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在活性炭负载金属钌(Ru/C)催化剂上实现了5-羟甲基糠醛的高效选择氧化.以甲苯为反应溶剂,在383 K和2.0 MPa O2的反应条件下,2,5-呋喃二甲醛(DFF)收率高达95.8%.与活性炭负载的具有相似粒径的Pt,Rh,Pd,Au等其它贵金属催化剂相比,Ru/C具有更加优良的活性和DFF选择性.同时Ru/C催化剂结构稳定,具有良好的重复使用性能.在相似的反应条件下,采用水代替甲苯作为溶剂,同时添加少量水滑石固体碱,可便捷地将主要产物从DFF调变为5-甲酰基-2-呋喃甲酸或2,5-呋喃二甲酸,显示出Ru/C催化剂在控制5-羟甲基糠醛选择氧化反应产物方面的优异性能. 相似文献
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采用高温煅烧法、 原位生长法和光还原法分三步制备出双功能复合光催化剂g-C3N4/CdS/Ni. 材料中CdS的引入可以增强光生电子和空穴的分离效率, Ni可以进一步提高光致产氢速率. 在以三乙醇胺(TEOA)为电子给体的水溶液中对所制备的材料进行了催化产氢性能测试, 并对材料中CdS的含量进行了优化. 结果表明, 25% (质量分数)CdS负载量的复合材料催化产氢性能最佳, 其催化产氢速率为4134.5 μmol·g-1·h-1, 是 g-C3N4/Ni催化产氢速率的115倍. 且Ni是一种良好的质子催化剂. 在此基础上, 以5-羟甲基糠醛(HMF)替代TEOA作为体系的电子给体, 其可以被选择性地催化氧化为增值化学品2, 5-二甲酰基呋喃(DFF). 当体系中HMF的转化率为82.3%, DFF的选择性为69.4%时, DFF的产率(57.2%)达到最高, 体系中H2的产量为 51.8 μmol/g. g-C3N4/CdS/Ni复合材料可以在同一体系中进行催化光致产氢和HMF的选择性氧化. 相似文献
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本研究将铁、锰、铜和金刚烷胺缩水杨醛衍生的席夫碱配体组成的原位催化剂用于催化5-羟甲基糠醛(5-Hydroxymethylfurfural,简称HMF)选择性氧化制备5-甲酰基呋喃-2-羧酸(5-formyl-2-furancarboxylic acid,简称FFCA)。通过核磁共振(NMR)、红外(FT-IR)和单晶衍射对配体和配合物进行了表征,并对氧化反应时间、反应温度、MnCl2·4H2O与配体物质的量比、氧化剂和催化剂用量等反应条件进行优化,在最优化条件下,HMF转化率为100%,并且可以获得收率为52.1%的FFCA。根据反应结果对Mn金属配合物催化的HMF氧化反应过程进行了分析。 相似文献
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在化石燃料储量不断减少,温室效益趋势加重的情况下,寻求可以替代化石燃料的可再生燃料已经引起了人们的广泛关注.人们普遍认为源于生物质的2,5-二甲基呋喃(DMF)是很有前景的一种可再生液体交通燃料,为此本文作者对近年来生物质制备DMF的方法及途径进行了综述,同时对今后的研究作了展望. 相似文献
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2, 5-呋喃二甲酸二甲酯(DMFDCA)这一生物质衍生的增值化学品是石油基聚合物单体对苯二甲酸(TPA)的理想替代品。本研究采用一步共热解法合成了两种廉价金属修饰的氮掺杂多孔碳催化剂CoMn@NC,并将其用于5-羟甲基糠醛(HMF)在温和条件下的需氧氧化。由Co3Mn2@NC-800催化HMF在50 ℃和常压氧气的条件下反应12 h后,得到产率为85%的DMFDCA。多孔催化剂的高比表面积提高了传质效率。Co纳米粒子(NPs)和呈原子级分散的Mn与掺杂在碳中的氮配位形成M―Nx。富含吡啶氮的碳基体中的缺电子金属位点有利于HMF和氧的活化。氧形成的超氧自由基阴离子的存在确保了半缩醛中间体和5-(羟基甲基)-2-糠酸甲酯(HMMF)的羟甲基的脱氢氧化,从而高选择性得到DMFDCA。该催化剂性能稳定,可适用于各种取代芳醇。该催化体系具有用于生产聚合物单体羧基酯的应用潜力。 相似文献
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Dimethyl furan-2, 5-dicarboxylate (DMFDCA) is a valuable biomass-derived chemical that is an ideal alternative to fossil-derived terephthalic acid as a monomer for polymers. The one-step oxidation of 5-hydroxymethylfurfural (HMF) to DMFDCA is of practical significance. It not only shortens the reaction pathway but also avoids the separation process of intermediates; thus, reducing cost. In this work, non-noble bimetallic catalysts supported on N-doped porous carbon (CoMn@NC) were synthesized via a one-step co-pyrolysis procedure using different pyrolysis temperatures and proportions of metal precursors and additives. We employed the prepared CoMn@NC catalysts in the aerobic oxidation of HMF under mild reaction conditions to obtain DMFDCA. High-yield DMFDCA was obtained by screening the prepared catalysts and optimizing the reaction conditions, including the strength and amount of the base, as well as the reaction temperature. The optimized yield of DMFDCA was 85% over the Co3Mn2@NC-800 catalyst after 12 h at 50 ℃ using ambient-pressure oxygen. The physicochemical properties of the catalysts were determined using a variety of characterization techniques, the factors affecting the performance of each catalyst were investigated, and the relationship between the physicochemical properties and performance of the prepared catalysts was elucidated. A porous structure with a high surface area had a positive effect on mass transfer efficiency. Cobalt nanoparticles (NPs) and atomically dispersed Mn were coordinated to N-doped carbon to form M―Nx (where M = Co or Mn). Based on the Mott-Schottky effect, there was significant electron transfer between each metal and the N-doped carbon, additionally, the metal NPs supplied electrons to the carbon atoms. The electron-deficient metal site in the pyridinic N-rich carbon was beneficial for the activation of HMF and oxygen. The activation of oxygen produced reactive oxygen species (such as superoxide radical anions) to ensure high selectivity to DMFDCA through dehydrogenative oxidation of the hemiacetal intermediate and hydroxymethyl group of 5-hydroxymethyl-2-methyl-furoate. The existence of disordered and defective carbons increased the number of active sites. Subsequently, we performed a series of control experiments. Based on our current experimental results and previous studies, we propose a simple mechanism for the aerobic oxidation of HMF to DMFDCA. The catalyst was stable, its performance decreased slightly after two cycles, and it was tolerant to SCN− ions and resistant against N or S poisoning. Furthermore, the use of this catalytic system can be expanded to various substituted aromatic alcohols, such as benzyl alcohols with different substituents, furfuryl alcohol, and heterocyclic alcohols. Simultaneously, the product type was further extended from methyl esters to ethyl esters with a high yield when the substrate reacted with ethanol. In conclusion, this catalytic system can be applied in the production of carboxylic esters for polymers.![]()
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以活性炭负载金属钌(Ru/C)为催化剂,在碱性水溶液中研究了5-羟甲基糠醛(HMF)选择氧化反应.与MgO,Ca(OH)2和NaOH相比,加入具有合适碱强度的镁铝水滑石有利于生成5-甲酰基-2-呋喃甲酸(FFCA)或2,5-呋喃二甲酸(FDCA).X射线光电子能谱实验表明金属态的钌是活性催化中心.同位素示踪结果则表明水而非氧气提供了5-甲酰基-2-呋喃甲酸及2,5-呋喃二甲酸等羧酸产物的氧源.根据这些结果,并结合HMF和2,5-呋喃二甲醛氧化的动力学研究,我们提出HMF选择性氧化制备FFCA遵循Langmuir-Hinshelwood反应机理.其中,HMF在金属Ru表面饱和解离吸附,在解离吸附的氧原子的协助下发生β-脱氢生成2,5-呋喃二甲醛(DFF)吸附物种.该DFF物种进一步发生水合与氧化形成FFCA产物. 相似文献
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Song Zhang Zhan Chen Jun-Fei Gu Wei Sang Min Jiang Shuai Li Peng Wang Prof. Dr. Zongkui Kou Dr. Cheng Chen 《Chemical record (New York, N.Y.)》2023,23(5):e202300019
5-hydroxymethylfurfural (HMF), one of the most significant biomass-derived renewable resources, has been widely utilized to create furan-based value-added chemicals such as 2,5-diformylfuran (DFF), 5-hydroxymethyl-2-furancarboxylic acid (HMFCA), 5-formyl-2-furancarboxylic acid (FFCA), and 2,5-furan dicarboxylic acid (FDCA). Indeed, DFF, HMFCA and FFCA are key intermediate products during the oxidation of HMF to FDCA. Herein, this review aims to demonstrate the recent advances in metal-catalyzed oxidation of HMF into FDCA via two different reaction routes (HMF-DFF-FFCA-FDCA and HMF-HMFCA-FFCA-FDCA). All the four furan-based compounds are comprehensively discussed by the selective oxidation of HMF. Additionally, various metal catalysts, reaction conditions, and reaction mechanisms used to obtain the four different products are systematically reviewed. It is anticipated that this review will provide related researchers with new perspectives and speed up the development of this field. 相似文献
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采用简单的水热法制得CdS纳米棒,采用溶剂热法制得g-C_3N_4/CdS纳米棒复合光催化剂(1),其结构和性能经SEM,XRD和UV-Vis(DRS)表征。探究了1在可见光作用下光催化降解模拟有机污染物甲基橙的性能。结果表明:在可见光作用下,与纯CdS纳米棒光催化剂比较,1的催化活性明显提高,稳定性显著增强。 相似文献
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在第75届联合国大会上,我国承诺力争在2030年前实现碳达峰、2060年前实现碳中和。主要由光合作用产生的生物质将在双碳目标中扮演重要角色,通过高效转化可衍生出一系列替代化石产品的高值化学品。其中,2,5-呋喃二甲酸(FDCA)由于具有与石油基对苯二甲酸(TPA)相似的共轭碳环和二酸结构,可替代TPA用于合成热稳定性能、气体阻隔性能更优的生物基呋喃聚酯,大幅降低聚酯行业对化石资源的严重依赖。此外,FDCA在医药、香料、金属配位化学方面也有广泛应用,从而被认为是12种最具潜力的生物基平台化合物之一。FDCA通常可由5-羟甲基糠醛(HMF)通过催化氧化进行合成。相比于需要贵金属催化剂、高温和高压条件、以化学势作为驱动力的传统热催化方法,电催化氧化采用电极电势作为主要驱动力,是更为绿色和高效的新颖合成方法。本综述对电催化氧化制备FDCA反应所用的贵金属、过渡金属和非金属催化剂进行了总结与分析,梳理了催化剂设计和反应机理的研究脉络,并指出了该领域发展所面临的挑战与机遇。 相似文献
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在石油资源日渐紧缺的背景下,充分利用自然界中可再生的生物质资源无疑是缓解当前和未来资源危机的有效手段,基于生物质平台分子的绿色化工正在逐渐替代传统石化产品的生产模式。来源于生物质的5-羟甲基糠醛(HMF)经过催化氧化可合成高附加值化学品2,5-呋喃二甲酸(FDCA)。FDCA是生产绿色聚合物聚2,5-呋喃二甲酸乙二酯(PEF)的重要单体。综合近年来利用热、电、光与生物催化模式进行的HMF氧化研究成果,热催化在产率与产品纯度方面显示出明显优势,但其对高能耗与高氧压的依赖限制了在工业中的应用。以电催化和光催化为基础的催化模式能够高效利用电能和太阳能,氧化活性物种丰富可调,有广阔应用前景。此外,生物催化模式虽目前产率较低,但具有反应条件温和、选择性高的突出特点,是未来有效利用生物质资源的重要发展方向。本文对氧化途径与相应反应机理进行讨论,并全面地总结了目前由HMF催化氧化生产FDCA的研究现状,包括已取得的进展与将面临的挑战,最后对未来发展方向与前景进行了展望。 相似文献
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采用喷雾辅助气相沉积法在水热法合成的ZnO纳米线上沉积CdS纳米颗粒。采用X射线衍射仪(XRD)、激光拉曼仪(Raman)、扫描电镜(SEM)、透射电镜(TEM)、X射线光电子能谱分析谱(XPS)和紫外可见漫反射光谱等测试手段对复合光催化剂进行表征。结果表明,3~10 nm的CdS纳米粒子修饰在直径约为100 nm ZnO纳米线的表面。XPS和Raman表明复合材料中ZnO和CdS之间存在化学相互作用。可见光催化降解罗丹明B实验结果表明ZnO/CdS复合材料的催化性能优于单相CdS或ZnO,沉积时间为30 s合成的ZnO/CdS速率常数分别是CdS和ZnO的2.91和4.03倍,且具有较高的稳定性。ZnO/CdS复合材料光催化性能增强的可能原因为光吸收范围的拓展和光生载流子分离效率的提高。 相似文献
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以纳米颗粒TiO2 (P25)为原料,采用水热合成法制备了具有锐钛矿晶型的TiO2纳米管(TNTs),考察了水热反应温度和焙烧温度对TNTs形貌和结构的影响.以具有双官能团结构的有机分子2-巯基丙酸为偶联剂,采用原位合成和在线组装的方法将CdS量子点(QDs)负载于TNTs上,制得了CdS/TNTs可见光催化剂,研究了2-巯基丙酸浓度对CdS负载量和CdS/TNTs光催化活性的影响.结果表明,在水热温度为150℃,焙烧温度为400℃的条件下,可制得管径为8~10 nm,管壁为2~3 nm,管长为数百纳米的锐钛矿型TNTs.经CdS QDs修饰后,TNTs的吸收阈值拓展至580 nm,在模拟可见 相似文献
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Mei Hong Jie Min Shuangyan Wu Jiatong Li Jing Wang Lifen Wei Zhi Ling Kun Li Shifa Wang 《应用有机金属化学》2020,34(3):e5411
The development of new strategies for the synthesis of biomass-based non-precious metal heterogeneous catalysts has recently received great interest from chemists because of the advantages of these catalytic systems being sustainable, low cost and green. An expanded corn starch-supported CuBr catalyst (ECS-SB-CuBr) has been successfully prepared and well characterized using Fourier transform infrared spectroscopy, thermogravimetric analysis, powder X-ray diffraction, X-ray photoelectron spectroscopy and scanning electron microscopy/energy-dispersive X-ray spectroscopy. Further, ECS-SB-CuBr was used as a heterogeneous catalyst for the selective oxidation of 5-hydroxymethylfurfural (HMF) into 2,5-diformylfuran (DFF) and a full HMF conversion is obtained with 98% DFF yield in acetonitrile under ambient pressure of dioxygen at 50°C. The catalyst also showed good reusability, could be easily recovered through filtration and washing and was reused in at least six consecutive runs with virtually no loss of catalytic performance. 相似文献
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Raevskaya A. E. Stroyuk A. L. Kuchmii S. Ya. 《Theoretical and Experimental Chemistry》2003,39(4):235-241
High photocatalytic activity was found for colloidal cadmium sulfide nanoparticles in the radical chain oxidation of sulfite ions by molecular oxygen in aqueous solution. The kinetics of this reaction was studied and a mechanism was proposed, which is in satisfactory accord with the experimental data. 相似文献
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Stroyuk A. L. Raevskaya A. E. Kuchmii S. Ya. 《Theoretical and Experimental Chemistry》2004,40(2):130-135
We have studied the photochemical behavior of colloidal solutions of cadmium sulfide containing polysulfide ions under pulsed irradiation conditions. We have established that the pulsed photolysis product responsible for absorption in the 520-650 nm region is the radical anion S
3
. We have studied the kinetic characteristics of disappearance of this intermediate under various conditions, and we propose a scheme for the mechanism of these processes. 相似文献