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The Reductive Amination of Biomass-Based Aldehydes and Alcohols towards 2,5-bis(aminomethyl)furan:Progress,Challenges and Prospects
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作者 Li Ji Jiawei Mao +1 位作者 Ruixiang Li Jiaqi Xu 《Journal of Renewable Materials》 2025年第9期1683-1706,共24页
Primary diamines play an important role in the chemical industry,where they are widely used as raw materials for the manufacture of pharmaceuticals and polymers.Currently,primary diamines are mainly derived from petro... Primary diamines play an important role in the chemical industry,where they are widely used as raw materials for the manufacture of pharmaceuticals and polymers.Currently,primary diamines are mainly derived from petroleum,while harsh or toxic conditions are often needed.Biomass is abundant and renewable,which serves as a promising alternative raw material to produce primary diamines.This review primarily focuses on the synthesis of 2,5-bis(aminomethyl)furan(BAMF),a bio-based diamine with potential as a biomonomer for polyamides and polyureas.Specifically,this review emphasizes the synthesis of BAMF fromthree biomass-derived alcohols and aldehydes,namely 5-hydroxymethylfurfural(HMF),2,5-bis(hydroxymethyl)furan(BHMF),and 2,5-diformylfuran(DFF).These are the key substrates to get BAMF and could be readily obtained from carbohydrates.Even though great effort has been put into the synthesis of BAMF,it remains a tough problem to obtain BAMF with a high yield at a low cost due to the inevitable side reactions,such as unwanted hydrogenation reactions and condensation reactions.Many strategies have been proposed to solve this problem,such as the hydrogen-borrowing strategy and stepwise reductive amination strategy.Herein,we will summarize the key advancements in this area,and discuss the challenges that need to be responded in the future,hoping to provide an insight into the design and development of a more efficient system for the production of biomass-derived diamines. 展开更多
关键词 Primary diamine biomass upgrading reductive amination 2 5-bis(aminomethyl)furan
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A facile synthesis of 2-aryloxypyrimidine derivatives via a tandem reductive amination/intermolecular S_NAr sequence 被引量:4
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作者 Hai-feng WU Pei-zhi ZHANG Jun WU 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2010年第2期94-101,共8页
A novel tandem reductive amination/intermolecular nucleophilic aromatic substitution (SNAr) sequence has been established for the synthesis of amine containing pyrimidine in formation of one carbon-oxygen and one carb... A novel tandem reductive amination/intermolecular nucleophilic aromatic substitution (SNAr) sequence has been established for the synthesis of amine containing pyrimidine in formation of one carbon-oxygen and one carbon-nitrogen bonds in a one-pot fashion. Treatment of aldehyde with arylamine, 2-methanesulfonyl-4,6-dimeth-oxypyrimidine and sodium borohydride provides good overall yield. The p-toluenesulfonic acid (PTSA) can be used as activator and is generally needed in the reaction. Dioxane is the preferred reaction solvent, but reactions can also be carried out in tetrahydrofuran (THF), MeCN, toluene and dichloromethane. The procedure is carried out effectively in the presence of K2CO3. The reaction proceeds smoothly with aromatic aldehydes and arylamines possessing elec-tron-donating or-withdrawing groups. This method can be applied to the synthesis of the oilseed rape herbicide and is superior to the classical one in several aspects: cutting out several purification steps, minimizing solvent use and chemical waste, and saving time. Its advantages such as operational convenience, high-efficient synthesis, and starting material availability make it a desirable method for preparing amines with molecular diversity and biological activity. 展开更多
关键词 reductive amination/intermolecular SNAr C-O and C-N bonds Amine PYRIMIDINE HERBICIDE
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Efficient light-driven reductive amination of furfural to furfurylamine over ruthenium-cluster catalyst 被引量:3
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作者 Zhen Xue Shasha Wu +7 位作者 Yujing Fu Lan Luo Min Li Zhenhua Li Mingfei Shao Lirong Zheng Ming Xu Haohong Duan 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第1期239-248,I0007,共11页
Selective reductive amination of carbonyl compounds with high activity is very essential for the chemical and pharmaceutical industry,but scarcely successful paradigm was reported via efficient photocatalytic reaction... Selective reductive amination of carbonyl compounds with high activity is very essential for the chemical and pharmaceutical industry,but scarcely successful paradigm was reported via efficient photocatalytic reactions.Herein,the ultrasmall Ru nanoclusters(~0.9 nm)were successfully fabricated over P25 support with positive charged Ru^(δ+)species at the interface.A new route was developed to achieve the furfural(FAL)to furfurylamine(FAM)by coupling the light-driven reductive amination and hydrogen transfer of ethanol over this type catalyst.Strikingly,the photocatalytic activity and selectivity are strongly dependent on the particle size and electronic structure of Ruthenium.The Ru^(δ+)species at the interface promote the formation of active imine intermediates;moreover,the Ru nanoclusters facilitate the separation efficiency of electrons and holes as well as accelerate the further hydrogenation of imine intermediates to product primary amines.In contrast Ru particles in larger nanometer size facilitate the formation of the furfuryl alcohol and excessive hydrogenation products.In addition,the coupling byproducts can be effectively inhibited via the construction of sub-nanocluster.This study offers a new path to produce the primary amines from biomass-derived carbonyl compounds over hybrid semiconductor/metal-clusters photocatalyst via light-driven tandem catalytic process. 展开更多
关键词 FURFURAL reductive amination Ru nanoclusters Hydrogen transfer PHOTOCATALYSIS
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Effective synthesis of 5-amino-1-pentanol by reductive amination of biomass-derived 2-hydroxytetrahydropyran over supported Ni catalysts 被引量:2
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作者 Xuemei Li Junying Tian +4 位作者 Hailong Liu Congkui Tang Chungu Xia Jing Chen Zhiwei Huang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第4期631-641,共11页
A highly efficient and green process was developed for the synthesis of useful 5-amino-1-pentanol(5-AP)from biomass-derived dihydropyran by coupling the in situ generation of 5-hydroxypentanal(5-HP,via the ring-openin... A highly efficient and green process was developed for the synthesis of useful 5-amino-1-pentanol(5-AP)from biomass-derived dihydropyran by coupling the in situ generation of 5-hydroxypentanal(5-HP,via the ring-opening tautomerization of 2-hydroxytetrahydropyran(2-HTHP))and its reductive amination over supported Ni catalysts.The catalytic performances of the supported Ni catalysts on different oxides including SiO2,TiO2,ZrO2,γ-Al2 O3,and MgO as well as several commercial hydrogenation catalysts were investigated.The Ni/ZrO2 catalyst presented the highest 5-AP yield.The characterization results of the oxide-supported Ni catalysts showed that the Ni/ZrO2 catalyst possessed high reducibility and a high surface acid density,which lead to the enhanced activity and selectivity of the catalyst.The effect of reaction parameters on the catalytic performance of the Ni/ZrO2 catalyst was studied,and a high 5-AP yield of 90.8%was achieved in the reductive amination of 2-HTHP aqueous solution under mild conditions of 80℃and 2 MPa H2.The stability of the Ni/ZrO2 catalyst was studied using a continuous flow reactor,and only a slight decrease in the 5-AP yield was observed after a 90-h time-on-stream.Additionally,the reaction pathways for the reductive amination of 2-HTHP to synthesize 5-AP were proposed. 展开更多
关键词 Ni catalyst reductive amination DIHYDROPYRAN 5-Amino-1-pentanol Structure-performance relationship
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ZrCl_4/Hantzsch 1,4-dihydropyridine as a new and efficient reagent combination for the direct reductive amination of aldehydes and ketones with weakly basic amines 被引量:2
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作者 Zhen Gang Liu Nan Li Li Yang Zhong Li Liu Wei Yu 《Chinese Chemical Letters》 SCIE CAS CSCD 2007年第4期458-460,共3页
ZrCl4/Hantzsch 1,4-dihydropyridine is a mild and highly efficient reagent combination for the direct reductive amination. Weakly basic amines such as anilines substituted by electron-withdrawing group and heteroaromat... ZrCl4/Hantzsch 1,4-dihydropyridine is a mild and highly efficient reagent combination for the direct reductive amination. Weakly basic amines such as anilines substituted by electron-withdrawing group and heteroaromatic amines can be reductively alkylated with electron rich aldehydes and ketones under mild conditions to form the secondary amines in excellent yields. 展开更多
关键词 Zirconium tetractfloride Hantzsch 1 4-dihydropyfidine reductive amination
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Reductive amination of aldehydes and ketones using sodium borohydride in the presence of silica chloride under solvent-free conditions 被引量:1
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作者 Heshmatollah Alinezhad Mahmood Tajbakhsh Neda Hamidi 《Chinese Chemical Letters》 SCIE CAS CSCD 2010年第1期47-50,共4页
A simple and convenient procedure for the preparation of amines from aldehydes and ketones with sodium borohydride activated by silica chloride as a catalyst under solvent-free conditions is described.A variety of ali... A simple and convenient procedure for the preparation of amines from aldehydes and ketones with sodium borohydride activated by silica chloride as a catalyst under solvent-free conditions is described.A variety of aliphatic and aromatic aldehydes,ketones and amines when mixed with NaBH;/silica chloride at room temperature,afforded excellent yield of the corresponding amines. 展开更多
关键词 reductive amination Silica chloride Solvent-free conditions Sodium borohydride
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Reductive amination of ketones with ammonium catalyzed by a newly identified Brevibacterium epidermidis strain for the synthesis of(S)-chiral amines
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作者 Qing‐Hua Li Yuan Dong +4 位作者 Fei‐Fei Chen Lei Liu Chun‐Xiu Li Jian‐He Xu Gao‐Wei Zheng 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第10期1625-1632,共8页
The asymmetric reductive amination of achiral ketones with ammonia is a particularly attractive reaction for the synthesis of chiral amines.Although several engineered amine dehydrogenases have been developed by prote... The asymmetric reductive amination of achiral ketones with ammonia is a particularly attractive reaction for the synthesis of chiral amines.Although several engineered amine dehydrogenases have been developed by protein engineering for the asymmetric reductive amination of ketones,they all display(R)‐stereoselectivity.To date,there is no report of an(S)‐stereoselective biocatalyst for this reaction.Herein,a microorganism named Brevibacterium epidermidis ECU1015 that catalyzes the(S)‐selective reductive amination of ketones with ammonium has been successfully isolated from soil.Using B.epidermidis ECU1015 as the catalyst,the asymmetric reductive amination of a set of phenylacetone derivatives was successfully carried out,yielding the corresponding(S)‐chiral amines with moderate conversion and>99%enantiomeric excess. 展开更多
关键词 BIOCATALYSIS reductive amination Asymmetric synthesis Prochiral ketones Chiral amine
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Selectively reductive amination of levulinic acid with aryl amines to N-substituted aryl pyrroles
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作者 Cailing Wu Mengjie Lou +5 位作者 Mingming Sun Huiyong Wang Zhiyong Li Jikuan Qiu Jianji Wang Zhimin Liu 《Green Energy & Environment》 SCIE EI CSCD 2023年第2期438-443,共6页
Synthesizing nitrogen(N)-containing molecules from biomass derivatives is a new strategy for production of this kind of chemicals.Herein,for the first time we present the synthesis of N-substituted aryl pyrroles via r... Synthesizing nitrogen(N)-containing molecules from biomass derivatives is a new strategy for production of this kind of chemicals.Herein,for the first time we present the synthesis of N-substituted aryl pyrroles via reductive amination/cyclization of levulinic acid(LA)with primary aromatic amines and hydrosilanes(e.g.,PMHS)over Cs F,and a series of N-substituted aryl pyrroles could be obtained in good to excellent yields at 120○C.The mechanism investigation indicates that the reaction proceeds in two steps:the cyclization between amine and LA occurs first to form intermediate 5-methyl-N-alkyl-1,3-dihydro-2H-pyrrolones and their isomeride(B),and then the chemo-and region-selective reduction of intermediates take place to produce the final products.This approach for synthesis of N-substituted aryl pyrroles can be performed under mild and green conditions,which may have promising applications. 展开更多
关键词 BIOMASS Levulinic acid reductive amination PYRROLE
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Nickel-catalyzed enantioselective reductive amination of benzylic ketones in alcohols
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作者 Xiuhua Wang Jianrong Steve Zhou 《Science China Chemistry》 SCIE EI CAS CSCD 2024年第8期2566-2570,共5页
Asymmetric reductive amination directly converts ketones and amines to alkylamines, which are important motifs in medicines.We report that cationic nickel complexes of chiral diphosphines promote enantioselective redu... Asymmetric reductive amination directly converts ketones and amines to alkylamines, which are important motifs in medicines.We report that cationic nickel complexes of chiral diphosphines promote enantioselective reductive amination of benzylic ketones with both arylamines and benzhydrazide. Isopropanol was used as a safe and cheap source of hydrogen instead of formic acid. The reaction can be readily applied to a concise synthesis of diarylethylamines, a class of neuroactive substances. 展开更多
关键词 transfer hydrogenation nickel catalysis chiral alkylamine reductive amination synthetic method
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Natural attapulgite supported nano-Ni catalysts for the efficient reductive amination of biomass-derived aldehydes and ketones
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作者 Jia Zhang Jian Yang +5 位作者 Xuemei Li Bin Mu Hailong Liu Chungu Xia Aiqin Wang Zhiwei Huang 《Green Synthesis and Catalysis》 2024年第1期42-50,共9页
The efficient synthesis of useful primary amines via reductive amination of biomass-based aldehydes and ketones over earth-abundant base metal catalysts is an attractive biomass value-adding technology yet facing lots... The efficient synthesis of useful primary amines via reductive amination of biomass-based aldehydes and ketones over earth-abundant base metal catalysts is an attractive biomass value-adding technology yet facing lots of challenges.Herein,natural attapulgite(ATP)was applied as support for the fabrication of active Ni catalysts with different Ni loadings(5–30 wt%)by the deposition-precipitation method.The Ni/ATP-550 catalyst with 10–15 wt%Ni loadings was found to present the highest catalytic performance for the synthesis of valuable 5-amino-1-pentanol(5-AP)via reductive amination of biofurfural-derived 2-hydroxytetrahydropyran among a variety of commonly used oxide supports loaded Ni catalysts,as well as ATP supported nickel catalysts with other loadings,achieving 5-AP yield up to 94%.The intrinsic activity of the Ni/ATP catalysts was found to depend strongly on the Ni^(0) crystallite size and Ni^(0) fraction of the catalysts,which generally increased with increasing Ni^(0) crystallite size and fraction,owing probably to the hydrogenation of imine intermediate is a structure-sensitive reaction.The efficient 10Ni/ATP-550 catalyst also exhibited good activity and stability in the reductive amination of several other biomass-derived aldehydes and ketones to their corresponding primary amines with good to excellent yields(81%–99%).This work provided a clean and efficient natural ATP-supported non-noble metal nickel-based catalytic system for the reductive amination of aldehydes and ketones to synthesize high-value-added primary amines,which could be a promising candidate for the industrial production of amines. 展开更多
关键词 ATTAPULGITE Nano-Ni catalyst reductive amination 5-Amino-1-pentanol Structure-activity relationship
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Reductive amination of bio-platform molecules to nitrogen-containing chemicals
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作者 Longfei Yan Guoyu Wang +2 位作者 Dongsheng Xiang Yu Zhang Weiping Deng 《Carbon Neutrality》 2024年第1期426-448,共23页
Catalytic transformation of renewable biomass into value-added chemicals is an appealing strategy to upgrade bio-mass resources.Due to the presence of abundant oxygen-containing groups such as hydroxyl and aldehyde,bi... Catalytic transformation of renewable biomass into value-added chemicals is an appealing strategy to upgrade bio-mass resources.Due to the presence of abundant oxygen-containing groups such as hydroxyl and aldehyde,biomass and its derived platform molecules have been served as ideal starting feedstock to synthesize valuable N-containing chemicals through reductive amination.In this mini review,we overviewed the recent advances in the reductive ami-nation of several key bio-platform molecules including hydroxyl carboxylic acids,furfural,5-hydroxylmethyl furfural and levulinic acid,with a focus on the production of amino acids,furan amines and pyrrolidones using thermocataly-sis,electrocatalysis or photocatalysis.Moreover,the functions of active sites and the reaction mechanisms in different catalytic systems are discussed to get insights into the key factors in the reductive amination of biomass resources. 展开更多
关键词 BIOMASS Bio-platform molecules reductive amination N-containing chemicals
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Reductive amination of 1,6-hexanediol with Ru/Al2O3 catalyst in supercritical ammonia 被引量:7
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作者 Yan Li Haiyang Cheng +6 位作者 Chao Zhang Bin Zhang Tong Liu Qifan Wu Xinluona Su Weiwei Lin Fengyu Zhao 《Science China Chemistry》 SCIE EI CAS CSCD 2017年第7期920-926,共7页
Hexamethylenediamine(HMDA) is an important reagent for the synthesis of Nylon-6,6, and it is usually produced by the hydrogenation of adiponitrile using a toxic reagent of hydrocyanic acid. Herein, we developed an env... Hexamethylenediamine(HMDA) is an important reagent for the synthesis of Nylon-6,6, and it is usually produced by the hydrogenation of adiponitrile using a toxic reagent of hydrocyanic acid. Herein, we developed an environmental friendly route to produce HMDA via catalytic reductive amination of 1,6-hexanediol(HDO) in the presence of hydrogen. The activities of several heterogeneous metal catalysts such as supported Ni, Co, Ru, Pt, Pd catalysts were screened for the present reaction in supercritical ammonia without any additives. Among the catalysts examined, Ru/Al_2O_3 presented a high catalytic activity and highest selectivity for the desired product of HMDA. The high performance of Ru/Al_2O_3 was discussed based on the Ru dispersion and the surface properties like the acid-basicity. In addition, the reaction parameters such as reaction temperature,time, H_2 and NH_3 pressure were examined, and the reaction processes were discussed in detail. 展开更多
关键词 1 6-hexanediol hexamethylenediamine supercritical ammonia reductive amination Ru/Al2O3
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A Fast and Highly Efficient Protocol for Reductive Amination of Aromatic Aldehydes Using NaBH4 and Isoxazole Amines in an Ionic Liquid Medium 被引量:3
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作者 Eligeti, Rajanarendar Atthunuri, Siva Rami Reddy Samala, Raju Shaik, Firoz Pasha Govardhan Reddy 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2011年第4期769-772,共4页
Reductive amination of aromatic aldehydes using NaBH4 and isoxazole amines is carried out in a Bronsted acidic ionic liquid 1 -methylimidazolium tetrafluoroborate [(HMIm)BF4]. The ionic liquid plays dual roles of so... Reductive amination of aromatic aldehydes using NaBH4 and isoxazole amines is carried out in a Bronsted acidic ionic liquid 1 -methylimidazolium tetrafluoroborate [(HMIm)BF4]. The ionic liquid plays dual roles of solvent as well as catalyst for the efficixcellent yields without any undesired side product formation. The newly synthesized compoundsent transformation of aromatic aldehydes to heterocyclic substituted amines in e (3, 6 and 7) were characterized by IR, 1H NMR and mass spectral techniques. 展开更多
关键词 ionic liquid green chemistry reductive amination 1-methylimidazolium tetrafluoroborate isoxazole amine
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General Reductive Amination of Aldehydes and Ketones with Amines and Nitroaromatics under H2 by Recyclable Iridium Catalysts 被引量:2
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作者 Dejun Sui Fei Mao +2 位作者 Haipeng Fan Zhengliang Qi Jun Huang 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2017年第9期1371-1377,共7页
Heterogeneous iridium catalysts were prepared and applied for the reductive amination of aldehydes and ketones with nitroaromatics and amines using H2. The iridium catalysts were prepared by pyrolysis of ionic liquid ... Heterogeneous iridium catalysts were prepared and applied for the reductive amination of aldehydes and ketones with nitroaromatics and amines using H2. The iridium catalysts were prepared by pyrolysis of ionic liquid 1-methyl-3-cyanomethylimidazoulium chloride ([MCNI]C1) with iridium chloride (IrC13) in activated carbons. Iridium particles were well dispersed and stable in the N-doped carbon materials from [MCNI]C1 with activated carbon. The Ir@NC(600-2h) catalyst was found to be highly active and selective for the reductive amination of aldehydes and ketones using H2 and a variety of nitrobenzenes and amines were selectively converted into the corresponding secondary and tertiary amines. The Ir@NC(600-2h) catalyst can be reusable several times without evident deactivation. 展开更多
关键词 reductive amination IRIDIUM AMINES NITROAROMATICS ALDEHYDES
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Catalytic reductive amination of furfural to furfurylamine on robust ultra-small Ni nanoparticles 被引量:2
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作者 Yinze Yang Leilei Zhou +3 位作者 Xinchao Wang Liyan Zhang Haiyang Cheng Fengyu Zhao 《Nano Research》 SCIE EI CSCD 2023年第3期3719-3729,共11页
The synthesis of primary amines via reductive amination in the presence of NH_(3)and H_(2),as a green and sustainable process,has attracted much attention.In this paper,we prepared series of Ni/SiO_(2)catalysts with d... The synthesis of primary amines via reductive amination in the presence of NH_(3)and H_(2),as a green and sustainable process,has attracted much attention.In this paper,we prepared series of Ni/SiO_(2)catalysts with deposition-precipitation and impregnation methods,and their catalytic performances on the reductive amination of a biomass derived compound of furfural to produce furfurylamine were studied.The catalytic activity and the yield were correlated to the structure and the surface properties of catalysts largely.The Ni/SiO_(2)is of high Lewis acidity and small Ni particle with numerous large Ni flat step surface showed high activity and selectivity,it afforded a reaction rate of 12.8 h^(−1)and a high yield to furfurylamine around 98%.These results are superior to the most non-noble metal catalysts reported so far.Moreover,the reaction route was examined with the unit control reactions of the intermediate.To produce furfurylamine selectively,the most suitable catalyst should have the moderate but not the highest activity in activation of hydrogen and hydrogenation in the reductive amination of furfural.This work provides some useful information for the catalytic reductive amination of aldehydes both in the design of catalyst and the reaction route. 展开更多
关键词 Ni nanoparticle reductive amination FURFURAL FURFURYLAMINE
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Iridium-Catalyzed Reductive Amination of Levulinic Acid to Pyrrolidinones under H2 in Water 被引量:1
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作者 Zhanwei Xu Peifang Yan +2 位作者 Hong Jiang Kairui Liu Z. Conrad Zhang 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2017年第5期581-585,共5页
The synthesis of pyrrolidinones from reductive amination of levulinic acid (LA) with primary amines is reported.Pyrrolidinones have various applications such as surfactants,pharmaceutical intermediates,dispersants,a... The synthesis of pyrrolidinones from reductive amination of levulinic acid (LA) with primary amines is reported.Pyrrolidinones have various applications such as surfactants,pharmaceutical intermediates,dispersants,and solvents.The half-sandwich Cp*Ir complex (Cp* is 1,2,3,4,5-pentamethylcyclopenta-l,3-diene) coordinated by bipyridine ligand bearing both dimethylamino and ortho-hydroxyl groups showed high catalytic activity for the reductive amination of LA.A range of primary amines,such as aromatic and benzyl amines,were readily converted to corresponding pyrrolidinones in good yields. 展开更多
关键词 IRIDIUM reductive amination HYDROGENATION levulinic acid BIOMASS
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Reductive Amination of Aldehydes and Ketones with Primary Amines by Using Lithium Amidoborane as Reducing Reagent 被引量:1
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作者 徐维亮 郑学丽 +1 位作者 吴国涛 陈萍 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2012年第8期1775-1780,共6页
A variety of secondary amines were obtained in high isolated yields in the reductive amination of aldehydes and ketones by using lithium amidoborane as reducing agent. Compared to ammonia borane, lithium amidoborane h... A variety of secondary amines were obtained in high isolated yields in the reductive amination of aldehydes and ketones by using lithium amidoborane as reducing agent. Compared to ammonia borane, lithium amidoborane has higher reducibility, and thus, exhibits faster reaction rate. 展开更多
关键词 lithium amidoborane reductive amination primary amines ALDEHYDES KETONES
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Highly efficient synthesis of chiralβ-amino phosphine derivatives via direct asymmetric reductive amination with ammonium salts and H_(2) 被引量:1
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作者 Yufeng Liu Linzhou Wang +3 位作者 Yingjun Li Baode Ma Gen-Qiang Chen Xumu Zhang 《Green Synthesis and Catalysis》 2022年第3期298-301,共4页
A highly efficient and enantioselective method for the asymmetric reductive amination ofβ-keto phosphine de-rivatives was disclosed,and the correspondingβ-amino phosphine oxides could be obtained in high yields(up t... A highly efficient and enantioselective method for the asymmetric reductive amination ofβ-keto phosphine de-rivatives was disclosed,and the correspondingβ-amino phosphine oxides could be obtained in high yields(up to 97%yield)and excellent enantioselectivities(up to 97%ee).Moreover,the reaction worked well on a gram scale,indicating that our protocol has potential applications in the synthesis of chiral ligands and organocatalysts. 展开更多
关键词 Asymmetric reductive amination Chiralβ-amino phosphine Ruthenium-catalysed Ammonium salt
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Practical N-alkylation via homogeneous iridium-catalyzed direct reductive amination
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作者 Jing Wang Wenji Wang +3 位作者 Xiongyu Yang Jingwen Liu Haizhou Huang Mingxin Chang 《Science China Chemistry》 SCIE EI CAS CSCD 2023年第2期518-525,共8页
Direct reductive amination(DRA)is one of the most efficient methods for amine synthesis.Herein we report a practical homogeneous DRA procedure utilizing iridium catalysis.Applying simple,readily available and inexpens... Direct reductive amination(DRA)is one of the most efficient methods for amine synthesis.Herein we report a practical homogeneous DRA procedure utilizing iridium catalysis.Applying simple,readily available and inexpensive PPh_(3)and alike ligands along with iridium at a low loading,aldehydes and ketones reductively coupled with primary and secondary amines to efficiently form structurally and functionally diverse amine products,including a set of drugs and compounds from late-stage manipulation.The reaction conditions were exceptionally mild and additive-free,in which oxygen,moisture,polar protic groups and multiple other functional groups were tolerated.For targeted products,this methodology is especially versatile for offering multiple possible synthetic options.The 10 gram-scale synthesis further demonstrated the potential and promise of this procedure in practical amine synthesis.DFT studies reveal an“outer-sphere”H-addition pathway,in whichπ-πinteractions and H-bonding play important roles. 展开更多
关键词 homogeneous catalysis HYDROGENATION Iridium catalysis N-ALKYLATION reductive amination
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Toward scalable production of biobased N-substituted furfurylamines by engineered imine reductases
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作者 Jian-Peng Wang Guang-Hui Lu +2 位作者 Qian Wu Jian-Rong Dai Ning Li 《Chinese Journal of Catalysis》 2025年第9期210-220,共11页
N-substituted furfurylamines(FAs)are valuable precursors for producing pharmacologically active compounds and polymers.However,enzymatic synthesis of the type of chemicals is still in its infancy.Here we report an imi... N-substituted furfurylamines(FAs)are valuable precursors for producing pharmacologically active compounds and polymers.However,enzymatic synthesis of the type of chemicals is still in its infancy.Here we report an imine reductase from Streptomyces albidoflavus(SaIRED)for the reductive amination of biobased furans.A simple,fast and interference-resistant high-throughput screening(HTS)method was developed,based on the coloration reaction of carbonyl compounds with 2,4-dinitrophenylhydrazine.The reductive amination activity of IREDs can be directly indicated by a colorimetric assay.With the reductive amination of furfural with allylamine as the model reaction,SaIRED with the activity of 4.8 U mg^(-1) was subjected to three rounds of protein engineering and screening by this HTS method,affording a high-activity tri-variant I127V/D241A/A242T(named M3,20.2 U mg^(-1)).The variant M3 showed broad substrate scope,and enabled efficient reductive amination of biobased furans with a variety of amines including small aliphatic amines and sterically hindered amines,giving the target FAs in yields up to>99%.In addition,other variants were identified for preparative-scale synthesis of commercially interesting amines such as N-2-(methylsulfonyl)ethyl-FA by the screen method,with isolated yields up to 87%and turnover numbers up to 9700 for enzyme.Gram-scale synthesis of N-allyl-FA,a valuable building block and potential polymer monomer,was implemented at 0.25 mol L^(-1) substrate loading by a whole-cell catalyst incorporating variant M3,with 4.7 g L^(-1) h^(-1) space-time yield and 91%isolated yield. 展开更多
关键词 N-substituted furfurylamines Imine reductases reductive amination High-throughput screening Protein engineering
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