1 |
王恩波, 胡长文, 许林. 多酸化学导论[M]. 北京: 化学工业出版社, 1998.
|
2 |
王恩波, 李阳光, 鹿颖, 等. 多酸化学概论[M]. 长春: 东北师范大学出版社, 2009.
|
3 |
OMWOMA S, CHEN W, TSUNASHIMA R, et al. Recent advances on polyoxometalates intercalated layered double hydroxides: From synthetic approaches to functional material applications[J]. Coordination Chemistry Reviews, 2014, 258-259: 58-71.
|
4 |
巫平松, 张宏宇, 许林, 等. 无机-有机杂化钼磷、钒钼磷多酸化合物的合成与结构[J]. 东北师大学报 (自然科学版), 2001, 33(4): 51-56.
|
|
WU P S, ZHANG H Y, XU L, et al. Hydrothermal synthesis, structural characterization of molybdophosphate and vanadium molybdophosphates polyoxometalates[J]. Journal of Northeast Normal University (Natural Science Edition), 2001, 33(4): 51-56.
|
5 |
高香玲, 周坤. 简单炔基和硫醇配体构筑银簇的研究综述[J]. 辽宁石油化工大学学报, 2019, 39(3): 1-10.
|
|
GAO X L, ZHOU K. Review of Silver clusters constructed from simple alkynyl and thiol ligands[J]. Journal of Liaoning Petrochemical University, 2019, 39(3): 1-10.
|
6 |
丁卓玉, 谭依凡, 周坤, 等. 磷钼酸根和金属/氢-氧-三苯基膦单元构筑的杂化材料[J]. 石油化工高等学校学报, 2023, 36(4): 47-52.
|
|
DING Z Y, TAN Y F, ZHOU K, et al. A hybrid material constructed from phosphomolybdate anion and metal/hydrogen-oxygen-triphenylphosphine units[J]. Journal of Petrochemical Universities, 2023, 36(4): 47-52.
|
7 |
王子淇, 王仲戎, 郝媛媛, 等. 金属有机骨架材料用于燃料油脱硫的研究进展[J]. 石油炼制与化工, 2023, 54(9): 24-32.
|
|
WANG Z Q, WANG Z R, HAO Y Y, et al. Progress of metal-organic framework materials for fuel desulfurization[J]. Petroleum Processing and Petrochemicals, 2023, 54(9): 24-32.
|
8 |
刘娜, 梁光敏, 季久玉, 等. Salen金属配合物水解动力学拆分环氧氯丙烷研究进展[J]. 石油化工高等学校学报, 2023, 36(4): 53-62.
|
|
LIU N, LIANG G M, JI J Y, et al. Research progress of hydrolytic kinetic resolution of epichlorohydrin catalyzed by salen metal complexes[J]. Journal of Petrochemical Universities, 2023, 36(4): 53-62.
|
9 |
GARCÍA-MARTÍNEZ J M, COLLAR E P. Organic-inorganic hybrid materials[J]. Polymers, 2020, 13(1): 86.
|
10 |
LIU Z J, WANG X L, QIN C, et al. Polyoxometalate-assisted synthesis of transition-metal cubane clusters as artificial mimics of the oxygen-evolving center of photosystem Ⅱ[J]. Coordination Chemistry Reviews, 2016, 313: 94-110.
|
11 |
WALSH J J, BOND A M, FORSTER R J, et al. Hybrid polyoxometalate materials for photo (electro-) chemical applications[J]. Coordination Chemistry Reviews, 2016, 306(Part 1): 217-234.
|
12 |
MIAO J, LIU Y W, TANG Q, et al. Proton conductive watery channels constructed by Anderson polyanions and lanthanide coordination cations[J]. Dalton Transactions (Cambridge, England: 2003), 2014, 43(39): 14749-14755.
|
13 |
ZHANG S W, SHI W, CHENG P. The coordination chemistry of N-heterocyclic carboxylic acid: A comparison of the coordination polymers constructed by 4,5-imidazoledicarboxylic acid and 1H-1,2,3-triazole-4,5-dicarboxylic acid[J]. Coordination Chemistry Reviews, 2017, 352: 108-150.
|
14 |
ZHAO M, OU S, WU C D. Porous metal-organic frameworks for heterogeneous biomimetic catalysis[J]. Accounts of Chemical Research, 2014, 47(4): 1199-1207.
|
15 |
SAINI M K, GUPTA R, PARBHAKAR S, et al. Lanthano-phosphotungstate: A water soluble and reusable catalyst for oxidation of alcohols using H2O2 as an oxidant[J]. RSC Advances, 2014, 4(72): 38446-38449.
|
16 |
RITCHIE C, FERGUSON A, NOJIRI H, et al. Polyoxometalate-mediated self-assembly of single-molecule magnets: {[XW9O34]2[Mn(Ⅲ)4Mn(Ⅱ)2O4(H2O)4]}12-[J]. Angewandte Chemie (International ed. in English), 2008, 47(30): 5609-5612.
|
17 |
LIU J C, HAN Q, CHEN L J, et al. Aggregation of giant cerium-bismuth tungstate clusters into a 3D porous framework with high proton conductivity[J]. Angewandte Chemie (International ed. in English), 2018, 57(28): 8416-8420.
|
18 |
CHEN Y H, SUN L H, CHANG S Z, et al. Synergistic effect between different coordination geometries of lanthanides and various coordination modes of 2-Picolinic acid ligands tuning three types of rare 3d-4f heterometallic tungstoantimonates[J]. Inorganic Chemistry, 2018, 57(24): 15079-15092.
|
19 |
LIU J L, JIN M T, CHEN L J, et al. First dimethyltin-functionalized rare-earth incorporated tellurotungstates consisting of {B-α-TeW7O28} and {W5O18} mixed building units[J]. Inorganic Chemistry, 2018, 57(20): 12509-12520.
|
20 |
张译文, 戴咏川, 么志伟, 等. 程序升温碳化法一步合成Cu/β-Mo2C催化剂及其RWGS反应性能研究[J]. 低碳化学与化工, 2023, 48(4): 23-28.
|
|
ZHANG Y W, DAI Y C, YAO Z W, et al. One step synthesis of Cu/β-Mo2C catalyst by temperature programmed carbonization method and its performance in RWGS reaction[J]. Low-Carbon Chemistry and Chemical Engineering, 2023, 48(4): 23-28.
|
21 |
高睿遥, 李鑫, 孙炅, 等. 甲烷脱氢芳构化反应机理及Mo/HZSM-5催化剂研究进展[J]. 低碳化学与化工, 2023, 48(1): 30-40.
|
|
GAO R Y, LI X, SUN G, et al. Research progress on reaction mechanisms of methane dehydroaromatization and Mo/HZSM-5 catalysts[J]. Low-Carbon Chemistry and Chemical Engineering, 2023, 48(1): 30-40.
|
22 |
薛春慧, 周坤. 叔丁基硫醇配体构筑的硫属银簇研究进展[J]. 辽宁石油化工大学学报, 2022, 42(2): 15-22.
|
|
XUE C H, ZHOU K. Research progress of silver chalcogenide clusters constructed by tert-butyl mercaptan ligand[J]. Journal of Liaoning Petrochemical University, 2022, 42(2): 15-22.
|
23 |
ZHOU W L, LIANG J, QIN C, et al. Syntheses, crystal structures and properties of inorganic-organic hybrids constructed from Keggin-type polyoxometalates and silver coordination compounds[J]. Crystengcomm, 2014, 16(32): 7410-7418.
|
24 |
ZHOU K, GENG Y, YAN L K, et al. An ultrastable {Ag55Mo6} nanocluster with a Ag-centered multishell structure[J]. Chemical Communications (Cambridge, England), 2014, 50(80): 11934-11937.
|
25 |
WANG S S, YANG G Y. Recent advances in polyoxometalate-catalyzed reactions[J]. Chemical Reviews, 2015, 115(11): 4893-4962.
|
26 |
黄淑云, 王敏, 熊望荣, 等. Ag3PO4/SnO2异质结催化剂对罗丹明B的光催化降解性能研究[J]. 当代化工, 2023, 52(11): 2678-2684.
|
|
HUANG S Y, WANG M, XIONG W R, et al. Ag3PO4/SnO2 heterojunction catalysts for photocatalytic degradation of rhodamine B[J]. Contemporary Chemical Industry, 2023, 52(11): 2678-2684.
|
27 |
汤春妮, 孟龙, 张桂锋, 等. Ag/Ag3PO4光催化清除氮氧化物[J]. 当代化工, 2020, 49(10): 2125-2128.
|
|
TANG C N, MENG L, ZHANG G F, et al. Photocatalytic removal of nitrogen oxides by Ag/Ag3PO4[J]. Contemporary Chemical Industry, 2020, 49(10): 2125-2128.
|
28 |
汤春泥. 石墨相氮化碳/磷酸银复合光催化剂的研究进展[J]. 当代化工, 2020, 49(6): 1090-1094.
|
|
TANG C N. Research progress of graphitic carbon nitride/silver phosphate composite photocatalyst[J]. Contemporary Chemical Industry, 2020, 49(6): 1090-1094.
|
29 |
富添, 洪新, 孙潇镝, 等. AgY分子筛的制备及其吸附脱除模拟燃料中吡啶的性能[J]. 石油炼制与化工, 2023, 54(6): 39-45.
|
|
FU T, HONG X, SUN X D, et al. Preparation of AgY molecular sieves and its adsorption performance of pyridine in simulated fuels[J]. Petroleum Processing and Petrochemicals, 2023, 54(6): 39-45.
|
30 |
YANG X J, SUN M, ZANG H Y, et al. Hybrid coordination networks constructed from ɛ-keggin-type polyoxometalates and rigid imidazole-based bridging ligands as new carriers for noble-metal catalysts[J]. Chemistry, an Asian Journal, 2016, 11(6): 858-867.
|
31 |
FU H, LU Y, WANG Z L, et al. Three hybrid networks based on octamolybdate: Ionothermal synthesis, structure and photocatalytic properties[J]. Dalton Transactions (Cambridge, England: 2003), 2012, 41(14): 4084-4090.
|
32 |
HAO X L, MA Y Y, ZHANG C, et al. Assembly of new organic-inorganic hybrids based on copper-bis (triazole) complexes and Keggin-type polyoxometalates with different negative charges[J]. Crystengcomm, 2012, 14(20): 6573-6580.
|
33 |
HAO X L, MA Y Y, ZHOU W Z, et al. Polyoxometalate-based entangled coordination networks induced by an extended bis (triazole) ligand[J]. Chemistry, an Asian Journal, 2014, 9(12): 3633-3640.
|
34 |
HAO X L, MA Y Y, ZANG H Y, et al. A polyoxometalate-encapsulating cationic metal-organic framework as a heterogeneous catalyst for desulfurization[J]. Chemistry, 2015, 21(9): 3778-3784.
|
35 |
BOLLE P, SERIER-BRAULT H, BOULMIER A, et al. Polymorphism and structural filiations in five new organic-inorganic hybrid salts of the heteroleptic cationic Iridium (Ⅲ) complex and polyoxometalates[J]. Crystal Growth & Design, 2018, 18(12): 7426-7434.
|
36 |
陈雅旭, 王欣, 关磊. 一种层状铈配位聚合物的合成、结构及光学性质[J]. 辽宁石油化工大学学报, 2021, 41(2): 8-12.
|
|
CHEN Y X, WANG X, GUAN L. Synthesis, structure and optical properties of a layered Ce coordination polymer[J]. Journal of Liaoning Petrochemical University, 2021, 41(2): 8-12.
|
37 |
WANG Z, SU H F, GONG Y W, et al. A hierarchically assembled 88-nuclei silver-thiacalix[4] arene nanocluster[J]. Nature Communications, 2020, 11(1): 308.
|