• The methods, catalysts and reaction mechanism of the hydrogenolysis of benzyl-type alcohols are reviewed.

    简要介绍了苄基型催化氢解方法催化剂催化反应机理

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  • Hydrozinolysis and hydrogenolysis reduction with high yield and excellent selectivity was the best process among the three.

    还原方法中产最高,选择性最好方法。

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  • The hydrogenolysis of glycerol can also be achieved by adopting multiple processes, supercritical solvents or protecting groups.

    此外,通过步骤利用超临界溶剂、保护基团实现甘油氢解。

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  • Copper-containing catalysts are the most suitable catalysts for producing 1,2-propanediol through catalytic hydrogenolysis of glycerol.

    甘油催化氢解制取1,2-丙二醇效果最好催化剂

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  • The target molecule was synthesized through using chiral reagent, reduction of double bond, hydrogenolysis and hydrolysis of ester group.

    之后,引入手性试剂双键还原,氢,水解基得到目标产物合成路线

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  • The effects of rare earth element La during hydrogenolysis were studied by using SEM, X-ray diffraction and chemical and physical analysis.

    通过采用SEMX射线衍射化学元素分析物理分析等技术,系统地研究了稀土镧对氧化钼氢还原的影响

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  • Hydrogenolysis of methyl formate to methanol was the rate-determining process and was mainly catalyzed by nickel-based or copper-based catalyst system.

    甲酸甲酯氢解制甲醇步骤难点在于环境友好的低温高活性铜基催化剂的研制。

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  • The reaction pathway may involve a homogeneous carbonylation of methanol to methyl formate followed by the heterogeneous hydrogenolysis of methyl formate to methanol.

    反应历程可能甲醇首先相催化羰化为甲酸甲酯然后甲酸甲酯多相催化氢解甲醇。

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  • After hydrogenolysis of wheat alkali-oxygen lignin, the lignin has more hydroxyl, which can easily promote the reaction activity of synthesis of macromolecular material.

    对氧碱木质素进行氢解,经基比例明显提高有利于提高合成高分子材料反应活性

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  • In the last step, we developed two methods of deprotection employing zinc dust and catalytic hydrogenolysis respectively to give the final product, and improved the work-up as well.

    最后一步保护基研究中,我们分别采用锌粉还原碳氢化两种方法得到最终产品其后处理的方法进行了改进

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  • In the last step, we developed two methods of deprotection employing zinc dust and catalytic hydrogenolysis respectively to give the final product, and improved the work-up as well.

    最后一步保护基研究中,我们分别采用锌粉还原碳氢化两种方法得到最终产品其后处理的方法进行了改进

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