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1.
A novel one-pot synthetic route to the poorly studied 4-heteroaryl-1,2-dihydro-3-benzazepine motif from 3,4-dihydroisoquinolinium compounds is described. The synthetic approach is based on heterocyclic ring expansion of isoquinoline substrates upon reaction with chloromethyl-substituted heterocycles. The scope and limitations of the reaction were investigated to give a series of novel heteroaryl-3-benzazepines.  相似文献   

2.
3.
The scope of MgI2 as a valuable tool for quantitative and mild chemoselective cleavage of protecting groups is described here. This novel synthetic approach expands the use of protecting groups, widens the concept of orthogonality in synthetic processes, and offers a facile opportunity to release compounds from solid supports.  相似文献   

4.
《印度化学会志》2023,100(6):101005
A novel synthetic approach was proposed for a metal free reduction of nitro aromatic compounds to the resultant amines by sodium dithionite. A series of nitro compounds containing various reducible functional groups were chemoselectively reduced in good to excellent yield. Instantaneously some of the products are chemically degraded and all are characterized by spectral methods.  相似文献   

5.
Divergent route: A direct C?C bond-forming approach to the key aryl-substituted all-carbon quaternary stereogenic center present in bioactive hydrodibenzofuran alkaloids has been discovered. This approach involves an unprecedented organocatalytic enantioselective Michael addition of α-cyanoketones with acrylates and was used in a novel and divergent synthetic strategy for the title compounds in asymmetric fashion.  相似文献   

6.
A straightforward and greener approach has been developed for the synthesis of novel aminomethylene bisphosphonates by one-pot reaction of diverse aryl/heteroaryl amines with dialkyl phosphite and triethyl orthoformate using CuO nanoparticles as catalyst under microwave irradiation and solvent-free conditions. This is an ecofriendly synthetic approach for swift access to a library of diverse aminomethylene bisphosphonates. All the synthesized new compounds were evaluated for their antimicrobial activity by disc diffusion method and antioxidant activity by DPPH, H2O2, and NO methods. The title compounds exhibited significant antioxidant and considerable antimicrobial activities.  相似文献   

7.
Halichlorine and Pinnaic acid are two novel marine natural products isolated from a Japanese sponge, and an Okinawan bivalve respectively. The unique azaspirl[4.5]decane-core structure prexent in both compounds provides a synthetic challenge, Herein, we describe a synthetic approach to the azaspiro[4.5]decane-core structure through an intramolecular[3+2] cycloaddition followed by an intra-molecular Michael addition and in situ isomerization to afford the azaspirocyclic core structures stereospecifically in 10 steps with 40% overall yield. Alternatively, the same core structure was achieved by tandem cycloaddition and isomerization approach.  相似文献   

8.
A novel complexity-generating reaction is described, which can be used in a high-throughput parallel solution-phase combinatorial format. The synthetic pathway features the Ugi four component reaction followed by intramolecular cyclization via C-C bond formation. Starting from readily available initial reactants, the described approach leads to generation of novel 3-oxoisoindoline-1-carboxamides with four points of diversity around the core scaffold. The scope and limitations of the involved chemistry and some chemical transformations of the synthesized compounds are discussed.  相似文献   

9.
Cronin L  Murphy PV 《Organic letters》2005,7(13):2691-2693
[reaction: see text] Polyhydroxylated indolizidines have potential for treatment of HIV, hepatitis C and HSV infection, multiple sclerosis, angiogenesis, cancer, and diabetes. A new synthetic approach to the title compounds from a 5-C-methoxypyranosyl azide has been developed. The route incorporates the aldol reaction and a novel catalytic reductive amination cascade to generate the indolizidine ring.  相似文献   

10.
A promising approach among the numerous efforts to cure cancer is the interruption of the tumour-induced formation of new blood vessels (angiogenesis). By suppressing angiogenesis with drugs, the tumour can neither grow to a life threatening size, nor metastasize. The natural product fumagillin 1 and the structurally related ovalicin 2 are two of the most potent anti-angiogenic compounds. Here, we report the design and synthesis of novel fumagillin and ovalicin analogues lacking reactive epoxy functionalities, which were thought to be responsible for the severe toxic side-effects observed. We also report a new synthetic approach and the determination of the anti-angiogenic properties of these compounds in endothelial cells.  相似文献   

11.
王露  孙威  刘超 《催化学报》2018,39(11):1725-1729
有机硼化合物广泛应用于合成化学、药物化学以及材料化学等领域,开发新颖实用的方法合成有机硼化合物是重要的研究领域.在各种有机硼化合物中,苄基硼酸酯有着一些特有的性质,例如活性相对较高,可以有效地当作苄基化试剂使用.目前已有多种合成苄基硼酸酯的方法,主要集中在苄基格氏试剂或者锂试剂的硼化反应,但是该方法底物兼容性较差,而且苄基格氏试剂或者锂试剂的制备比较困难.随着催化反应的发展,过渡金属(如Pd,Cu,Ni,Fe)催化苄基卤代物的硼化反应及芳基卤代物和1,1-二硼类化合物的偶联反应能够有效地合成这类化合物.一级苄醇在钯或铜的催化作用下也可以转化为苄基硼酸酯.苄基C–H键的催化硼化是潜在的构建苄基硼酸酯的高原子经济性的方法,但目前其选择性和反应活性仍不高.在无金属催化的条件下,对甲苯磺酰腙类化合物与HBpin或B_(2pin_2)发生1,2-金属迁移是合成苄基硼酸酯的有效方法.到目前为止,虽然有很多种合成苄基硼酸酯的方法,但仍无法满足其合成需求,因此开发新型的方法合成苄基硼酸酯具有重要的意义.本文开发了一种新型的铜催化芳香醛/酮类化合物的脱氧氢硼化转化体系.使用廉价易得的铜作为催化剂,叔丁醇钠或者叔丁醇钾作为碱,醇质子作为氢源,在100℃的条件下,芳香醛和芳香酮可直接转化成一级和二级苄基硼酸酯类化合物,该反应操作简单,反应体系可以兼容多种官能团,分离产率在21%–77%之间.反应机理方面,该转化有两种可能的过程,(1)反应体系中首先生成1,1-偕二硼化合物,该化合物在碱和EtOH的作用下发生脱硼质子解,最终转化成苄基单硼化合物;(2)醇质子转化成负氢物种,并与体系中的冄-OBpin硼酸酯生成四配位硼,发生1,2-迁移后得到目标产物.为了验证上述两种反应途径的可行性,我们进行了一系列的控制试验.首先合成了苯乙酮的1,1-二硼化合物,在催化量碱与当量醇的作用下,以99%的收率得到了脱硼质子解的产物,说明1,1-二硼化合物可以在反应体系中转化成苄基单硼化合物.以苯甲醛作为原料合成了冄-OBpin硼酸酯,首先将其投入到甲醇、叔丁醇钠和B_(2pin_2)的体系中,最终得到了47%的苄基单硼;同时将冄-OBpin硼酸酯投入到HBpin与叔丁醇钠的体系中,得到了57%的苄基单硼化合物,说明第二种反应过程通过1,2-迁移得到目标产物也是可行的.在当前的实验条件下,两种反应路径都是可能的.  相似文献   

12.
The design and synthesis of head‐to‐tail linked artificial macrocycles using the Ugi‐reaction has been developed. This synthetic approach of just two steps is unprecedented, short, efficient and works over a wide range of medium (8–11) and macrocyclic (≥12) loop sizes. The substrate scope and functional group tolerance is exceptional. Using this approach, we have synthesized 39 novel macrocycles by two or even one single synthetic operation. The properties of our macrocycles are discussed with respect to their potential to bind to biological targets that are not druggable by conventional, drug‐like compounds. As an application of these artificial macrocycles we highlight potent p53–MDM2 antagonism.  相似文献   

13.
Dynamic covalent chemistry (DCvC) is a powerful and widely applied tool in modern synthetic chemistry, which is based on the reversible cleavage and formation of covalent bonds. One of the inherent strengths of this approach is the perspective to reversibly generate in an operationally simple approach novel structural motifs that are difficult or impossible to access with more traditional methods and require multiple bond cleaving and bond forming steps. To date, these fundamentally important synthetic and conceptual challenges in the context of DCvC have predominantly been tackled by exploiting compounds of lighter p-block elements, even though heavier p-block elements show low bond dissociation energies and appear to be ideally suited for this approach. Here we show that a dinuclear organometallic bismuth compound, containing BiMe2 groups that are connected by a thioxanthene linker, readily undergoes selective and reversible cleavage of its Bi−C bonds upon exposure to external stimuli. The exploitation of DCvC in the field of organometallic heavy p-block chemistry grants access to unprecedented macrocyclic and barrel-type oligonuclear compounds.  相似文献   

14.
A novel and convenient approach, the domino retro Diels-Alder/Diels-Alder reaction sequence for highly stereo- and regioselective synthesis of various bicyclo[2.2.2]octenone and bicyclo[2.2.2]octadienone derivatives is presented. Thus, the masked o-benzoquinones (MOBs) 2a-e generated by the pyrolysis of the respective dimers 3a-e participated in this novel synthetic strategy with a variety of olefinic and acetylenic dienophiles at 220 degrees C to provide the title compounds in good to excellent yields.  相似文献   

15.
Some new spirocarbocyclic compounds with highly diastereoselectivity were synthesized using a simple, green and high efficiency method. The IR, 1H NMR and 13C NMR spectroscopy and C.H.N analyses were applied for identification of these compounds. This novel synthetic approach was performed from acid catalytic pathway using CuFe2O4 MNPs as a nanocatalyst in aqueous moiety.  相似文献   

16.
Lipase-catalyzed transesterification of the 20 hydroxyl group in a series of pregnanes afforded novel 20-ethyl succinates that are not possible to prepare following the traditional synthetic methods. The reaction is stereoselective. The enzyme reacts selectively with the 20β epimers therefore only the 20β-succinyloxy derivatives are obtained. These compounds are obtained in variable yield, depending on the substitution in the ring A. The enzymatic approach allowed, for the first time, the synthesis of 20β-hemisuccinyloxy-5αH-pregnan-3-one, novel compound useful as a precursor of steroid-protein conjugates.  相似文献   

17.
A new synthetic approach is described for building the coumarin scaffold through the Lewis acid‐promoted cyclization of novel aryl 3‐(dimethylamino)prop‐2‐enoates 2a – 2f . The latter precursors were prepared via aminomethylenation of the corresponding aryl acetates 4a – 4f with the Bredereck reagent. This approach was used for the synthesis of biologically active natural compounds 1a – 1f , through a three‐step procedure starting from the corresponding phenols.  相似文献   

18.
Several novel synthetic organic compounds were successfully analyzed with a unique type of GC-MS titled Supersonic GC-MS following a failure in their analysis with standard GC-MS. Supersonic GC-MS is based on interfacing GC and MS with a supersonic molecular beam (SMB) and on electron ionization of sample compounds as vibrationally cold molecules while in the SMB, or by cluster chemical ionization. The analyses of novel synthetic organic compounds significantly benefited from the extended range of compounds amenable to analyses with the Supersonic GC-MS. The Supersonic GC-MS enabled the analysis of thermally labile compounds that usually degrade in the GC injector, column and/or ion source. Due to the high carrier gas flow rate at the injector liner and column these compounds eluted without degradation at significantly lower elution temperatures and the use of fly-through EI ion source eliminated any sample degradation at the ion source. The cold EI feature of providing trustworthy enhanced molecular ion (M+), complemented by its optional further confirmation with cluster CI was highly valued by the synthetic organic chemists that were served by the Supersonic GC-MS. Furthermore, the provision of extended mass spectral structural, isomer and isotope information combined with short (a few minutes) GC-MS analysis times also proved beneficial for the analysis of unknown synthetic organic compounds. As a result, the synthetic organic chemists were provided with both qualitative and quantitative data on the composition of their synthetic mixture, and could better follow the path of their synthetic chemistry. Ten cases of such analyses are demonstrated in figures and discussed.  相似文献   

19.
《Tetrahedron》2019,75(25):3472-3478
Two protocols for synthesis of series of low-molecular-weight di- and tri-substituted pyrimidines bearing a functional group at the 4th position, which rely on a base-mediated condensation of amidines or guanidines with β-alkoxyvinyl α-keto esters, have been developed. This approach allowed for multigram preparation of novel pyrimidine-4-carboxylates in 21–90% yield. The synthetic utility of these compounds was demonstrated by some standard functional group transformations providing promising building blocks for organic synthesis and drug discovery.  相似文献   

20.
Nitrene-transfer reactions are powerful synthetic tools for the direct incorporation of nitrogen atoms into organic molecules. The discovery of novel nitrene-transfer reactions has been dominantly supported not only by improvements in transition-metal catalysts but also by the employment of novel precursors of nitrenoids. Since pioneering work involving the use of organic azides and iminoiodinanes as practical synthetic tools for nitrogen-containing compounds was reported, a new approach using various N-heterocycles containing strain energy or a weak bond has emerged. In this review, we briefly summarize the history of nitrene-transfer chemistry from the viewpoint of its precursors. In particular, the use of N-heterocycles such as 2H-azirines, 1,4,2-dioxazol-5-ones, 1,2,4-oxadiazol-5-ones, isoxazol-5(4H)-ones, and isoxazoles is comprehensively described, showing the recent remarkable progress in this chemistry.  相似文献   

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