1 |
Structural Evaluation of Coal Tar Pitch by Multiple Techniques Wang ZL, Wang YG, Niu ZS, Shen J, Niu YX, Zhao W Petroleum Chemistry, 61(1), 52, 2021 |
2 |
Insight into aromatic structures of a middle-temperature coal tar pitch by direct characterization and ruthenium ion-catalyzed oxidation Niu ZS, Wang YG, Shen J, Niu YX, Liu G, Zhao W, Wei XY Fuel, 241, 1164, 2019 |
3 |
Preparation of ruthenium (III) ion-imprinted beads based on 2-pyridylthiourea modified chitosan Monier M, Abdel-Latif DA, Youssef I Journal of Colloid and Interface Science, 513, 266, 2018 |
4 |
Comparison of the Physical Properties and Chemical Structures of the Tahe Asphalt Before and After Oxidative Aging Ning AM, Shen BX, Long J, Zhao JG Energy Sources Part A-recovery Utilization and Environmental Effects, 37(14), 1495, 2015 |
5 |
Ruthenium cation substitutional doping for efficient charge carrier transfer in organic/inorganic hybrid solar cells Kong DG, Jin X, Sun WF, Du JX, Tong JF, Chen CY, Yang XW, Cheng YY, Li QH Journal of Power Sources, 274, 701, 2015 |
6 |
Insight into the structural features of macromolecular aromatic species in Huolinguole lignite through ruthenium ion-catalyzed oxidation Lv JH, Wei XY, Qing Y, Wang YH, Wen Z, Zhu Y, Wang YG, Zong ZM Fuel, 128, 231, 2014 |
7 |
Preparation of ruthenium-containing sheet composites using a papermaking technique for selective oxidation of alcohol Fukahori S, Morikawa M, Ninomiya J Chemical Engineering Journal, 157(2-3), 311, 2010 |
8 |
Development of a Ru/C catalyst for glycerol hydrogenolysis in combination with an ion-exchange resin Miyazawa T, Koso S, Kunimori K, Tomishige K Applied Catalysis A: General, 318, 244, 2007 |
9 |
Ion Exchange Characteristics of Rhodium and Ruthenium from a Simulated Radioactive Liquid Waste Lee SH, Yoo JH, Kim JH Korean Journal of Chemical Engineering, 21(5), 1038, 2004 |
10 |
Structural characterization of Chinese coal macerals by C-13 nmr and ruthenium ion catalyzed oxidation Guo SH, Li SY, Qin KZ Energy Sources, 23(1), 27, 2001 |