The challenge for single-atom catalysts in various C-C cross coupling reaction exists in the development of solid supporting materials.It has been desired tofind a supporting material designed in molecular level to an...The challenge for single-atom catalysts in various C-C cross coupling reaction exists in the development of solid supporting materials.It has been desired tofind a supporting material designed in molecular level to anchor a single-atom catalyst and provide high degree of dispersion and substrate access in aqueous media.Here,we prepared discrete cages of metal-organic polyhedra anchoring single Pd atom(MOP-BPY(Pd))and successfully performed a Suzuki-Miyaura cross coupling reaction with various substrates in aqueous media.It was revealed that each tetrahedral cage of MOP-BPY(Pd)has 4.5 Pd atoms on average and retained its high degree of dispersion up to 3 months in water.The coupling efficiencies of the Suzuki-Miyaura cross coupling reaction exhibited more than 90.0%for various substrates we have tested in the aqueous media,which is superior to those of the molecular Pd complex and metal-organic framework(MOF)anchoring Pd atoms.Moreover,MOP-BPY(Pd)was successfully recovered and recycled without performance degradation.展开更多
Suzuki-Miyaura金属偶联反应是在零价钯配合物的催化下,芳基硼酸或硼酸酯与卤代芳烃发生交叉偶联的过程。该反应具有很强的底物适应性和官能团容忍性,广泛应用于众多天然产物与有机材料的合成。鉴于反应的重要性,近年来国外高校逐渐尝试...Suzuki-Miyaura金属偶联反应是在零价钯配合物的催化下,芳基硼酸或硼酸酯与卤代芳烃发生交叉偶联的过程。该反应具有很强的底物适应性和官能团容忍性,广泛应用于众多天然产物与有机材料的合成。鉴于反应的重要性,近年来国外高校逐渐尝试将Suzuki-Miyaura反应引入到本科生的有机实验教学中。本文针对2000年后Journal of Chemical Education期刊中涉及的Suzuki-Miyaura反应,分别从反应条件、后处理和表征方法、实验拓展等多个方面进行了比较和归纳,并对其设计理念和教学特色进行了综述。展开更多
A [Pd(1-tritylimidazole)2Cl2] complex was synthesized and characterized by IH and 13C NMR spectroscopy, elemental analysis, and X-ray crystallography. The X-ray analysis confirmed that the Pd(II) has a four-coordi...A [Pd(1-tritylimidazole)2Cl2] complex was synthesized and characterized by IH and 13C NMR spectroscopy, elemental analysis, and X-ray crystallography. The X-ray analysis confirmed that the Pd(II) has a four-coordinated square planar structure. The palladium complex was used to carry out Suzuki-Miyaura coupling reactions of aryl chlorides with a variety of phenylboronic acids in i-PrOH-H20 (1 : 1, V : V) at room temperature and Heck coupling reactions of aryl halides with methyl acrylate in DMF at 110℃. High yields of the cross-coupling products were obtained.展开更多
Topochemical polymerization of molecular crystals into porous materials is of significance due to their promising applications in the field of adsorption and catalysis,yet rarely reported due to the synthesis difficul...Topochemical polymerization of molecular crystals into porous materials is of significance due to their promising applications in the field of adsorption and catalysis,yet rarely reported due to the synthesis difficulty.Herein,a hydrogen-bonded organic framework(HOF-45)has been fabricated by the crystallization of a cage-like building block containing three alkynyl groups.It exhibits almost mesoporous structure demonstrated by single crystal X-ray diffraction study.Light-driven topochemical polymerization of HOF-45 with ethanedithiol covalently links alkynyl groups in HOF-45,generating a hydrogen-bond and covalentbond cross-linked material(HOF-45C).In contrast to HOF-45,cross-linked HOF-45C retains the crystalline nature and displays improved solution resistence according to the powder X-ray diffraction data.In particular,HOF-45C is able to support the growth of ultrafine palladium nanoparticles with the average size of ca.1.9 nm for rapidly promoting the degradation of nitrophenol,methyl orange,and congo red with the help of NaBH_(4)as well as Suzuki-Miyaura coupling reaction.This work inputs a new idea on the HOFs application in preparing covalent-linked porous organic materials.展开更多
Surface-enhanced Raman spectroscopy(SERS), a powerful surface vibrational spectroscopic technique, is ideally suited for in situ monitoring the chemical transformations occurred at surfaces and/or interfaces.For in si...Surface-enhanced Raman spectroscopy(SERS), a powerful surface vibrational spectroscopic technique, is ideally suited for in situ monitoring the chemical transformations occurred at surfaces and/or interfaces.For in situ SERS monitoring, a platform integrated both plasmonic and catalytic activity is a prerequisite. Here, we fabricate a bifunctional Au-Pd nanocoronal film for in situ SERS monitoring Suzuki-Miyaura cross-coupling reaction. This excellent bifunctional substrate leads to the coupling of high catalytic activity with a strong SERS effect at the center of two adjacent Au cores and shows fine reproducibility and stability of SERS signals. During investigating the Suzuki reaction with in situ SERS, we found two distinct catalytic kinetic processes resulted from two disparate catalytic sites on a Au-Pd nanocoronal. Comparing with conventional analytical techniques, this work provides a novel approach for studying Suzuki reactions at surfaces and/or interfaces with in situ SERS.展开更多
A new catalyst, Pd particles supported on the N-doped porous carbon(PC) derived from Zn-based metal-organic frameworks(zeolitic imidazolate framework: ZIF-8), was successfully prepared for the first time.The as-p...A new catalyst, Pd particles supported on the N-doped porous carbon(PC) derived from Zn-based metal-organic frameworks(zeolitic imidazolate framework: ZIF-8), was successfully prepared for the first time.The as-prepared catalyst was designated as N-doped PC-Pd, and characterized by X-ray diffraction, X-ray photoelectron spectroscopy, transmission electron microscopy, scanning electron microscope, N_2 adsorption and inductively coupled plasma atomic emission spectroscopy. The N-doped PC-Pd composite exhibited high catalytic activity toward the Suzuki-Miyaura cross-coupling reactions. The yields of the products were in the range of 90%-99%. The catalyst could be readily recycled and reused at least 6 consecutive cycles without a significant loss of its catalytic activity.展开更多
以5-溴-2-十二烷基嘧啶为原料,经Sonogashira偶联等反应制得1,2-双(2-十二烷基嘧啶-5-基)乙炔(4);1-溴-4-(2-(2-(2-甲氧基乙氧基)乙氧基)乙氧基)苯(5)与双频哪醇合二硼反应制得化合物(6);4,4′-二溴苯偶酰与1,3-二苯基丙酮经羟醛缩合反...以5-溴-2-十二烷基嘧啶为原料,经Sonogashira偶联等反应制得1,2-双(2-十二烷基嘧啶-5-基)乙炔(4);1-溴-4-(2-(2-(2-甲氧基乙氧基)乙氧基)乙氧基)苯(5)与双频哪醇合二硼反应制得化合物(6);4,4′-二溴苯偶酰与1,3-二苯基丙酮经羟醛缩合反应制得四芳基环戊二烯酮衍生物(7);化合物4与7经Diels-Alder反应制得化合物8;8与6通过Suzuki-Miyaura偶联反应合成新型两亲性氮杂六芳基苯(9),化合物6~9为新化合物,其结构经1 H NMR,13 C NMR和HR-MS(MALDI-TOF)表征。展开更多
基金the Basic Science Research Program(No.NRF-2019R1A2C4069764)by Convergent Technology R&D Program for Hum an Augm entation(No.2019M3C1B8077549)through the National Research Foundation of Korea(NRF)funded by Ministry of Science and ICT.
文摘The challenge for single-atom catalysts in various C-C cross coupling reaction exists in the development of solid supporting materials.It has been desired tofind a supporting material designed in molecular level to anchor a single-atom catalyst and provide high degree of dispersion and substrate access in aqueous media.Here,we prepared discrete cages of metal-organic polyhedra anchoring single Pd atom(MOP-BPY(Pd))and successfully performed a Suzuki-Miyaura cross coupling reaction with various substrates in aqueous media.It was revealed that each tetrahedral cage of MOP-BPY(Pd)has 4.5 Pd atoms on average and retained its high degree of dispersion up to 3 months in water.The coupling efficiencies of the Suzuki-Miyaura cross coupling reaction exhibited more than 90.0%for various substrates we have tested in the aqueous media,which is superior to those of the molecular Pd complex and metal-organic framework(MOF)anchoring Pd atoms.Moreover,MOP-BPY(Pd)was successfully recovered and recycled without performance degradation.
文摘Suzuki-Miyaura金属偶联反应是在零价钯配合物的催化下,芳基硼酸或硼酸酯与卤代芳烃发生交叉偶联的过程。该反应具有很强的底物适应性和官能团容忍性,广泛应用于众多天然产物与有机材料的合成。鉴于反应的重要性,近年来国外高校逐渐尝试将Suzuki-Miyaura反应引入到本科生的有机实验教学中。本文针对2000年后Journal of Chemical Education期刊中涉及的Suzuki-Miyaura反应,分别从反应条件、后处理和表征方法、实验拓展等多个方面进行了比较和归纳,并对其设计理念和教学特色进行了综述。
基金This work was supported by the National Natural Science Foundation of China (No. 21102102), the Natural Science Foundation of Tianjin (No. 16JCYBJC 19700), and the innovation team plan of the Tianjin Education Committee (No. TD 12-5037).
文摘A [Pd(1-tritylimidazole)2Cl2] complex was synthesized and characterized by IH and 13C NMR spectroscopy, elemental analysis, and X-ray crystallography. The X-ray analysis confirmed that the Pd(II) has a four-coordinated square planar structure. The palladium complex was used to carry out Suzuki-Miyaura coupling reactions of aryl chlorides with a variety of phenylboronic acids in i-PrOH-H20 (1 : 1, V : V) at room temperature and Heck coupling reactions of aryl halides with methyl acrylate in DMF at 110℃. High yields of the cross-coupling products were obtained.
基金supported by the Natural Science Foundation of China(22235001,22175020,22131005,22011540002,21631003)the Xiaomi Young Scholar Program+1 种基金the Fundamental Research Funds for the Central UniversitiesUniversity of Science and Technology Beijing
文摘Topochemical polymerization of molecular crystals into porous materials is of significance due to their promising applications in the field of adsorption and catalysis,yet rarely reported due to the synthesis difficulty.Herein,a hydrogen-bonded organic framework(HOF-45)has been fabricated by the crystallization of a cage-like building block containing three alkynyl groups.It exhibits almost mesoporous structure demonstrated by single crystal X-ray diffraction study.Light-driven topochemical polymerization of HOF-45 with ethanedithiol covalently links alkynyl groups in HOF-45,generating a hydrogen-bond and covalentbond cross-linked material(HOF-45C).In contrast to HOF-45,cross-linked HOF-45C retains the crystalline nature and displays improved solution resistence according to the powder X-ray diffraction data.In particular,HOF-45C is able to support the growth of ultrafine palladium nanoparticles with the average size of ca.1.9 nm for rapidly promoting the degradation of nitrophenol,methyl orange,and congo red with the help of NaBH_(4)as well as Suzuki-Miyaura coupling reaction.This work inputs a new idea on the HOFs application in preparing covalent-linked porous organic materials.
基金the financial support from the National Natural Science Foundation of China (No. 22022406)the Natural Science Foundation of Tianjin (Nos. 20JCJQJC00110 and 20JCYBJC00590)+1 种基金the 111 project (No. B12015)the Haihe Laboratory of Sustainable Chemical Transformations。
文摘Surface-enhanced Raman spectroscopy(SERS), a powerful surface vibrational spectroscopic technique, is ideally suited for in situ monitoring the chemical transformations occurred at surfaces and/or interfaces.For in situ SERS monitoring, a platform integrated both plasmonic and catalytic activity is a prerequisite. Here, we fabricate a bifunctional Au-Pd nanocoronal film for in situ SERS monitoring Suzuki-Miyaura cross-coupling reaction. This excellent bifunctional substrate leads to the coupling of high catalytic activity with a strong SERS effect at the center of two adjacent Au cores and shows fine reproducibility and stability of SERS signals. During investigating the Suzuki reaction with in situ SERS, we found two distinct catalytic kinetic processes resulted from two disparate catalytic sites on a Au-Pd nanocoronal. Comparing with conventional analytical techniques, this work provides a novel approach for studying Suzuki reactions at surfaces and/or interfaces with in situ SERS.
基金supported by the National Natural Science Foundation of China(21073023,20906008)the Fundamental Research Funds for the Central Universities(DUT12YQ03)~~
基金financially supported by the National Natural Science Foundation of China (Nos. 31171698, 31471643)the Innovation Research Program of Department of Education of Hebei for Hebei Provincial Universities (No. LJRC009)+1 种基金Natural Science Foundation of Hebei Province (No. B2015204003)the Natural Science Foundation of Agricultural University of Hebei (Nos. LG201404, ZD201506)
文摘A new catalyst, Pd particles supported on the N-doped porous carbon(PC) derived from Zn-based metal-organic frameworks(zeolitic imidazolate framework: ZIF-8), was successfully prepared for the first time.The as-prepared catalyst was designated as N-doped PC-Pd, and characterized by X-ray diffraction, X-ray photoelectron spectroscopy, transmission electron microscopy, scanning electron microscope, N_2 adsorption and inductively coupled plasma atomic emission spectroscopy. The N-doped PC-Pd composite exhibited high catalytic activity toward the Suzuki-Miyaura cross-coupling reactions. The yields of the products were in the range of 90%-99%. The catalyst could be readily recycled and reused at least 6 consecutive cycles without a significant loss of its catalytic activity.
文摘以5-溴-2-十二烷基嘧啶为原料,经Sonogashira偶联等反应制得1,2-双(2-十二烷基嘧啶-5-基)乙炔(4);1-溴-4-(2-(2-(2-甲氧基乙氧基)乙氧基)乙氧基)苯(5)与双频哪醇合二硼反应制得化合物(6);4,4′-二溴苯偶酰与1,3-二苯基丙酮经羟醛缩合反应制得四芳基环戊二烯酮衍生物(7);化合物4与7经Diels-Alder反应制得化合物8;8与6通过Suzuki-Miyaura偶联反应合成新型两亲性氮杂六芳基苯(9),化合物6~9为新化合物,其结构经1 H NMR,13 C NMR和HR-MS(MALDI-TOF)表征。