998 resultados para H(1S)-H(1S) COLLISIONS


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有机半导体材料正以其光电性能优异、生产成本低廉,加工工艺简单,选材范围宽广,性质调节方便,易于制成大面积器件,与柔性基底结合性好对器件适度弯曲或扭曲而光电性能无明显改变等显著优点,吸引了世界范围内的目光。新的加工方法在有机微电子器件产生、发展和应用中发挥着技术推动力的作用。而从传统的硅基材料为基础的无机微电子中发展起来的光刻工艺,由于制作成本非常昂贵,工艺十分复杂,对环境要求苛刻,不适宜大面积生产,很难制作尺寸小于100nm的图形,而且大多数有机材料的光电性能在光刻胶、显影液等溶液中会大幅的下降,所以不适于有机器件的加工,因此目前开发适合有机材料的廉价大面积加工方法成为研究的焦点。本论文在软刻蚀技术基础上,以机械瓤附力或毛细力为图案化驱动力提出了多种有机电子器件加工方法,并取得了初步的结果。主要有三种方法:金属传递打印、热剥离、冰模板方法。(1)利用聚合物粘弹性随温度和饱和溶剂处理时间变化的规律,通过调控金属薄膜和模板及金属薄膜和聚合物薄膜之间界面相互作用力,发展出以机械粘附力作为图案化驱动力的金属传递打印(MTP)方法。它可以适用于多种材料例如Au、AI等金属和PS、PMMA等多种聚合物。这种方法的分辨率目前在5协m左右。与其它打印技术相比MTP的一个显著的优点是它可以形成多层结构,这种结构在微电子电路(如欧姆接触等方面)中有着巨大的潜在应用价值。为展示金属传递打印在有机电子器件加工中的应用,我们将MTP用于有机场效应晶体管(OFETs)的加工,并在-3cm*3cm的Si片上形成大面积晶体管器件。这些器件的场效应迁移率-0.0193士0.0038cm2V-1s-1。(2)发展了一种用环氧树脂模板为模板图案化的方法一热剥离(Hotlift-off)。它是一种利用机械薪附力为图案化驱动力的方法,所以适用材料范围非常广泛,既可以加工有机电子器件的有源部分一有机半导体材料,也可以加工有机电子器件的金属电极部分,是一种多功能的方法。我们将热剥离用于有机晶体管和有机发光二极机管的加工。这些器件的性能与用其它方法加工的器件性能相当。(3)我们用冰为模板实现了聚合物的图案化,因为大多数聚合物溶液对冰模板不会产生溶解、溶胀作用,所以这种方法适用于许多聚合物材料如P3HT、PvK和PMMA等。这种方法与其它使用PDMS、硅片或金属为模板的方法相比最突出的优点是冰模板非常容易被除去。所以使用冰模板方法可以加工出多种别的方法无法胜任的聚合物结构如多元聚合物结构,自由无支撑的聚合物结构,聚合物微沟道。以上这些图案化技术具有快速大面积图案化、可在开放的空气环境中操作的优点,为发展适宜于未来塑性电子器件卷帘式(reel to reel)的加工过程提供新思路,促进了塑性电子学的发展。

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对于稀土与非稀土所组成的二元复合氧化物的研究国外已有较多的报导。但是,对于稀土和锑的复合氧化物只是近年来才开始有些研究工作。含锑与稀土的多元复合氧化物的报导就更少。本文在我们实验室张静筠等人三元复合氧化物研究的基础上,开展Mo—Sb_2O_5—R_2O_3—R'_2O_3—Bi_2O_3多元体系的研究工作,这对于我国丰产元素稀土和锑的应用以及利用Bi~(3+)的激活与敏化将是有益的。本文按Thornton等人的方法合成了Ba_2BiSbO_6,Ba_2GdSbO_6,按EγΦECEHKO等人的方法合成了M_2RSbO_6 (M = Ba、Sr、Ca, R = La Y)。并以M_2RSbO_6为基质,掺Sm~(3+)、Eu~(3+)、Dy~(3+)、Ho~(3+)、Er~(3+)、Tm~(3+)和Bi~(3+),研究它们的化学组成,晶体结构与发光性能的关系及规律,Bi~(3+)的荧光和敏作用。同时研究了它们的磁学和热学性能。化学组成的分析结果表明,计算的含量与实验测得的含量符合较好,说明化学反应是按化学计量比进行的。通过X-射线粉沫物相分析和晶胞参数的理论计算确定M_2RSbO_6(M = Ba、Sr、R = La、Y、Gd、Bi)复合氧化物是属于立方钙钛太型化合物。空间群为Fm3m,点群为Oh。用计算机计算了Ca_2YSbO_6的晶胞参数并结合荧光光谱分析确定它属于畸变的单斜钙钛矿,空间群为P_(21)。用磁天平测量了样品M_2RSbO_6 (M = Ba、Sr、Ca; R = Gd、Y、Bi)的磁化率。除Ba_2GdSbO_6是顺磁性物质外共余的都是反磁性的物质。按所用原料Sb_2O_5计算的磁化率与测量值符合较好,表明在所研究的M_2RSbO_6化合物中锑是正五价的。用热重热差分析仪测量了样品在反应中的热性能,观察到在化合物形成的过程中所用原料Sb_2O_3大约在520 ℃左右氧化变为Sb_2O_5。除所用原料碳酸盐分解外没有挥发性的物质,这就进一步证明化学组成分析和磁化率测量的结果是正确的。光学测量的结果表明,所有的磷光体随着激活离子浓度的不同其光谱都发生规律性的变化。对于不同Eu~(3+)浓度的Ba_2YSbO_6:Eu~(3+)和Br_2YSbO_6:Eu~(3+), Bi~(3+)体系用254nm激发时均能观察到Eu~(3+)于595nm的尖峰发射。用基质和Bi~(3+)的激发峰325nm激发时,明显地看到敏化剂Bi~(3+)到Eu~(3+)的能量传递,使Eu~(3+)于595nm的发射大大增强,我们认为Bi~(3+)对Eu~(3+)的敏化作用是由于基质和Bi~(3+)的~1S。→ 3P_1的跃迁吸收了激发的能量,然后无辐射弛豫到Eu~(3+)的激发态~5D_0,产生~5D_0 → 7F_1的磁偶极跃迁。对于不同Eu~(3+)浓度的Sr_2YSbO_6:Eu~(3+)和Sr_2YSbO_6:Eu~(3+), Bi~(3+)体系用245nm激发时均能观察到Eu~(3+)于595nm的尖峰发射。用基质和Bi~(3+)的激发峰335nm激发时,观察到基质和Bi~(3+)对Eu~(3+)具有某种能量传递。敏化作用机理与上述的Ba_2YSbO_6:Eu~(3+)和Ba_2YSbO_6:Eu~(3+), Bi~(3+)体系相同。对于不同Eu~(3+)浓度的Ca_2YSbO_6:Eu~(3+)和Ca_2YSbO_6:Eu~(3+), Bi~(3+)体系用396nm激发时,均能观察到Eu~(3+)于613nm很强的尖峰发射。用基质和Bi~(3+)的激发峰313nm激发时,见到Bi~(3+)和基质对Eu~(3+)具有某种能量传递,这种敏化作用主要是由于基质和Bi~(3+)的3P_1 → ~1S_0的400nm的宽带发射和Eu~(3+)的~7F_0 → ~5L_6的396nm的吸收相匹配产生~5L_6→~5D_0→~7F_2的跃迁。通过对激发光谱和荧光光谱的分析给出了Ca_2Y_(0.96)Eu_(0.04)SbO_6的能级图,从实验上可见,Eu~(3+)的发光强烈地依赖于钙钛矿的结构,当Eu~(3+)在空间群为Fm3m 的Ba_2YSbO_6和Sr_2YSbO_6中处于Oh点对称性时,主要是~5D_0 → ~7F_1的磁偶极跃迁。当Eu~(3+)在空间群为P_(21)的单斜钙钛矿中时,主要是~5D_0 → ~7F_2的电偶极跃迁。对于不同掺杂浓度M_2YSbO_6:R~(13+)(M = Ba、Ca; R' = Sm、Dy、Ho、Er、Tm)体系,通过激发和荧光光谱的研究,合理地确定了谱项。发现基质对Sm~(3+)、Dy~(3+)、Ho~(3+)具有敏化作用。对不同Bi~(3+)浓度的Ca_2YSbO_6:Bi~(3+),由激发和荧光光谱可见Bi~(3+)具有二个激发带,第一激发带位于240nm处相当于~1S_0 → ~1P_1的跃迁,第二激发带位于315nm处相当于~1S_0 → ~3P_1的跃迁。有一个很强的兰紫色发射位于400nm处相当于~3P_1 →~1S_0的跃迁。

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I 理论部分:对未知结构聚合物的ESCA谱进行表征,一是利用已知结构小分子化合物的ESCA谱中结合能值进行标定,二是运用电荷电位模型经量子化学计算对谱峰进行归属。由于所处化学环境不同,用小分子化合物的ESCA谱峰位对象合物标定不够准确,量子化学计算又太复杂。本工作提出了电负性经验公式,可计算ESCA谱中C_(1S)结合能位移值,与实测值作对照即可判断聚合物结构,方法简便,准确可靠。电负性经验公式表达如下:聚合物分子链上某碳原子1S电子结合能位移ΔEc可看作该碳原子与相邻基团间电负性差值和的函数,即ΔEc = K_c ∑ from i=1 to 4 1/(n_i) (X_i - 2.5) + b。聚合物分子链上各碳原子的实际电负性为X_c = (∑ form j=1 to 4 1/(n_j) X_j/∑ form j=1 to 4 1/(n_j) + 2.5)/2运用电负性经验公式计算了九个模型化合物中C_(1S)的ΔEc,推导出F作为α、β、γ位碳上的取代基的对α位碳上1s电子结合能位移影响产生的效应值,即,对于ΔEc = aα + bβ + cγ,有α = 3.018 (±0.007),β = 0.2513 (±0.0007) γ = 0.0176 (±0.003)。此结果与ESCA谱实测值相符。本工作设计了十六种化合物模型,模型中具有含氟等离子体聚合物中可能存在的大部分基团,通过电负性经验公式计算求得化学环境不同的C_(1S)结合能位移值,把ESCA谱的实测值和计算值进行对照,可对象合物的求知结构作出大致判断。II 在辉光放电中八氟环丁烷的聚合与刻蚀反应:在碳氧化合物的辉光放电中同时存在聚合与刻蚀两种相反的过程,聚合与刻蚀竞争的结果对聚合速率,产物结构都有很大影响。本工作通过测定聚合速率、IR谱、ESCA谱研究了反应条件对八氟环丁烷等离子体聚合与刻蚀的影响,得到了一致的和半定量的结果。实验证实,随着功率的增大或压力的减小,刻蚀有增强的趋势,不同的等离子气体对聚合与刻蚀的竞争过程有不同的影响,刻蚀强弱的顺序为Ar>N_2>H_2>He,增加等离子气体对单体的比率,引起刻蚀增加。聚合速率不随功率的改变而变化的状态是由聚合与刻蚀间的平衡引起的。随着功率增大或压力减少,聚合产物支化程度增加,线性程度减小,F/C比相应减小。同样随等离子气体种类不同,聚合物支化程度大小的顺序是Ar>N_2>H_2>He,F/C比相应变化。总之,聚合产物支化程度的变化和聚合与刻蚀的竞争结果相一致。对等离子体聚合与刻蚀竞争过程的定量描述未见文献报导。III 八氟环丁烷等离子体聚合物的结构和表征:用IR和ESR谱测得OFCB等离子体聚合物中存在五种元素:C、F、O、N、Si,并对可能存在于结构中的基因作了分析。通过NaHSO_3的亲核双键加成反应,用IR和ESR谱证实了等离子体聚合物中存在的双键及其类型。类似工作未见文献报导。用CuSO_4·5H_2作标样,测出PPOFCB中的自由基浓度为10~(19)自旋数/克。在80、100、120、140 ℃考察PPOFCB中俘获自由基的衰减过程,证实此过程涉及两类不同的反应,一是自由基的复合反应,二是自由基的氧气的终止反应。对上述两类反应进行动力学处理,求出了自由基复合反应在不同温度时的速度常数,并得到反应治化能为374焦耳/摩尔或8.869千卡/摩尔。氧和自由基的终止反应中,氧气的扩散过程是决定反应速度的步骤,反应速度常数就是扩散速度常数,K = 5.3 * 10~(-23)自旋数~(-1)、克分~(-1)。根据VPO测出的PPOFCB的分子量和自由基浓度,算出每4.5个分子中有一个自由基。类似工作未见文献报导。PPOFCB的分子量随反应条件不同而变化,用VPO测出,在80W和40W功率,在Ar存在下制备的OFCB等离子体聚合物的分子量分别为2736和2003。用~(19)F-NMR谱对PPOFCB中的基团进行定量计算,得出在一个90W,He气中制备的聚合物分子中,CF_3-CF_2为6.1,CF_2为13.5,CF_3-CF为7.9,CF为17.5,CF_3-C为6.1,C为13.5。在用上述方法进行结构表征的基础上,提出了OFCB等离子体聚合物的结构模型。IV 八氟环丁烷等离子体聚合的反应历程:以Ar、N_2、H_2、He为等离子气体,分别对OFCB等离子体聚合的气体冷凝物进行GC-Mg、~(19)F-NMR和ESR测试,观察到在气相中,OFCB经历了等离子态反应。单体被打断的程度,和高能电子浓度有关。体系中电子浓度依赖于气体的第一电离势和气相内的化学反应类型。初级粒子二氟卡宾:CF_2和中间体六氟丙烯是气相中的主要产物。~(19)F-NMR证实气相中存在支化产物,表明聚合物在气相中发生了重排。ESR谱测得,在气相产物中存在高浓度的由二种以上组分混合而成的自由基,自由基间的复合反应是生成聚合物的主要增长过程,气相产物的分子量随放电功率的升高而增大。根据聚合物中存在的高含量CF_3基团,分析了CF_3基团对聚合过程的影响。CF_3基团产生了屏蔽效应,它既保护了聚合物不致被降解,也限制了生成高分子量产物。实验证实,CF_3基团的生长来自F的重排,同时未自支化气相产物的非均相增长。OFCB等离子体聚合物中俘获自由基主要是由高能电子轰击聚合物表面产生的,同时来自被固相吸附的带有自由基的气相产物。在碳氟化合物的等离子体聚合中,吸附是和聚合同样重要的过程,气相产物被吸附后,可继续再引发、增长、刻蚀等反应过程、直到成为固相内层分子为止。ESR谱证实,高能粒子的轰击在辉光放电中起主导作用,紫外辐射对含氟聚合物引发和脱氟作用微弱。在气相和表面反应历程讨论的基础上,提出了OFCB等离子体聚合的反应历程模型,解释了碳氢和碳氟两个等离子体象合体系遵循不同反应历程的原因。本部分工作的实验和反应历程解释基本未见文献报导。

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Two obvious emissions are observed from the ZnS clusters encapsulated in zeolite-Y. The emission around 355 nm is sharp and weak, locating at the onset of the absorption edge. The band around 535 nm is broad, strong and Stokes-shifted. Both the two emissions shift to blue and their intensities firstly increase then decrease as the loading of ZnS in zeolite-Y or clusters size decreases. Through investigation, the former is attributed to the excitonic fluorescence, and the latter to the trapped luminescence from surface states. The cluster size-dependence of the luminescence may be explained qualitatively by considering both the carrier recombination and the nonradiative recombination rates. Four peaks appearing in the excitation spectra are assigned to the transitions of 1S-1S, 1S-1P, 1S-1D and surface state, respectively. The excitation spectra of the clusters do not coincide with their absorption spectra. The states splitted by quantum-size confinement are detected in the excitation spectra, but could not be differentiated in the optical absorption spectra due to inhomogeneous broadening. The size-dependence of the excitation spectra is similar to that of the absorption spectra. Both the excitation spectra of excitonic and of trapped emissions are similar, but change in relative intensity and shift in position are observed.

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CdS clusters in zeolite-Y have been prepared by the exchange of Cd2+ into the zeolite following by sulfurization with Na2S in solution. Blue-shifts from the bulk caused by quantum size effect and the change of absorption upon CdS loading are observed. Two absorption bands are detected for one of the sample and are assigned to the 1s-1s band and exciton transition, respectively. The exciton feature is more pronounced in the excitation spectrum than in the absorption spectrum, and the luminescence excited at the exciton band is stronger than that at the 1s-1s band. Copyright (C) 1996 Elsevier Science Ltd

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不对称催化还原反应是当今有机化学研究中最具活力的研究方向之一。在这一研究领域中,已有不少催化剂体系能够对前手性酮或亚胺进行高对映选择性还原,但极少能够对酮和亚胺同时具有很好的催化效果。本论文从光学纯的哌啶酸出发,设计与合成了一系列结构简单、合成方便的手性有机小分子路易斯碱催化剂,并研究了该系列催化剂在酮和亚胺不对称还原本课题组前期研究中开发出L-哌啶酸和(1S,2R)-1,2-二苯基氨基乙醇衍生的路易斯碱催化剂,在三氯氢硅对亚胺的还原反应中显示出很高的催化活性和对映选择性,但对酮的还原却没有得到很理想的催化效果。本研究对该催化剂进行一定的结构改造和修饰,获得了能够同时高对映选择性催化还原酮和亚胺两类底物的有机小分子催化剂。通过优化条件,取得了很好的收率(高达99%)和对映选择性(高达93%的ee 值)。而且,其底物普适性也是前所未有的,对芳香酮和脂肪酮,芳香亚胺和脂肪亚胺都具有很好的催化效果。通过机理方面的探讨,我们推测该催化体系对酮的还原和对亚胺的还原反应可能分别采用了七配位和六配位过渡态模型。Asymmetric reduction is one of the most active research areas in modernasymmetric synthesis. A number of highly efficient methods have been developed forthe asymmetric reduction of either ketones or ketimines. However, there have beenextremely rare examples of catalytic systems that allow for highly enantioselectivereductions of both ketones and ketimines.In this study, starting from optically pure pipecolinic acid, we designed andsynthesized a series of structurally simple and easily accessible chiral organic Lewisbasic catalysts and employed them in asymmetric reduction of ketones and ketimines.Previously our group has developed a highly enantioselective Lewis basiccatalyst for the asymmetric reduction of ketimines by trichlorosilane starting fromL-piperdine-2-carboxylic acid and (1R,2S)-2-amino-1,2-diphenylethanol. But thiscatalyst was found not to be very effective in the asymmetric reduction of ketones.Slight modifications of this catalyst has led to a new highly enantioselective catalystapplicable for the reduction of both ketones and ketimines by trichlorosilane. Underthe optimal conditions, this catalyst afforded excellent yields (up to 99%) andenantioselectivities (up to 93% ee). Moreover, an unprecedented substrate spectrumwas observed with this catalyst, which are highly effective for aromatic and aliphaticketones as well as aromatic and aliphatic ketimines. A heptacoordinate silicontransition structure and a hexacoordinate one were proposed for the reduction of ketones and ketimines, respectively.

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手性胺是合成天然产物和手性药物的重要中间体,亚胺的不对称催化还原是制备光学活性手性胺的最直接有效的方法之一。但是,由于C=N双键的反应活性较弱以及容易发生E/Z异构等问题,亚胺的不对称催化还原具有很大的挑战性,既具有高对映选择性又具有宽广底物普适性的催化剂很少。 本文分别由手性脯氨酸、哌啶酸、哌嗪酸以及氨基醇出发,设计和合成了一系列结构新颖、合成简便、性能优良的酰胺类有机小分子路易斯碱催化剂,以廉价的三氯氢硅为氢源,用这些催化剂催化亚胺不对称还原,得到了非常优良的收率、对映选择性和前所未有的底物普适性。 文献研究认为,除N-甲酰基外,分子内含有芳香酰胺是能催化亚胺还原的有机小分子路易斯碱催化剂具有较高对映选择性的必要条件,我们研究发现N-甲酰脯氨酸非芳香酰胺类催化剂(包括结构简单的C2-对称型脯氨酰胺类催化剂),对N-芳基酮亚胺的还原可获得达86%的对映选择性,远高于同类芳香酰胺催化剂,证明N-甲酰非芳香酰胺类路易斯碱催化剂在亚胺还原中也能得到高的对映选择性。 在进一步研究中,我们以手性六元哌啶酸为模板,分别设计合成了N-甲酰哌啶酸芳香酰胺和N-甲酰哌啶酸非芳香酰胺两类催化剂,其中芳香酰胺催化剂(S)-N-(甲酰基)哌啶-2-酸-1-萘基酰胺(28)和非芳香酰胺催化剂(2S,1'S,2'S)-N-(甲酰基)-哌啶-2-酸(1',2'-二苯基-2'-乙酰氧基-乙基)酰胺(30)显示出非常优良的催化活性和对映选择性,对于N-芳基芳香酮亚胺的还原,无论是缺电子体系还是富电子体系,绝大部分都能得到很高的收率(达98%)和对映选择性(达96% ee)。特别值得一提的是30对一些脂肪族亚胺和α,β-不饱和亚胺的还原,虽然底物为E/Z混合物,也能得到很高的收率(达93%)和对映选择性(达95% ee),这样的底物普适性在过渡金属催化体系中也是前所未有的。 现有的催化亚胺还原的高对映选择性催化体系大多仅适用于甲基酮亚胺底物,对位阻较大的非甲基酮亚胺很难获得好的结果。我们以L-哌嗪酸为模板设计和合成出的(S)-N-(甲酰基)-哌嗪-2-酸-4-对叔丁基苯磺酰基-苯基酰胺不但对N-芳基甲基酮亚胺有很好的对映选择性(达90% ee),而且对于大位阻的N-芳基非甲基酮亚胺有更好的对映选择性(达97% ee)。该催化剂与30在底物普适性方面具有很好的互补性。 我们还设计了基于1,2-二苯基氨基醇为模板的新型N-甲酰路易斯碱有机小分子催化剂,首次发现结构简单的N-甲酰(1S,2R)二苯基氨基醇能较好的催化N-芳基酮亚胺,最高可以得到82%的对映选择性。 针对我们设计合成的结构新颖、性能优良的催化剂,我们对催化机理进行了探讨和解释,提出了几个假想的机理模型。 Catalytic enantioselective reduction of imines represents one of the most straightforward and efficient methods for the preparation of chiral amines, an important intermediate for the synthesis of natural products and chiral drugs. However, asymmetric reduction of imines remains a big challenge and highly enantioselective catalysts with a satisfactorily broad substrate scope remain elusive. Factors contributing to the difficulty of this transformation include the weak reactivity of the C=N bond and the existence of inseparable mixtures of E/Z isomers. Starting from chiral proline, pipecolinic acid, piperazine-2-carboxylic acid and 1,2-diphenyl amino alcohol, a series of structurally simple and easily prepared amides were developed as highly effective Lewis basic organocatalysts for the asymmetric reduction of imines with trichlorosilane as the reducing agent, which promoted the reduction of N-aryl imines with high yields and excellent enantioselectivities with an unprecedented substrate spectrum. In the literature, it has been believed that besides the N-formyl group, the existence of an arylamido group in the structure of Lewis basic organocatalysts is a prerequisite for obtaining high enantioselectivity in the catalytic reduction of imines. However, we found that the N-formyl-L-prolinamides bearing non-arylamido groups, including structurally simple C2-symmetric tetraamides, could also work as effective Lewis basic catalysts to promote the asymmetric reduction of ketimines with high enantioselectivities (up to 86% ee), which are even more enantioselective than the analogues with arylamido groups. In further studies, we developed novel N-formamides with arylamido groups and non-arylmido groups as Lewis basic catalysts using the commercially available L-pipecolinic acid as the template. The catalysts (S)-1-formyl-piperidine-2-carboxylic acid naphthylamide 28 and (2S,1'S,2'S)-acetic acid 2-[(1-formyl-piperidine-2-carbonyl) -amino]-1,2-diphenyl-ethyl ester 30 were found to promote the reduction of a broad range of N-aryl imines in high yields (up to 98%) and excellent ee values (up to 96%) under mild conditions. Furthermore, catalyst 30 also exhibited high enantioselectivities (up to 95% ee) for the challenging aliphatic ketimines and α,β-unsaturated imines despite that these imines exist as E/Z isomeric mixtures. The broad substrate spectrum of this catalyst is unprecedented in catalytic asymmetric imine reduction, including transition-metal-catalyzed hydrogenation processes. Many of the currently available highly enantioselective catalytic systems only tolerate methyl ketimines, which gave poor results for bulkier non-methyl ketimines. Starting from L-piperazine-2-carboxylic acid, we developed (S)-4-(4-tert- butylbenzenesulfonyl)-1-formyl-N-phenyl-piperazine-2-carboxamide as highly enantioselective Lewis basic catalysts for the hydrosilylation of both methyl ketimines and steric bulky non-methyl ketimines. Moreover, higher enantioselectivities were obtained for non-methyl ketimines than methyl ketimines under the catalysis of this catalyst. Thus, this catalyst system complements with 30 in terms of the substrate scope. We also found that easily accessible (1R,2S)-N-formyl-1,2-diphenyl- 2-aminoethanol worked as an effective Lewis basic catalyst in the enantioselective hydrosilylation of ketimines, affording high enantioselectivities (up to 82% ee) for a broad range of ketimines. To rationalize the high efficiencies of the structurally novel catalysts we developed, several catalytic models have been proposed.

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Within the framework of the improved isospin dependent quantum molecular dynamics (ImIQMD) model, the pion emission in heavy-ion collisions in the region 1AGeV is investigated systematically, in which the pion is considered to be mainly produced by the decay of resonances ∆(1232) and N∗(1440). The in-medium dependence and Coulomb effects of the pion production are included in the calculation. Total pion multiplicity and π−/π+ yields are calculated for the reaction 197Au+197Au in central collisions for selected Skyrme parameters SkP, SLy6,Ska, SIII and compared them with the measured data by the FOPI collaboration.