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新型Pd/HZSM-5-N催化剂的制备及其在苯甲醇氧化反应中的应用 被引量:2
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作者 王玉宝 陈玉静 《合成化学》 CAS CSCD 2016年第5期409-413,共5页
以分子筛HZSM-5为前驱体,氨气为氮源,直接高温氮化制得掺氮分子筛HZSM-5-N(1);以Pd(OAc)_2为钯源,1为载体,采用溶胶-固载法制备了一系列不同钯负载量(α)的新型Pd~α/1催化剂,其结构和性质经SEM,FT-IR,元素分析,XRD,N_2-BET和ICP表征。... 以分子筛HZSM-5为前驱体,氨气为氮源,直接高温氮化制得掺氮分子筛HZSM-5-N(1);以Pd(OAc)_2为钯源,1为载体,采用溶胶-固载法制备了一系列不同钯负载量(α)的新型Pd~α/1催化剂,其结构和性质经SEM,FT-IR,元素分析,XRD,N_2-BET和ICP表征。以苯甲醇氧化成苯甲醛反应为探针反应,研究了α,Pd~α/1用量,反应时间和反应温度对Pd~α/1催化性能的影响。结果表明:在最优反应条件(Pd^2/1 40 mg,于120℃反应180min)下,苯甲醇转化率为66.7%,苯甲醛选择性为92.9%。Pd^2/1重复使用性能较好,循环使用5次,催化活性保持不变。 展开更多
关键词 掺氮分子筛 钯催化剂 苯甲醇氧化反应 制备 催化性能
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Visible-light-driven photocatalytic hydrogen production coupled with selective oxidation of benzyl alcohol over CdS@MoS2 heterostructures 被引量:9
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作者 Peixian Li Hui Zhao +4 位作者 Xuyan Yan Xue Yang Jingjun Li Shuiying Gao Rong Cao 《Science China Materials》 SCIE EI CSCD 2020年第11期2239-2250,共12页
Photocatalytic hydrogen production coupled with selective oxidation of organic substrates to produce highvalue-added fine chemicals has drawn increasing attention.Herein,we report a noble metal-free photocatalyst for ... Photocatalytic hydrogen production coupled with selective oxidation of organic substrates to produce highvalue-added fine chemicals has drawn increasing attention.Herein,we report a noble metal-free photocatalyst for the highly efficient and simultaneous generation of hydrogen and the selective oxidation of benzyl alcohol into benzaldehyde over Cd S@Mo S2 heterostructures under visible light.Without the need for a sacrificial agent,Cd S@Mo S2 displayed an excellent hydrogen production rate of 4233μmol g^-1h^-1with0.3 mmol benzyl alcohol,which is approximately 53 times higher than that of bare Cd S nanorods(80μmol g^-1h^-1).The reaction system was highly selective for the oxidation of benzyl alcohol into benzaldehyde.When the amount of benzyl alcohol increased to 1.0 mmol,the hydrogen production reached9033μmol g^-1h^-1.Scanning electron microscopy and transmission electron microscopy images revealed that p-type Mo S2 sheets with a flower-like structure closely adhered to n-type semiconductor Cd S nanorods through the formation of a p-n heterojunction.As a potential Z-scheme photocatalyst,the Cd S@Mo S2 heterostructure effectively produces and separates electron-hole pairs under visible light.Thus,the electrons are used for reduction to generate hydrogen,and the holes oxidize benzyl alcohol into benzaldehyde.Moreover,a mechanism of photogenerated charge transfer and separation was proposed and verified by photoluminescence,electrochemical impedance spectroscopy,photocurrent and Mott-Schottky measurements.The results reveal that the Cd S@Mo S2 heterojunctions have rapid and efficient charge separation and transfer,thereby greatly improving benzyl alcohol dehydrogenation.This work provides insight into the rational design of high-performance Z-scheme photocatalysts and the use of holes and electrons to obtain two valuable chemicals simultaneously. 展开更多
关键词 PHOTOCATALYSIS Cd S Mo S2 hydrogen production benzyl alcohol
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