2021 Publications

Author: Time:2022-01-11 Click:

1) Effect of regeneration time on the steam regeneration of spent catalyst in methanol to olefins process, Huaiqing An, Jibin Zhou, Jinling Zhang, Tao Zhang, Mao Ye*, Zhongmin Liu, Chemical Industry and Engineering Progress,10.16085/j.issn.1000-6613.2021-0222.

2) Organic-free synthesis of MOR nanoassemblies with excellent DME carbonylation performance. Kaipeng Cao, Dong Fan, Shu Zeng, Benhan Fan, Nan Chen,Mingbin Gao, Dali Zhu,Linying Wang,Peng Tian*, Zhomgmin Liu, Chinese Journal of Catalysis, 42(9):1468-1477, 2021.

3) One-pot synthesis of Na+-free Cu-SSZ-13 and its application in the NH3-SCR reaction. Juan Wang, Linying Wang, Dali Zhu, Wenhao Cui,Peng Tian*, Zhongmin Liu*. Chemical communications, 57(40):4898-4901, 2021.

4) Progress in Direct Synthesis of High Silica Zeolite Y. Juan Wang, Linying Wang, Dali Zhu, Wenhao Cui, YiFeng Wang,Peng Tian*, Zhongmin Liu*. Chemical journal of Chinese Universities, 42(1):1-10,2021.

5) Dynamic Activation of C1 Molecules Evoked by Zeolite Catalysis. Xinqiang Wu, Wei Chen, Shutao Xu, Shanfan Lin, Tantan Sun,Anmin Zheng*, Yingxu Wei*, Zhongmin Liu*, ACS Cent. Sci., 7(4):681–687, 2021.

6) Catalytic activity of Cu/ZnO catalysts mediated by MgO promoter in hydrogenation of methyl acetate to ethanol. Fang Zhang, Zhiyang Chen, Xudong Fang, Hongchao Liu,Yong Liu*, Wenliang Zhu*, Journal of Energy Chemistry, 61:203-209,2021.

7) Highly converting syngas to lower olefins over a dual-bed catalyst.Zhaopeng Liu, Youming Ni, Xudong Fang,Wenliang Zhu*, Zhongmin Liu*,Journal of Energy Chemistry, 58:573-576,2021.

8) Crystal size sensitivity of HMOR zeolite in dimethyl ether carbonylation. Fuli Wen, Xiangnong Ding, Xudong Fang,Hongchao Liu*, Wenliang Zhu*,Catalysis Communications, 154:106309, 2021.

9) Direct Conversion of Dimethyl Ether and CO to Acetone via Coupling Carbonylation and Ketonization. Ziqiao Zhou, Hongchao Liu, Youming Ni, Fuli Wen, Zhiyang Chen,Wenliang Zhu*, Zhongmin Liu*,Journal of Catalysis, 396:360-373, 2021.

10) Decarbonylation of Carboxylic Acids over H-Mordenite.Ziqiao Zhou, Hongchao Liu, Zhiyang Chen,Wenliang Zhu*, Zhongmin Liu*,ACS Catalysis, 11(7):4077-4083,2021.

11) Realizing high conversion of syngas togasoline-range liquid hydrocarbons on a dual-bed-mode catalyst. Youming Ni, Kunyuan Wang,Wenliang Zhu*, Zhongmin Liu*, Chem Catalysis, 1:383-392, 2021.

12) Coupling conversion of methane with carbonmonoxide via carbonylation over Zn/HZSM-5catalysts. Fuli Wen, Jin Zhang, Zhiyang Chen, Ziqiao Zhou,Hongchao Liu*,Wenliang Zhu*, Zhongmin Liu, CatalysisScience &Technology, 11:1358-1364,2021.

13) Regulation of HMOR properties and its effect on DME carbonylation by post-treatment. Xiangnong Ding, Xudong Fang, Hongchao Liu, Applied Chemical Industry, 10.16581/j.cnki.issn1671-3206.20211130.008 , 2021.

14) Direct conversion of toluene into styrene with high selectivity over a composite catalyst.QijunYu,JinzheLi,ChangchengWei,ZhongminLiu*,Fuel, 285:119270, 2021.

15) Conversion of CO2 and H2 into propane over InZrOx and SSZ-13 composite catalyst. Zhaopeng Liu, Youming Ni, Tantan Sun, Wenliang Zhu*,Zhongmin Liu*, Journal of Energy Chemistry, 54:111-117, 2021.

16) The carboxylates formed on oxides promoting the aromatization in syngas conversion over composite catalysts. Zhiyang Chen, Youming Ni, Fuli Wen, Ziqiao Zhou, Wenliang Zhu*,Zhongmin Liu, Chinese Journal of Catalysis, 42:835-843, 2021.

17) Formaldehyde intermediate participating in the conversion of methanol to aromatics over zinc modified H-ZSM-5. Youming Ni , Wenliang Zhu* ,Zhongmin Liu*, Journal of Energy Chemistry, 54:174-178, 2021.

18) Directed transforming of coke to active intermediates in methanol-to-olefins catalyst to boost light olefins selectivity. Jibin Zhou, Mingbin Gao, Jinling Zhang, Wenjuan Liu, Tao Zhang, Hua Li, Zhaochao Xu, Mao Ye, Zhongmin Liu, Nature Communications, 12(1): 17, 2021.00

19) Catalysts and shape selective catalysis in the methanol-to-olefin (MTO) reaction. Jiawei Zhong, Jingfeng Han, Yingxu Wei*. Zhongmin Liu*. Journal of Catalysis, 396:23-31, 2021.

20) Dual-template directed aminothermal syntheses and characterization of silicoaluminophosphates SAPO-CLO and ECR-40. Lijing Sun, Wenna Zhang, Zhuocheng Li,Miao Yang*,Ye Wang, Xiaosi Zhang, Peng Tian*, Zhongmin Liu*, Microporous and Mesoporous Materials, 315: 110915, 2021.

21) Study on the shape of staggered electrodes for 3D electrical capacitance tomography sensors. Jingjing Shen, Shuanghe Meng, Jing Wang, Wuqiang Yang, Mao Ye*,IEEE Transactions on Instrumentation & Measurement,70: 4502110 , 2021.

22) Revealing the Specific Spatial Confinement in 8‐membered Ring Cage‐type Molecular Sieves via Solid‐state NMR and Theoretical Calculations. Caiyi Lou, Wenna Zhang, Chao Ma, Benhan Fan, Shutao Xu*, Shushu Gao, Peng Guo, Yingxu Wei*, Zhongmin Liu*,ChemCatChem, 13(5):1299 -1305,2021.

23) Preparation of Efficient Ultraviolet-Protective Transparent Coating by Using a Titanium-Containing Hybrid Oligomer. Jiacheng Xing, Danhua Yuan, Hua Xie, Nan Wang, Hanbang Liu, Liping Yang, Yunpeng Xu*, Zhongmin Liu*, ACS Applied Materials & Interfaces, 13(4):5592-5601, 2021.

24) Synthesis of TS-1 zeolites from a polymer containing titanium and silicon. Jiacheng Xing, Danhua Yuan, Hanbang Liu, Yansi Tong, Yunpeng Xu*, Zhongmin Liu*, Journal of Materials Chemistry A,9(10):6205-6213, 2021.

25) Separation of xylene isomers in the anion-pillared square grid material SIFSIX-1‑Cu. Liping Yang, Hanbang Liu, Jiacheng Xing, Danhua Yuan, Yunpeng Xu*, Zhongmin Liu*. Chemistry-A European Journal,27(20):6187-6190, 2021.

26) Selective exchange of alkali metal ions on EAB zeolite. Yansi Tong, Danhua Yuan, Wenna Zhang, Yingxu Wei, Zhongmin Liu, Yunpeng Xu*, 58(1):41-47, 2021.

27) Morphology Control of SAPO Molecular Sieves under the Assistance of Organosilane. Ye Wang, Xiaosi Zhang, Lijing Sun, Bing Li, Lin Liu, Miao Yang*, Peng Tian*, Zhongyi Liu, Zhongmin Liu. Chemical Journal of Chinese Universities, 42(3):683-690,2021.

28) The first carbon-carbon bond formation mechanism in methanol-to-hydrocarbons process over chabazite zeolite.TantanSun,WeiChen, ShutaoXu, AnminZheng*, XinqiangWu, ShuZeng, NanWang, XiangjuMeng, YingxuWei*, ZhongminLiu*. Chem,7(9):2415-2428,2021.

29) Molecular Routes of Dynamic Autocatalysis for Methanol-to-Hydrocarbons Reaction. Shanfan Lin, Yuchun Zhi, Wei Chen, Huan Li, Wenna Zhang, Caiyi Lou, Xinqiang Wu, Shu Zeng, Shutao Xu, Jianping Xiao*, Anmin Zheng*, Yingxu Wei*, and Zhongmin Liu*, Journal of the American Chemical Society, 143 (31):12038-12052, 2021.

30) Investigation of Ethanol Conversion on H‑ZSM‑5 Zeolite by in Situ Solid-State NMR. Shu Zeng, Junjie Li, Nan Wang, Wenna Zhang, Yingxu Wei, Zhongmin Liu*, Shutao Xu*, Energ. Fuel., 35(15):12319-12328, 2021.

31) Understanding the Fundamentals of Microporosity Upgrading in Zeolites: Increasing Diffusion and Catalytic Performances. Zhengxing Qin†, Shu Zeng†, Georgian Melinte, Tomáš Bučko, Michael Badawi, Yanfeng Shen, Jean-Pierre Gilson, Ovidiu Ersen, Yingxu Wei, Zhongmin Liu, Xinmei Liu, Zifeng Yan, Shutao Xu*, Valentin Valtchev, Svetlana Mintova*, Adv. Sci.,8(17):2100001,2021.

32) Generating Assembled MFI Nanocrystals with Reduced b-Axis through Structure-Directing Agent Exchange Induced Recrystallization. Xiaoling Zhao, Shu Zeng, Xueliang Zhang, Quanzheng Deng, Xiujie Li, Wenguang Yu, Kake Zhu*, Shutao Xu*, Jichang Liu, Lu Han*. Angew. Chem. Int. Edit., 60,13959-13968, 2021.

33) Insights into the size effect of ZnCr2O4spinel oxide in composite catalysts for conversion of syngas to aromatics. Yi Fu, Youming Ni, Wenhao Cui, Xudong Fang, ZhiyangChen, Zhaopeng Liu,Wenliang Zhu* , Zhongmin Liu*, Green Energy & Environment, DOI: 10.1016/j.gee.2021.

34) Silicalite-1 Supported ZnO as an Efficient Catalyst for Direct Propane Dehydrogenation. Jie Liu, Yong Liu*, Hongchao Liu, Yi Fu, Zhiyang Chen, Wenliang Zhu*, ChemCatChem, 13(22):4780-4786, 2021.

35) Efficient Separation of Xylene Isomers by a Pillar-Layer Metal-Organic Framework.Liping Yang, Hanbang Liu, Danhua Yuan, Jiacheng Xing,Yunpeng Xu*, Zhongmin Liu.ACS Applied Materials & Interfaces, 13(35):41600-41608, 2021.

36) Effect of confinement on the rotation of a two-dimensional elliptical porous particle in shear flow. Jiajia Liu, Chenggong Li, Yunxin Zhang, Mao Ye*, Zhongmin Liu. Physics of Fluids, 33(8): 083317, 2021.

37) Excitation strategies for 3D electrical capacitance tomography sensors.Jingjing Shen, Shuanghe Meng*, Wuqiang Yang, Mao Ye*. IEEE Transactions on Instrumentation & Measurement,70: 4504409, 2021.

38) Kinetics of steam regeneration of SAPO-34 zeolite catalyst in methanol-to-olefins (MTO) process. Huaiqing An, Hua Li, Jibin Zhou, Jinling Zhang, Tao Zhang, Mao Ye*, Zhongmin Liu.Chinese Journal of Chemical Engineering, 35:231-238, 2021.

39) Data-driven prediction of minimum fluidization velocity in gas-fluidized beds using data extracted by text mining. Jibin Zhou, Duiping Liu, Mao Ye*, Zhongmin Liu, Industrial & Engineering Chemistry Research, 60(37):13727-13739, 2021.

40) A CFD-DEM study of the solid-like and fluid-like states in the homogeneous fluidization regime of Geldart A particles.Qiang Guo, Alireza Bordbar, Likun Ma, Yaxiong Yu, Shuliang Xu, Christopher M. Boyce*, Mao Ye*. AIChE Journal, e17420, 2021.

41) Embryonic zeolite-assisted synthesis of SSZ-13 with superior efficiency and their excellent catalytic performance.Linying Wang,Dali Zhu,JuanWang,WenhaoCui,Jingfeng Han,Bing Li, Dong Fan,Peng Tian,* Zhongmin Liu*,Journal of Materials Chemistry A,9(27):15238-15245, 2021.

42) Applications of X-ray and Electron Crystallography in Structural Investigations of Zeolites. Chao Ma, Xiaona Liu,Chenyang Nie, Lu Chen, Peng Tian,Hongyi Xu*, Peng Guo*, Zhongmin Liu.Chemical journal of Chinese Universities, 42(1):188-200,2021.

43) Constrained Al sites in FER-type zeolites.Weifeng Chu, Xiaona Liu, Zhiqiang Yang, Hiroya Nakata, Xingzhi Tan, Xuebin Liu, Longya Xu,Peng Guo*, Xiujie Li*, Xiangxue Zhu*. Chinese Journal of Catalysis,42 (11):2078-2087, 2021.

44) Aromatization mechanism of coupling reaction of light alkanes with CO over acidic zeolites: Cyclopentenones as key intermediates. Changcheng Wei, Jinzhe Li, Kuo Yang, Qijun Yu, Shu Zeng, Zhongmin Liu*, Chem Catalysis, 1:1273-1290, 2021.

45) Achieving stable Na metal cycling via polydopamine/multilayer graphene coating of a polypropylene separator.Jieqiong Qin, Haodong Shi, Kai Huang, Pengfei Lu, Pengchao Wen, Feifei Xing, Bing Yang, Mao Ye*, Yan Yu*, Zhong-Shuai Wu*,Nature Communications, 12(1): 5786, 2021.

46) Directly decorated CeY zeolite for O2-selective adsorption in O2/N2 separation at ambient temperature. Hanbang Liu, Danhua Yuan, Liping Yang, Jiacheng Xing, Shu Zeng, Shutao Xu, Yunpeng Xu*, Zhongmin Liu, Materials Horizons, 2021, DOI: 10.1039/d1mh01267c

47) Efficient separation of propylene and propane on SAPO-17 molecular sieve. Yansi Tong, Jiacheng Xing, Caiyi Lou, Danhua Yuan, Wei Huang, Zhaoan Chen, Zhongmin Liu, Yunpeng Xu*, Can. J. Chem., 99(7): 570–575, 2021.

48) DMTO: A Sustainable Methanol-to-Olefins Technology. Mao Ye*, Peng Tian, Zhongmin Liu, Engineering, 7(1):17–21, 2021.

49) Exploring boron distributions in MFI-type borosilicates. Xiaona Liu, Nana Yan, Chao Ma, Lei Wang, Peng Tian, Peng Guo*, Zhongmin Liu, INORGANIC CHEMISTRY COMMUNICATIONS, 126:108467, 2021.

50) The Complex Crystal Structure and Abundant Local Defects of Zeolite EMM-17 Unraveled by Combined Electron Crystallography and Microscopy. Xiaona Liu, Lingmei Liu, Tingting Pan, Nana Yan, Xinglong Dong, Yuanhao Li, Lu Chen, Peng Tian, Yu Han*, Peng Guo*, Zhongmin Liu, ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 60(45):24227-24233, 2021.

51) The inorganic cation-tailored“trapdoor”effect of silicoaluminophosphate zeolite for highly selective CO2 separation. Xiaohe Wang, Nana Yan, Miao Xie, Puxu Liu, Pu Bai, Haopeng Su, Binyu Wang, Yunzheng Wang, Libo Li, Tao Cheng, Peng Guo*, Wenfu Yan*, Jihong Yu*, Chemical Science,12:8803-8810, 2021.

52) Progresses of hyperpolarized 129Xe NMR application in porous materials and catalysis. Benhan Fan, Shutao Xu *, Yingxu Wei*, Zhongmin Liu*,Magnetic Resonance Letters, 1:11-27, 2021.

Email:heshasha@dicp.ac.cn   Copyright Division of Low-Carbon Catalysis and Engineering,DICP, CAS