Studies on the Initial Transient Period of Heterogeneous Asymmetric Catalytic Hydrogenation of Ethyl Pyruvate 丙酮酸乙酯多相不对称催化加氢反应的初始过渡期研究
Pd-chitosan Heterogeneous Catalyst for Chiral Hydrogenation SiO2负载壳聚糖-Pd多相手性加氢催化剂
Fit of dynamics model for heterogeneous catalytic hydrogenation is described in this paper. 详细介绍了多相催化加氢数学模型回归的计算方法。
Preparation of heterogeneous chiral catalysts and their application to asymmetric hydrogenation 多相手性催化剂的制备及其对不对称加氢反应的催化作用
Research progress in heterogeneous catalyst systems ( including gas solid two phase and gas liquid solid three phase reaction) and homogeneous catalyst systems for hydrogenation of maleic anhydride ( MA) are reviewed. 评述了顺酐催化选择加氢制备下游产品的多相催化体系(包括气-固两相或气-固-液三相反应体系)和均相催化体系的研究进展。
Application of Heterogeneous Platinum Catalysts for Hydrogenation of Aromatic Compounds 多相铂催化剂在芳香族化合物加氢中的应用
However, the heterogeneous asymmetric catalytic hydrogenation connected with the practical advantages of easy separation and handling, has become a rapidly growing and interesting field. 多相不对称催化剂以其易与产物分离、操作方便的优势,近年来研究十分活跃。
Recent Advances in Heterogeneous Noble Metals Catalysts for Hydrogenation of Aromatic Compound 多相贵金属催化剂对芳香化合物催化加氢研究进展
This article reviews the study about heterogeneous noble metal catalysts for hydrogenation of aromatic compound in recent years. 综述了近年来多相贵金属催化剂对芳香化合物加氢的研究;
Studies on Selective Catalytic Hydrogenation ⅰ. Selective Heterogeneous Catalytic Hydrogenation of α,β-Unsaturated Aldehydes and Ketones 选择性催化氢化的研究&Ⅰ.α,β-不饱和醛酮的非均相催化氢化
Heterogeneous Asymmetric Hydrogenation of Acetophenone and Its Derivatives over Ru-( S)-BINAP/ γ-Al_2O_3 Ru-(S)-BINAP/γ-Al2O3催化剂上苯乙酮及其衍生物的多相不对称加氢反应
The nanoclusters, which are new catalytic materials, are expected to be able to combine the merits of both homogeneous and heterogeneous hydrogenation. 纳米簇合物作为新催化材料,可望将均相催化和多相催化的优势结合起来,发展新的手性催化剂,因此越来越受到重视。
The unique properties of amorphous alloys are helpful to overcome the shortcomings of the present crystalline heterogeneous enantioselective hydrogenation catalyst, such as low activity, low enantioselectivity and leaching. 非晶态合金具有的独特性质使其有望克服已有的多相不对称氢化催化剂存在的低温活性低、活性中心分布不均匀带来的选择性低、以及易腐蚀流失等缺点。