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日期:2019-11-01

[1] 张飞飞 尚, 杨江峰,欧阳坤,李晋平. 乙二胺改性轻金属铝-金属有机骨架材料用于co2/ch4分离. 无机化学学报. 2017;33:1611-7.

[2] 杨江峰, 欧阳坤, 陈杨, 杨成荫, 李晋平. 柔性 mofs 材料 cu (bdc) 的氨气吸附及可逆转化性能. 化工学报. 2017;68:418-23.

[3] 吴金婷, 郭天宇, 杜建平, 李晋平. 球形碳颗粒在环己烷脱氢反应中的催化作用. 太阳能学报. 2017:532-6.

[4] 王小青 李, 陈杨, 王勇, 李晋平. 金属有机骨架材料 zr-fum 的低碳烃分离性能. 太原理工大学学报. 2017;48:310-6.

[5] 王开放, 刘光, 高旭升, 贺冬莹, 李晋平. α-fe 2 o 3 光电催化分解水制备氢气研究进展. 化工进展. 2017;36:397-409.

[6] 刘珊魁, 刘鹏程, 牛汝月, 王爽, 李晋平. 一种花状介孔四氧化三钴的合成及乏风瓦斯的催化燃烧研究. chemical research in chinese universities. 2017:0-.

[7] 李顺, 王勇, 李立博, 李晋平. 一维超微孔 mofs [m 3 (hcoo) 6](m= fe, co, ni) 用于乙烯-丙烯混合物的分离. 化工进展. 2017;36:3019-23.

[8] 郭瑞乾, 张萌, 罗居杰, 李晋平. 溴代功能化聚醚砜膜的制备及其对 co_2/ch_4, co_2/n_2 分离性能研究. 化工新型材料. 2017;45:45-7.

[9] 郭瑞乾, 张萌, 罗居杰, 李晋平. 酸化多壁碳纳米管/含氟聚砜复合膜的制备及其对 co_2/ch_4 分离性能研究. 化工新型材料. 2017;45:79-82.

[10] 高旭升 刘, 史沁芳, 王开放, 许丽娟, 贺冬莹, 李晋平. 钴铁双金属氧化物多孔纳米棒的制备及其电解水析氧性能. 无机化学学报. 2017;33:623-9.

[11] zhong d, liu l, li d, wei c, wang q, hao g, et al. facile and fast fabrication of iron-phosphate supported on nickel foam as a highly efficient and stable oxygen evolution catalyst. j mater chem a. 2017;5:18627-33.

[12] zhang z, wang y, jia x, yang j, li j. the synergistic effect of oxygen and water on the stability of the isostructural family of metal-organic frameworks [cr3 (btc) 2] and [cu3 (btc) 2]. dalton transactions. 2017;46:15573-81.

[13] yang chen yw, chengyin yang, shuang wang, jiangfeng yang, jinping li. antenna-protected metal–organic squares for water/ammonia uptake with excellent stability and regenerability. acs sustainable chem eng. 2017;5:5082–9.

[14] yang chen cy, xiaoqing wang, jiangfeng yang, jinping li. vapor phase solvents loaded in zeolite as the sustainable medium for the preparation of cu-btc and zif-8. chem eng j. 2017;313:179-86.

[15] wang y, yang q, zhong c, li j. theoretical investigation of gas separation in functionalized nanoporous graphene membranes. appl surf sci. 2017;407:532-9.

[16] wang x, li l, wang y, li j-r, li j. exploiting the pore size and functionalization effects in uio topology structures for the separation of light hydrocarbons. crystengcomm. 2017;19:1729-37.

[17] shuang wang tw, pengcheng liu, ying shi, guang liu, jinping li. hierarchical porous carbons derived from microporouszeolitic metal azolate frameworks for supercapacitor electrodes. mater res bull. 2017;88:62-8.

[18] qiang zhao ll, dandan li, dazhong zhong, genyan hao, jinping li. in-situ synthesis of ag-pi oxygen-evolving catalyst in phosphate environment for water splitting. int j hydrogen energy. 2017;42:19935-41.

[19] qiang zhao dz, lin liu , genyan hao , dandan li, jinping li. facile fabrication of robust 3d fe-nise nanowires supported on nickel foam as a highly efficient, durable oxygen evolution catalyst. j mater chem a. 2017;5:14639-45.

[20] liu g, gao x, wang k, he d, li j. mesoporous nickel–iron binary oxide nanorods for efficient electrocatalytic water oxidation. nano res. 2017;10:2096-105.

[21] libo li r-bl, rajamani krishna, xiaoqing wang, bin li, hui wu, jinping li, wei zhou, banglin chen. flexible–robust metal–organic framework for efficient removal of propyne from propylene. j am chem soc. 2017;139:7733–6.

[22] li l, lin r-b, krishna r, wang x, li b, wu h, et al. efficient separation of ethylene from acetylene/ethylene mixtures by a flexible-robust metal-organic framework. j mater chem a. 2017;5:18984-8.

[23] guo t, du j, wu j, li j. enhanced properties of solid solution (cezr) o 2 modified with metal oxides for catalytic oxidation of low-concentration methane. chin j chem eng. 2017;25:187-92.

[24] guang liu dh, rui yao, yong zhao, jinping li. enhancing the water oxidation activity of ni2p nanocatalysts by iron-doping and electrochemical activation. electrochim acta. 2017;253:498-505.

[25] chen y, wang b, wang x, xie l-h, li j, xie y, et al. a copper (ii)-paddlewheel metal-organic framework with exceptional hydrolytic stability and selective adsorption and detection ability of aniline in water. acs appl mater interfaces. 2017;9:27027–35.

[26] chang wang jl, jiangfeng yang, jinping li. a crystal seeds-assisted synthesis of microporous and mesoporous silicalite-1 and their co 2/n 2/ch 4/c 2 h 6 adsorption properties. microporous mesoporous mater. 2017;242:231-7.




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