-catalyzed HER using alcohol solvents as hole scavengers and provides an example toward realizing the accessibility to the scope of reaction conditions and a greener route for energy conversion.  相似文献   

13.
Photocatalytic hydrogen production is crucial for solar‐to‐chemical conversion process, wherein high‐efficiency photocatalysts lie in the heart of this area. A photocatalyst of hierarchically mesoporous titanium phosphonate based metal–organic frameworks, featuring well‐structured spheres, a periodic mesostructure, and large secondary mesoporosity, are rationally designed with the complex of polyelectrolyte and cathodic surfactant serving as the template. The well‐structured hierarchical porosity and homogeneously incorporated phosphonate groups can favor the mass transfer and strong optical absorption during the photocatalytic reactions. Correspondingly, the titanium phosphonates exhibit significantly improved photocatalytic hydrogen evolution rate along with impressive stability. This work can provide more insights into designing advanced photocatalysts for energy conversion and render a tunable platform in photoelectrochemistry.  相似文献   

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可见光驱动的光催化制氢与有机氧化合成相结合由于其环境友好性和可持续性而极具吸引力,它可以在温和的条件下同时产生清洁的氢气燃料和高价值化学品,而无需牺牲剂。半导体材料和金属有机骨架(MOFs)材料由于其性能和优势,在光催化领域得到了广泛的应用。在这项工作中,我们通过静电自组装成功合成了一种名为Cd S/PFC-8的新型有效催化剂。其中,PFC-8作为镍基金属有机骨架,Cd S/PFC-8复合材料作为无贵金属催化剂,在可见光下具有优异的光催化制氢和苯甲醇氧化性能。对Cd S/PFC-8复合材料进行了一系列催化表征。X射线衍射(XRD)和扫描电子显微镜(SEM)结果表明了Cd S/PFC-8复合材料的成功合成。X射线光电子能谱(XPS)表明了Cd S纳米棒与PFC-8之间存在一定的界面相互作用。通过紫外-可见漫反射光谱(DRS)、光致发光光谱(PL)和电化学测试对光电性能进行了表征,表明Cd S/PFC-8复合材料的可见光响应和光催化可行性。对不同催化剂的光催化实验结果进行比较,在可见光下,Cd S/PFC-8复合材料将H2的产生与苯甲醇的选择性氧化耦合,表现出显著的H2产率3376μmol...  相似文献   

16.
周飞 《分子催化》2023,37(4):397-404
石墨相氮化碳(g-C3N4)是一类非金属聚合物半导体材料, 具有良好的可见光响应、 优异的化学稳定性和可调节的能带结构, 在光催化分解水制氢、 空气净化、 环境修复等领域有着广阔的应用前景. 目前, g-C3N4光催化分解水的研究主要聚焦析氢半反应, 而牺牲试剂的氧化反应以及光生空穴则未被加以利用. 光催化苯甲醇氧化反应具有较高的选择性, 在光催化制氢的同时还能够获得苯甲醛. 我们结合最新国内外研究成果, 系统地综述了g-C3N4在光催化苯甲醇氧化耦合制氢方面的应用, 从分子改性、 显微结构及缺陷调控、 非金属元素掺杂、 金属负载和复合材料设计等5个方面介绍了g-C3N4光催化苯甲醇氧化提升性能的研究策略. 重点总结了g-C3N4的结构和光生载流子分离效率对催化性能的影响, 并对g-C3N4光催化苯甲醛氧化耦合制氢的后续发展进行了展望.  相似文献   

17.
Improving the efficiency of electron–hole separation and charge‐carrier utilization plays a central role in photocatalysis. Herein, Pt nanoparticles of ca. 3 nm are incorporated inside or supported on a representative metal–organic framework (MOF), UiO‐66‐NH2, denoted as Pt@UiO‐66‐NH2 and Pt/UiO‐66‐NH2, respectively, for photocatalytic hydrogen production via water splitting. Compared with the pristine MOF, both Pt‐decorated MOF nanocomposites exhibit significantly improved yet distinctly different hydrogen‐production activities, highlighting that the photocatalytic efficiency strongly correlates with the Pt location relative to the MOF. The Pt@UiO‐66‐NH2 greatly shortens the electron‐transport distance, which favors the electron–hole separation and thereby yields much higher efficiency than Pt/UiO‐66‐NH2. The involved mechanism has been further unveiled by means of ultrafast transient absorption and photoluminescence spectroscopy.  相似文献   

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Embedding cubane [M4(OH)4] (M=Ni, Co) clusters within the matrix of metal–organic frameworks (MOFs) is a strategy to develop materials with unprecedented synergistic properties. Herein, a new material type based on the pore‐space partition of the cubic primitive minimal‐surface net (MOF‐14‐type) has been realized. CTGU‐15 made from the [Ni4(OH)4] cluster not only has very high BET surface area (3537 m2 g?1), but also exhibits bi‐microporous features with well‐defined micropores at 0.86 nm and 1.51 nm. Furthermore, CTGU‐15 is stable even under high pH (0.1 m KOH), making it well suited for methanol oxidation in basic medium. The optimal hybrid catalyst KB&CTGU‐15 (1:2) made from ketjen black (KB) and CTGU‐15 exhibits an outstanding performance with a high mass specific peak current of 527 mA mg?1 and excellent peak current density (29.8 mA cm?2) at low potential (0.6 V). The isostructural cobalt structure (CTGU‐16) has also been synthesized, further expanding the application potential of this material type.  相似文献   

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