【摘 要】
:
Heterocyclic compounds are engaged into many biological processes,and are also widely used in producing medicine,dyes,insecticide and herbicide etc.Catalytic hydrogenation,especially those using hydro
【机 构】
:
State Key Lab of Molecular Reaction Dynamics,Dalian Institute of Chemical Physics,Zhongshan Road 457
论文部分内容阅读
Heterocyclic compounds are engaged into many biological processes,and are also widely used in producing medicine,dyes,insecticide and herbicide etc.Catalytic hydrogenation,especially those using hydrogen gas as resources,is one of the key reactions for the synthesis and application of heterocyclic compounds.The catalytic hydrogenation of the heterocyclic aromatic compounds have attracted great interest in recent years.Major progress have been made on the experimental field,while the mechanistic study is still inadequate.In recent yeas we have system studied the mechanism of two hydrogenation system: Ru catalyzed hydrogenation of quinoxalines[1] and Pd catalyzed hydrogenation of imines[2,3].We propose a Ru monomer compound for the active catalyst of the Ru system,and a Pd-H compound coordinated by the assymetric ligand for the active catalyst of the Pd system.For both reactions,we found that H2 was split heterolytically by transition metal and a lewis base ligand(or substrate),while the hydrogenation reaction undergo stepwise,ionic,and out-sphere mechanisms.Associate mechanisms and inner-sphere mechanisms were found to be much higher in barrier.Solvent is crucial for the reactivity,and high polar solvent is better.The experimental observed assymetric properties have been reproduced by the theoretical studies,and enantioselectivities were found to be strongly depending on the ligand and the substrate.We propose that the N-H...N hydrogen bond in the transition state are the key factor for the enantioselectivity.Both hydrogenation systems requires additional strong acid,we found that acid involves the reaction directly.For the Ru system we found that the strong acid can catalyze part of the hydrogenation reaction,while for the Pd system the strong acid involves in both H2 activation and hydrogenation.
其他文献
本文研究了具有超支化结构的聚轮烷-阿霉素药物载体的制备及其抗肿瘤作用.通过一系列的化学反应及环糊精与PEG的主客体自组装过程方法成功制备了pH敏感的阿霉素药物偶联载体,实验结果表明该制备方法具有分子量可控,分子量分布窄,载药量固定等优点,且合成的药物载体生物相容性较好.通过动态光散射(DLS)及透射电镜(TEM)发现,该药物载体可以在水溶液中进一步自组装形成粒径在100 nm左右的均一纳米粒子.体
仿生智能离子通道中,径迹刻蚀法制备的纳米孔道由于机械性能好、形状可控和化学修饰容易等优点得到研究者青睐,制备的纳米孔道不仅可以模拟生命体内离子通道的形状,还可以模拟其离子选择性和整流性[1]。实验利用径迹刻蚀法,制备潜径迹的PET薄膜刻蚀单锥形的纳米孔道,纳米通道内部为羧酸基团(-COOH)。在一定条件下内壁带有负电荷,这样通过的离子在表面电荷的作用下,对同性的负电荷排斥,只允许正电荷通过,即离子
In this talk,I will describe our new approach to detect an d image ROSs through inorganic-organic upconversion nanophosphors(Figure 1).This t ype of probes can be used not onl y for ratiometric UCL mo
超分子聚合是小分子单体借助分子间弱的非共价键相互作用在溶液中进行自组装从而制备高分子聚合物的方法。由于分子间弱的非共价键的引入,使超分子聚合物具有可逆性、自我修复性、环境响应性、易降解等特性,故近来受到了国内外的广泛关注。我们结合动态共价键和主客体相互作用构建了多重刺激响应性超分子聚合物。带有二硫键和萘基的超分子聚合物单体通过萘基与葫芦[8]脲的主客体相互作用形成超分子聚合物。由于动态共价键二硫键
电子转移和能量转移过程是光合作用中的重要过程.为了模拟发生在光合作用过程中的天线分子之间的相互作用,我们选择了分子结构确定且相对简单的酞菁聚集体(单体、二聚体和三聚体)为模型分子(Figure 1),通过量化计算、稳态吸收和荧光光谱及飞秒时间分辨吸收光谱等手段,详细探讨了发生在不同聚集体激发态的能量转移和弛豫动力学过程.量子化学计算方法确定的不同聚集体的基态稳定结构表明,二聚体形成 face-to
Flat boron has recently emerged as a fascinating concept in cluster science[1,2].Here we present computational evidence for the quasi-planar all-boron aromatic B36(C6v,1A1)and B36(C2v,2A1)clusters,est
In the first part,the energy transfer pathways in trimeric and hexameric aggregation state of cyanobacteria C-phycocyanin(C-PC)were investigated in the framework of F(o)rster model.Only when the proto
The development of green processes for the direct synthesis of H2O2 from H2 and O2 is of environmental and commercial importance.Basic understanding toward the high activity and selectivity of the PdA
有机发光材料的发光量子效率是决定有机光电器件效率的关键因素。理论上实现定量预测有机分子的发光量子效率一直是科学家们梦寐以求的。分子的发光效率实属分子激发态衰减到基态的复杂的动力学问题,是起始于第一激发态的辐射跃迁、内转换、系间窜越等几种激发态衰减途径之间的竞争结果。应用于固态光电器件的实用性有机发光分子一般是原子数大于50的复杂柔性分子,采用传统的量子动力学方法通过得到其分子基态和激发态的全局势能
Ammonia has long been regarded as a prototype for non-adiabatic dynamics in polyatomic systems and its A-band photodissociation has been involved many interesting issues,such as tunneling,non-adiabati