期刊文献+
共找到16篇文章
< 1 >
每页显示 20 50 100
利用镜质体芳核C=C键红外吸收波数的变化规律测定煤的变质程度 被引量:1
1
作者 肖建新 陈善庆 《中国煤田地质》 1997年第3期21-22,61,共3页
用IR—1600系列傅利叶变换红外线分光光度计对腐植煤系列的褐煤、长焰煤、气煤、肥煤、焦煤、瘦煤、贫煤和无烟煤煤样的镜质体作了测定,其红外光谱特征反映了它们在变质程度上的区别。得出的镜质体芳核C=C键红外吸收波数随煤级变化曲... 用IR—1600系列傅利叶变换红外线分光光度计对腐植煤系列的褐煤、长焰煤、气煤、肥煤、焦煤、瘦煤、贫煤和无烟煤煤样的镜质体作了测定,其红外光谱特征反映了它们在变质程度上的区别。得出的镜质体芳核C=C键红外吸收波数随煤级变化曲线,反映了腐植煤的芳核C=C键红外吸收波数随煤化程度增加而降低或向低波数迁移的规律。有理由相信,腐植煤的煤化程度或牌号煤也可以用红外光谱方法精确确定。 展开更多
关键词 芳核c=c键 红外吸收波数 镜质体 腐植煤 煤矿床
下载PDF
烯醇还原酶不对称生物还原激活的C=C键的研究最新进展
2
作者 杨隽娴 吴小飞 +1 位作者 高强 刘均洪 《化学工业与工程技术》 CAS 2008年第1期20-25,共6页
在消耗NAD(P)H的条件下,烯醇还原酶不对称还原带有吸电子基团的烯烃的C=C键,生成相应的非外消旋烷烃,同时产生2个手性碳原子中心。为了避免需要外部的辅因子再循环,迄今为止,主要还是用整个微生物细胞进行生物转化,但细胞内由于有其他... 在消耗NAD(P)H的条件下,烯醇还原酶不对称还原带有吸电子基团的烯烃的C=C键,生成相应的非外消旋烷烃,同时产生2个手性碳原子中心。为了避免需要外部的辅因子再循环,迄今为止,主要还是用整个微生物细胞进行生物转化,但细胞内由于有其他酶的竞争,使得这种生物转化通常表现出较低的立体选择性和较多的副反应。利用在同一宿主中共表达烯醇还原酶及相应催化NAD(P) H循环再生的氧化还原酶,有望解决以上的缺点,使得生物转化表现出较高的立体选择性,并可在制备规模上专一性生物还原激活的C=C键。 展开更多
关键词 烯醇还原酶 不对称 生物还原 激活c=c键
下载PDF
可见光催化CO_(2)参与的芳基烯烃碳碳双键断键羧基化反应
3
作者 曹可弓 高田宇 +7 位作者 廖黎丽 冉川昆 蒋元旭 章炜 周琦 叶剑衡 蓝宇 余达刚 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第1期74-80,共7页
烯烃广泛存在于自然界中,在医药、农药和材料等领域具有重要应用.烯烃的C=C键断裂和转化是许多工业过程的基础,可以实现烃类资源的重组与利用.目前,C=C键参与的氧化裂解和烯烃复分解反应已有广泛的研究.相比而言,C=C键参与的还原裂解虽... 烯烃广泛存在于自然界中,在医药、农药和材料等领域具有重要应用.烯烃的C=C键断裂和转化是许多工业过程的基础,可以实现烃类资源的重组与利用.目前,C=C键参与的氧化裂解和烯烃复分解反应已有广泛的研究.相比而言,C=C键参与的还原裂解虽然是烯烃与一系列亲电试剂反应合成功能分子的重要途径,但受限于烯烃自身结构和反应特点,该过程存在较大的挑战,目前研究很少.CO_(2)具有储量丰富、廉价易得、无毒且可循环再生等优点,是合成多种大宗化学品及精细化学品的理想碳一资源.然而,CO_(2)由于热力学稳定性及动力学惰性,在温和条件下难以高效、高选择性转化.因此,利用CO_(2)参与烯烃C=C键还原裂解,选择性构建高值化合物,是一个重要且具有挑战性的研究方向.近年来,可见光催化由于具有反应条件温和、官能团兼容性高等优点,为有机合成等领域提供了新的发展机遇.本文利用二环己基甲基胺作为电子给体,成功实现了可见光催化CO_(2)参与的芳基烯烃C=C键断键羧基化反应.该反应成功的关键在于,二环己基甲基胺既能高效还原淬灭激发态光敏剂并参与烯烃的胺基烷基-羧基化反应,又不明显抑制胺基烷基化中间体对激发态光敏剂的还原淬灭.研究结果表明,多种不同取代(如给电子基和吸电子基)的芳基烯烃均可与CO_(2)发生羧基化反应,高效高选择性地构建了一系列官能团丰富的芳基乙酸类化合物(如萘普生等药物分子).该方法具有反应条件温和(1 atm,室温)、官能团耐受性好以及可用于合成药物衍生物等特点.此外,本文通过氘代实验等机理研究和密度泛函理论计算证明,胺甲基羧化中间体、苄基自由基和苄基碳负离子都是该反应的关键中间体,并提出了可能的反应机理:首先,二环己基甲基胺还原淬灭激发态光敏剂,产生α-胺基碳自由基,与芳基烯烃发生自由基加成反应,得到苄基自由基,进而被还原态光敏剂还原为碳负离子,对CO_(2)亲核进攻得到烯烃的胺基烷基-羧基化中间体;作为电子给体,该中间体可以淬灭另一分子的激发态光敏剂,并通过分子内去质子化过程,产生α-胺基碳自由基物种,进而经历自由基型β-C断裂,生成热力学更稳定的羧基化苄基自由基,从而实现了烯烃C=C键的还原裂解;最后,新产生的苄基自由基被进一步还原为碳负离子,经历质子化过程后得到目标产物.综上,本文以还原裂解的方式丰富了C=C键断键官能团化反应领域,在温和条件下实现了CO_(2)的高效高选择性转化,合成了高附加值的芳基乙酸类化合物,阐明了反应机制,为烯烃和CO_(2)的同时高值化利用提供了新思路,为后续相关反应的开发和应用提供参考. 展开更多
关键词 二氧化碳 可见光催化 c=c键裂解 羧基化 芳基乙酸
下载PDF
溴与不同取代C=C双键反应的机理和立体选择性 被引量:4
4
作者 许家喜 麻远 《大学化学》 CAS 2023年第2期109-115,共7页
溴与C=C双键的反应是有机化学中一类常见的基元反应。溴与烯烃的C=C双键发生亲电加成反应,脂肪烯烃经过三元环正离子中间体再亲核开环机理,形成立体专一的反式加成产物;而芳基烯烃形成的三元环中间体,由于芳基对碳正离子的稳定作用,其... 溴与C=C双键的反应是有机化学中一类常见的基元反应。溴与烯烃的C=C双键发生亲电加成反应,脂肪烯烃经过三元环正离子中间体再亲核开环机理,形成立体专一的反式加成产物;而芳基烯烃形成的三元环中间体,由于芳基对碳正离子的稳定作用,其苯甲位C―Br键容易断裂,会得到顺式和反式加成产物的混合物。溴与酮和酰氯形成的烯醇或烯醇负离子发生亲电取代,反应中溴不会与其C=C双键形成三元环正离子中间体。类似地,溴与烯醇醚和烯胺的反应也不经过三元环正离子中间体,分别生成非立体专一的加成和取代产物。本文通过参与该步基元反应的分子轨道合理地解释了溴与这两类底物反应的机理和立体选择性的区别,并总结了溴与不同C=C双键反应机理的判断方法,便于教师讲授和学生理解。 展开更多
关键词 反应 c=c键 机理 分子轨道
下载PDF
Engineering the coordination structure of Cu for enhanced photocatalytic production of C_(1) chemicals from glucose
5
作者 Lulu Sun Shiyang Liu +3 位作者 Taifeng Liu Dongqiang Lei Nengchao Luo Feng Wang 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第8期234-243,共10页
Photocatalytic decomposition of sugars is a promising way of providing H_(2),CO,and HCOOH as sus-tainable energy vectors.However,the production of C_(1) chemicals requires the cleavage of robust C−C bonds in sugars wi... Photocatalytic decomposition of sugars is a promising way of providing H_(2),CO,and HCOOH as sus-tainable energy vectors.However,the production of C_(1) chemicals requires the cleavage of robust C−C bonds in sugars with concurrent production of H_(2),which remains challenging.Here,the photo-catalytic activity for glucose decomposition to HCOOH,CO(C_(1) chemicals),and H_(2) on Cu/TiO_(2)was enhanced by nitrogen doping.Owing to nitrogen doping,atomically dispersed and stable Cu sites resistant to light irradiation are formed on Cu/TiO_(2).The electronic interaction between Cu and nitrogen ions originates valence band structure and defect levels composed of N 2p orbit,distinct from undoped Cu/TiO_(2).Therefore,the lifetime of charge carriers is prolonged,resulting in the pro-duction of C_(1) chemicals and H_(2) with productivities 1.7 and 2.1 folds that of Cu/TiO_(2).This work pro-vides a strategy to design coordinatively stable Cu ions for photocatalytic biomass conversion. 展开更多
关键词 cu photocatalyst coordination structure BIOMASS cc bond c_(1) chemicals
下载PDF
Hydrogen auto-transfer under aerobic oxidative conditions: Efficient synthesis of saturated ketones by aerobic C-C cross-coupling of primary and secondary alcohols catalyzed by a Au_6Pd/resin catalyst 被引量:1
6
作者 周茂祥 张磊磊 +4 位作者 Jeffrey T. MILLER 杨小峰 刘晓艳 王爱琴 张涛 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第10期1764-1770,共7页
Au and Au-containing bimetallic nanoparticles are promising catalysts for the green synthesis of fine chemicals. Here, we used a Au6Pd/resin catalyst for the aerobic C-C cross-coupling of primary and secondary alcohol... Au and Au-containing bimetallic nanoparticles are promising catalysts for the green synthesis of fine chemicals. Here, we used a Au6Pd/resin catalyst for the aerobic C-C cross-coupling of primary and secondary alcohols to produce higher ketones under mild conditions. This is of importance to the construction of a C-C bond. Various substrates were used in the reaction system, and moderate to good yields were obtained. The catalysts can be reused at least five times without decrease of yield. The control experiment and XAFS characterization results showed that hydrogen au- to-transfer occurred on metallic Pd sites even under oxidative conditions. On alloying with Au, the Pd sites became resistant to oxidation and readily abstracted the β-H of the alcohols and transferred the hydride to the C=C bond in the reaction intermediate to give the saturated product. 展开更多
关键词 Au-Pd alloysc-c coupling reactionOxidation of alcoholsHydrogen auto-transferOxidation-resistant
下载PDF
Production of bio-ethanol by consecutive hydrogenolysis of corn-stalk cellulose 被引量:6
7
作者 Dawang Chu Yingying Xin Chen Zhao 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第5期844-854,共11页
Current bio-ethanol production entails the enzymatic depolymerization of cellulose,but this process shows low efficiency and poor economy.In this work,we developed a consecutive aqueous hydrogenolysis process for the ... Current bio-ethanol production entails the enzymatic depolymerization of cellulose,but this process shows low efficiency and poor economy.In this work,we developed a consecutive aqueous hydrogenolysis process for the conversion of corn-stalk cellulose to produce a relatively high concentration of bio-ethanol(6.1 wt%)without humin formation.A high yield of cellulose(ca.50 wt%)is extracted from corn stalk using a green solvent(80 wt%1,4-butanediol)without destroying the structure of the lignin.The first hydrothermal hydrogenolysis step uses a Ni–WO_(x)/SiO_(2)catalyst to convert the high cumulative concentration of cellulose(30 wt%)into a polyol mixture with a 56.5 C%yield of ethylene glycol(EG).The original polyol mixture is then subjected to subsequent selective aqueous-phase hydrogenolysis of the C–O bond to produce bioethanol(75%conversion,84 C%selectivity)over the modified hydrothermally stable Cu catalysts.The added Ni component favors the good dispersion of Cu nanoparticles,and the incorporated Au3+helps to stabilize the active Cu^(0)-Cu^(+)species.This multi-functional catalytic process provides an economically competitive route for the production of cellulosic ethanol from raw lignocellulose. 展开更多
关键词 corn-stalk cELLULOSE Aqueous-phase hydrogenolysis BIO-ETHANOL Ni-WO_(x)catalyst cu^(0)-cu^(+)species c-c bond cleavage
下载PDF
Photocatalytic conversion of waste plastics to low carbon number organic products 被引量:3
8
作者 Kaiyi Su Huifang Liu +1 位作者 Chaofeng Zhang Feng Wang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第3期589-594,共6页
As a great threat to all livings on earth,waste artificial plastics now are everywhere,from oceans to our cells[1].The world cannot withstand the growing waste plastic in million tonnes every year,which has already ca... As a great threat to all livings on earth,waste artificial plastics now are everywhere,from oceans to our cells[1].The world cannot withstand the growing waste plastic in million tonnes every year,which has already caused environmental pollution and economic losses[2].Besides the efforts for preparing novel plastics with the self‐decomposition ability,methods are needed to clear away these waste plastics leftover from history or recycle well this organic carbon resource[3].Photocatalysis is a potential solution for the conversion of waste plastics under mild conditions.In this perspective,we highlight the effect of photocatalytic approaches toward the generation of low carbon number organic products(C_(n) products,n≤8)from waste plastics,which can proceed under an inert or aerobic atmosphere.Notably,critical analysis of the carbon source in products is necessary to reveal the active species for the C–X bonds(X=C,N,and O)cleavage of plastics.Finally,we outline potential avenues for further development of this emerging field to enhance the yield of C_(n)(n≤8)products from waste plastics. 展开更多
关键词 PHOTOcATALYSIS PLASTIcS cc bond cleavage Fuel cHEMIcALS
下载PDF
Efficient splitting of alcohols into hydrogen and C–C coupled products over ultrathin Ni‐doped ZnIn_(2)S_(4) nanosheet photocatalyst 被引量:2
9
作者 Jing‐Yu Li Ming‐Yu Qi Yi‐Jun Xu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第4期1084-1091,共8页
Integrating selective organic synthesis with hydrogen(H_(2))evolution in one photocatalytic redox reaction system sheds light on the underlying approach for concurrent employment of photogenerated electrons and holes ... Integrating selective organic synthesis with hydrogen(H_(2))evolution in one photocatalytic redox reaction system sheds light on the underlying approach for concurrent employment of photogenerated electrons and holes towards efficient production of solar fuels and chemicals.In this work,a facile one‐pot oil bath method has been proposed to fabricate a noble metal‐free ultrathin Ni‐doped ZnIn_(2)S_(4)(ZIS/Ni)composite nanosheet for effective solar‐driven selective dehydrocoupling of benzyl alcohol into value‐added C–C coupled hydrobenzoin and H_(2) fuel,which exhibits higher performance than pure ZIS nanosheet.The remarkably improved photoredox activity of ZIS/Ni is mainly attributed to the optimized electron structure featuring narrower band gap and suitable energy band position,which facilitates the ability of light harvesting and photoexcited charge carrier separation and transfer.Furthermore,it has been demonstrated that it is feasible to employ ZIS/Ni for various aromatic alcohols dehydrocoupling to the corresponding C–C coupled products.It is expected that this work can stimulate further interest on the establishment of innovative photocatalytic redox platform coupling clean solar fuels synthesis and selective organic conversion in a sustainable manner. 展开更多
关键词 Redox photocatalysis Ni doping ZnIn_(2)S_(4)nanosheet cc coupling Hydrogen production
下载PDF
Catalytic cracking mechanisms of tar model compounds 被引量:1
10
作者 陈波 时章明 +1 位作者 蒋绍坚 田红 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第12期3100-3107,共8页
B3LYP/6-31G(d,p) method was used to investigate the catalytic cracking mechanism of biomass tar model compound.Phenol,toluene and benzene were selected as the tar model compounds and CaO was selected as the catalyst.T... B3LYP/6-31G(d,p) method was used to investigate the catalytic cracking mechanism of biomass tar model compound.Phenol,toluene and benzene were selected as the tar model compounds and CaO was selected as the catalyst.The pathways of tar compound radical absorbed by CaO were determined firstly through comparing enthalpy changes of the absorption,and then Mulliken population changes were analyzed.The results show that the absorption of tar model compound radical and CaO is an exothermic reaction.Formation of C—O—Ca is more easily than that of C—Ca—O and formation of Caromatic—Caromatic—Ca—O is more easily than that of Caromatic—C(O)—Ca—O.The C—C bond Mulliken populations in tar model compound radicals are reduced by 11.9%,10.5% and 15.5% in the case of a hydrogen atom removed,and those are 15.7%,14.3% and 16.3% in the case of two hydrogen atoms removed through the absorption of CaO.Catalytic ability of CaO acting on the tar model compound is in an order of phenol>benzene>toluene. 展开更多
关键词 BIOMASS tar model compounds catalytic cracking MEcHANISMS quantum chemistry
下载PDF
Ionization and Dissociation of Benzene and Aniline under Deep Ultraviolet Laser Irradiation
11
作者 Lijun Geng Hanyu Zhang +2 位作者 Haiming Wu Zhendong Sun Zhixun Luo 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2020年第5期583-589,I0014-I0028,I0078,I0079,共24页
We report a study on photo-ionization of benzene and aniline with incidental subsequent dissociation by the customized reflection time-of-flight mass spectrometer utilizing a deep ultraviolet 177.3 nm laser.Highly eff... We report a study on photo-ionization of benzene and aniline with incidental subsequent dissociation by the customized reflection time-of-flight mass spectrometer utilizing a deep ultraviolet 177.3 nm laser.Highly efficient ionization of benzene is observed with a weak C4H3+fragment formed by undergoing disproportional C-C bond dissociation.In comparison,a major C5H6+·fragment and a minor C6H6+·radical are produced in the ionization of aniline pertaining to the removal of CNH·and NH·radicals,respectively.First-principles calculation is employed to reveal the photo-dissociation pathways of these two molecules having a structural difference of just an amino group.It is demonstrated that hydrogen atom transfer plays an important role in the cleavage of C-C or C-N bonds in benzene and aniline ions.This study is helpful to understand the underlying mechanisms of chemical bond fracture of benzene ring and related aromatic molecules. 展开更多
关键词 PHOTO-DISSOcIATION Mass spectrometry BENZENE ANILINE Deep ultraviolet laser c-c bond activation
下载PDF
Reflux-synthesized bulk and diluted W-Nb-O mixed oxide bronzes for the valorization of short-chain oxygenates aqueous mixtures
12
作者 D.Delgado A.Fernández-Arroyo +2 位作者 N.La Salvia M.E.Domine Jose M.López Nieto 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第11期1778-1787,共10页
This work reports the preparation of bulk and KIT-6-diluted W-Nb-O mixed oxide bronzes by a reflux method. The influence of the incorporation of Nb and a mesoporous silica on the physicochemical features of the cataly... This work reports the preparation of bulk and KIT-6-diluted W-Nb-O mixed oxide bronzes by a reflux method. The influence of the incorporation of Nb and a mesoporous silica on the physicochemical features of the catalysts is studied. The addition of Nb favors the formation of single-phase oxide bronze structure, with improved Lewis acidity;while the incorporation of KIT-6 gives rise to well-dispersed mixed metal oxide particles on the diluter. These diluted W-Nb-O catalysts present enhanced surface areas and mesopore volumes. The materials have been tested in the valorization of an aqueous model mixture (acetol/propanal/ethanol/acetic acid/water weight ratio of 5/25/10/30/30), through C-C bond formation reactions. The increase in the Lewis nature of surface acid sites stands as the key point to maximize the total organic yield during the reaction (C5-C10 products). The best catalysts maintain their catalytic behavior after five consecutive uses. 展开更多
关键词 KIT-6 W-Nb-O oxides Aqueous oxygenates Biomass feedstocks c-c bond formation
下载PDF
Manganese-Catalyzed Ring-Opening C—C Bond Fluorination of Cyclobutanols
13
作者 Wang Limei Liu Xiaoyuan +4 位作者 Zan Jincheng Sun Shutao Liu Lei Li Wei Liu Xigong 《有机化学》 SCIE CAS CSCD 北大核心 2024年第7期2333-2340,共8页
Manganese-catalyzed C—C bond cleavage of cyclobutanols has attracted great attention due to the high abundance and cheap and eco-friendly behaviour.A manganese-catalyzed ring-opening C—C bond fluorination of cyclobu... Manganese-catalyzed C—C bond cleavage of cyclobutanols has attracted great attention due to the high abundance and cheap and eco-friendly behaviour.A manganese-catalyzed ring-opening C—C bond fluorination of cyclobutanols is reported.Under mild conditions,the reaction provides a straightforward access to γ-fluorinated ketones using 10 mol% Mn(OAc)_(2) as catalyst and electrophilic fluorination reagent,which was generated in situ from HF·Et 3N and PhIO,as fluorine source.The reaction has an excellent functional-group tolerance and displays a broad substrate scope,affording the corresponding products in 50%~76%yields. 展开更多
关键词 manganese catalysis cc bond functionalization cyclobutanol FLUORINATION γ-fluorinated ketone
原文传递
Oxidative cross-coupling: an alternative way for C–C bond formations 被引量:1
14
作者 Zhiyuan Huang Shan Tang Aiwen Lei 《Science Bulletin》 SCIE EI CAS CSCD 2015年第16期1391-1394,共4页
Coupling reaction usually refers to the direct C–C bond formation between two carbon fragments.Generally, cross-coupling reactions between nucleophiles and electrophiles have been extensively studied and become the c... Coupling reaction usually refers to the direct C–C bond formation between two carbon fragments.Generally, cross-coupling reactions between nucleophiles and electrophiles have been extensively studied and become the classic model for bond constructions. Another reaction model, bond formation from two nucleophiles through oxidative cross-coupling, has received more and more attention over the past few years. This paper will discuss the concept of oxidative cross-coupling and give an overview of its recent development. 展开更多
关键词 Oxidative cross-coupling c-c bondformation OXIDANT NUcLEOPHILE
原文传递
Recent advances in radical-mediated fluorination through C-H and C-C bond cleavage 被引量:1
15
作者 Hong Yan Chen Zhu 《Science China Chemistry》 SCIE EI CAS CSCD 2017年第2期214-222,共9页
The C-H and C-C bonds are abundant in organic compounds,yet generally inert in chemical transformations.Therefore,direct functionalization of inert chemical bonds remains challenging.The fluorine-containing compounds ... The C-H and C-C bonds are abundant in organic compounds,yet generally inert in chemical transformations.Therefore,direct functionalization of inert chemical bonds remains challenging.The fluorine-containing compounds are of special interest for their uses in medicinal chemistry.Direct fluorination of C-H and C-C bonds undoubtedly represents one of the most ideal and attractive approaches to incorporate fluorine atom into complex molecules.Herein,we summarize the recent advances in radical-mediated C-H and C-C bond fluorination.Three types of transformations are discussed:(1)direct C-H abstraction/fluorination of alkanes;(2)decarboxylative fluorination of alkyl carboxylic acids;(3)ring-opening fluorination. 展开更多
关键词 fluorination c-H functionalization decarboxylation ring-opening radical
原文传递
A facile access for the C–N bond formation by transition metal-free oxidative coupling of benzylic C–H bonds and amides
16
作者 Jie Liu Heng Zhang +2 位作者 Hong Yi Chao Liu Aiwen Lei 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第8期1323-1328,共6页
Using 2,3-dichloro-5,6-dicyano-p-benzoquinone(DDQ)as the oxidant,we communicate an efficient oxidative C–N coupling of benzylic C–H bonds with amides to afford a series of amination products in good yields.A wide ra... Using 2,3-dichloro-5,6-dicyano-p-benzoquinone(DDQ)as the oxidant,we communicate an efficient oxidative C–N coupling of benzylic C–H bonds with amides to afford a series of amination products in good yields.A wide range of functional groups as well as various sulfonamides and carboxamides are well tolerated.Moreover,this reaction involves both the challenging C–H functionalization and C–N bond formation. 展开更多
关键词 oxidative coupling c-N bond formation AMINATION c-H functionalization
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部