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1. Mechanism and origins of enantioselectivity for [BMIM]Cl ionic liq.. [1590]
2. 一种甘油与甲醛反应合成甘油缩甲醛的方法 [981]
3. Metal-Free and Recyclable Route to Synthesize Polysubstituted Olef.. [533]
4. Novel Functional Ionic Liquids as Metal-Free, Efficient and Recycl.. [513]
5. Structure-Activity Relationship Studies on Ionic Liquids Catalyzed.. [510]
6. Synthesis and Physicochemical Properties of Two SO3H-Functionalize.. [505]
7. 甲缩醛合成反应及其动力学研究进展 [456]
8. Kinetics and quantum chemical study for cyclotrimerization of prop.. [450]
9. Method for preparing polymethoxymethylal [446]
10. 一种烷氧基醚类化合物的制备方法 [427]
11. 环境友好的催化反应新体系研究 [393]
12. Method for synthesizing polyoxymethylene dimethyl ethers catalyzed.. [375]
13. Bronsted Acidic Ionic Liquids as Efficient and Recyclable Catalyst.. [338]
14. 使用离子液体合成三聚甲醛的方法 [336]
15. A magnetically recyclable heterogeneous catalyst: Cobalt nano-oxid.. [323]
16. 离子液体微乳液体系的应用研究 [319]
17. Acidic-functionalized ionic liquid as an efficient, green and reus.. [314]
18. Novel Acidic Ionic Liquids as Efficient and Recyclable Catalysts f.. [310]
19. 基于杂多酸的负载离子液相催化在醇氧化中的应用 [305]
20. 含磺酸酯基侧链室温离子液体及其制备方法和应用 [302]
21. 功能化离子液体的催化作用及其应用 [294]
22. Method of synthesizing trioxymethylene from formaldehyde by the ca.. [286]
23. 离子液体的工业应用研究进展 [280]
24. Pyrrolidine-based Dicationic Acidic Ionic Liquids: Efficient and R.. [275]
25. 离子液体的量化计算及分子动力学模拟研究进展 [274]
26. Catalytic amounts of Brønsted acidic ionic liquids promoted ester.. [267]
27. Co-doped Attapulgite Catalyzed Solvent-free Oxidation of Cyclohexa.. [265]
28. Novel guanidinium zwitterion and derived ionic liquids: physicoche.. [261]
29. Alkyl Sulfonate Functionalized Ionic Liquids: Synthesis, Propertie.. [260]
30. 离子液体的非常规制备技术研究进展 [260]
31. Novel acidic ionic liquids mediated zinc chloride: Highly effectiv.. [258]
32. 基于清洁氧源的金属卟啉配合物仿生催化氧化研究进展 [252]
33. Magnetic CoFe2O4 nanocrystal: A novel and efficient heterogeneous .. [251]
34. 功能化离子液体在缩醛(酮)反应中催化性能的研究 [244]
35. [α-PW12O40]3- immobilized on ionic liquid-modified polymer as a h.. [242]
36. Oxygen-sulfur rearrangement in the reaction of thiocarbamate imida.. [240]
37. 钨酸钠与酸性离子液体催化醇的环境友好氧化反应 [235]
38. DBU-Based Ionic Liquids [234]
39. 新型磺酸功能化离子液体理化性质的研究 [233]
40. 离子液体中Mn(Salen)催化仲醇的氧化反应研究 [222]
41. Guanidinium Ionic Liquids [221]
42. Mechanistic study for the formation of polyoxymethylene dimethyl e.. [219]
43. Silica-Gel-Supported Dual Acidic Ionic Liquids as Efficient Cataly.. [214]
44. Corrosion Behavior of Metallic Materials in Acidic-Functionalized .. [206]
45. Functional Ionic Liquids as Efficient and Recyclable Catalysts for.. [205]
46. 多金属氧酸盐催化的液相氧化反应 [204]
47. Sulfonic Acid-Functionalized Ionic Liquids as Metal-Free, Efficien.. [203]
48. 钴负载的凹凸棒土催化剂的制备、表征及其催化氧化性能 [194]
49. Synthesis, properties and catalysis of novel methyl- or ethyl-sulf.. [189]
50. 离子液体中锰卟啉催化双氧水氧化烯烃的研究 [174]
51. Acidic-Functionalized Ionic Liquid as Corrosion Inhibitor for 304 .. [174]
52. 亲水性离子液体及其在催化反应中的应用 [170]
53. 功能化离子液体 [136]
54. Process for synthesizing trioxymethylene using ionic liquid [134]
55. Brønsted-acidic ionic liquids as efficient catalysts for the synt.. [133]
56. Solvent-Free Selective Condensations Based on the Formation of the.. [128]
57. 烯烃类化合物的合成方法 [119]
58. Conceptual design of production of eco-friendly polyoxymethylene d.. [109]
59. 一种聚乙二醇功能化多金属氧酸盐离子液体及其制备方法 [105]
60. Efficient and reusable zeolite-immobilized acidic ionic liquids fo.. [105]
61. 生物基高十六烷值柴油添加剂、其制法及清洁柴油组合物 [104]
62. 功能化离子液体催化合成胺类化合物的方法 [102]
63. 离子液体固载化及应用研究 [99]
64. High-cetane additives for diesel based on polyoxymethylene dimethy.. [98]
65. Defective acidic 2D COF-based catalysts for boosting the performan.. [97]
66. 一种离子液体催化2-甲基呋喃羟烷基化-烷基化反应的方法 [94]
67. 清洁柴油添加剂、其制备方法及清洁柴油组合物 [93]
68. Method for Preparing Polyoxymethylene Dimethyl Ethers by Acetalati.. [90]
69. Mesoporous acidic functional N-containing ZrNxOy material for poly.. [88]
70. 酸功能化离子液体固相催化材料的制备及应用 [84]
71. Polyoxymethylene dimethyl ethers as clean diesel additives: Fuel f.. [84]
72. Olefin oligomerization via new and efficient Brönsted acidic ioni.. [83]
73. 一种双功能化碱性离子液体催化剂及其制备方法与应用 [81]
74. Efficient Thiolation of Alcohols Catalyzed by Long Chained Acid-Fu.. [80]
75. 一种树脂负载阴离子酸性离子液体催化剂及其应用 [72]
76. Long-Chained Acidic Ionic Liquids-Catalyzed Cyclization of 2‑Subs.. [67]
77. 膦配体电子和空间效应对钯催化羰化酯化反应的影响 [61]
78. 一种固体酸催化剂及其制备方法与应用 [57]
79. 一种酞菁类聚合物催化剂及其制备方法与应用 [52]
80. Research and Application of Supported Ionic Liquids [51]
81. 一种酸性多孔聚合物催化剂及其制备方法与应用 [45]
82. 用于烯烃烷氧羰基化的催化剂组合物及其制备方法与应用 [39]
83. 有机-无机杂化纳米孔材料催化聚甲氧基二烷基醚合成反应及体系相平衡研.. [1]
84. 基于离子液体骨架新型酸碱功能化催化剂构筑及其催化 [1]
85. 面向碳四烯烃高效羰化酯化制戊酸酯过程的多齿膦配体-钯催化剂体系的创.. [1]

Downloads

1. DBU-Based Ionic Liquids [103]
2. Guanidinium Ionic Liquids [79]
3. Structure-Activity Relationship Studies on Ionic Liquids Catalyzed.. [46]
4. 功能化离子液体 [43]
5. Mechanism and origins of enantioselectivity for [BMIM]Cl ionic liq.. [14]
6. 一种烷氧基醚类化合物的制备方法 [12]
7. Synthesis and Physicochemical Properties of Two SO3H-Functionalize.. [12]
8. Method for synthesizing polyoxymethylene dimethyl ethers catalyzed.. [11]
9. Method for preparing polymethoxymethylal [10]
10. 使用离子液体合成三聚甲醛的方法 [10]
11. Metal-Free and Recyclable Route to Synthesize Polysubstituted Olef.. [8]
12. Novel Functional Ionic Liquids as Metal-Free, Efficient and Recycl.. [7]
13. 基于杂多酸的负载离子液相催化在醇氧化中的应用 [6]
14. 甲缩醛合成反应及其动力学研究进展 [5]
15. 含磺酸酯基侧链室温离子液体及其制备方法和应用 [5]
16. Mechanistic study for the formation of polyoxymethylene dimethyl e.. [5]
17. Olefin oligomerization via new and efficient Brönsted acidic ioni.. [5]
18. 一种甘油与甲醛反应合成甘油缩甲醛的方法 [4]
19. Method of synthesizing trioxymethylene from formaldehyde by the ca.. [4]
20. 离子液体微乳液体系的应用研究 [3]
21. 基于清洁氧源的金属卟啉配合物仿生催化氧化研究进展 [3]
22. Synthesis, properties and catalysis of novel methyl- or ethyl-sulf.. [3]
23. 离子液体的非常规制备技术研究进展 [3]
24. Kinetics and quantum chemical study for cyclotrimerization of prop.. [3]
25. Method for Preparing Polyoxymethylene Dimethyl Ethers by Acetalati.. [3]
26. 一种离子液体催化2-甲基呋喃羟烷基化-烷基化反应的方法 [3]
27. 新型磺酸功能化离子液体理化性质的研究 [2]
28. Magnetic CoFe2O4 nanocrystal: A novel and efficient heterogeneous .. [2]
29. Co-doped Attapulgite Catalyzed Solvent-free Oxidation of Cyclohexa.. [2]
30. Novel acidic ionic liquids mediated zinc chloride: Highly effectiv.. [2]
31. 离子液体中Mn(Salen)催化仲醇的氧化反应研究 [2]
32. Sulfonic Acid-Functionalized Ionic Liquids as Metal-Free, Efficien.. [2]
33. Bronsted Acidic Ionic Liquids as Efficient and Recyclable Catalyst.. [2]
34. Novel Acidic Ionic Liquids as Efficient and Recyclable Catalysts f.. [2]
35. 离子液体的量化计算及分子动力学模拟研究进展 [2]
36. Corrosion Behavior of Metallic Materials in Acidic-Functionalized .. [2]
37. Functional Ionic Liquids as Efficient and Recyclable Catalysts for.. [2]
38. 一种聚乙二醇功能化多金属氧酸盐离子液体及其制备方法 [2]
39. 酸功能化离子液体固相催化材料的制备及应用 [2]
40. Alkyl Sulfonate Functionalized Ionic Liquids: Synthesis, Propertie.. [1]
41. Pyrrolidine-based Dicationic Acidic Ionic Liquids: Efficient and R.. [1]
42. Catalytic amounts of Brønsted acidic ionic liquids promoted ester.. [1]
43. 功能化离子液体在缩醛(酮)反应中催化性能的研究 [1]
44. 离子液体中锰卟啉催化双氧水氧化烯烃的研究 [1]
45. 钨酸钠与酸性离子液体催化醇的环境友好氧化反应 [1]
46. 多金属氧酸盐催化的液相氧化反应 [1]
47. [α-PW12O40]3- immobilized on ionic liquid-modified polymer as a h.. [1]
48. Novel guanidinium zwitterion and derived ionic liquids: physicoche.. [1]
49. Oxygen-sulfur rearrangement in the reaction of thiocarbamate imida.. [1]
50. Acidic-functionalized ionic liquid as an efficient, green and reus.. [1]
51. 离子液体的工业应用研究进展 [1]
52. 功能化离子液体的催化作用及其应用 [1]
53. Process for synthesizing trioxymethylene using ionic liquid [1]
54. Silica-Gel-Supported Dual Acidic Ionic Liquids as Efficient Cataly.. [1]
55. Solvent-Free Selective Condensations Based on the Formation of the.. [1]
56. Acidic-Functionalized Ionic Liquid as Corrosion Inhibitor for 304 .. [1]
57. 功能化离子液体催化合成胺类化合物的方法 [1]
58. Brønsted-acidic ionic liquids as efficient catalysts for the synt.. [1]
59. High-cetane additives for diesel based on polyoxymethylene dimethy.. [1]
60. Efficient and reusable zeolite-immobilized acidic ionic liquids fo.. [1]
61. 清洁柴油添加剂、其制备方法及清洁柴油组合物 [1]
62. Defective acidic 2D COF-based catalysts for boosting the performan.. [1]
63. Mesoporous acidic functional N-containing ZrNxOy material for poly.. [1]
64. 一种酸性多孔聚合物催化剂及其制备方法与应用 [1]