[1] E. Perez-Botella, S. Valencia, F. Rey, Zeolites in adsorption processes:state of the art and future prospects, Chem. Rev. 122(24)(2022)17647-17695. [2] T. Derbe, S. Temesgen, M. Bitew, A short review on synthesis, characterization, and applications of zeolites, Adv. Mater. Sci. Eng. 2021(2021)1-17. [3] D. Fan, P. Tian, S.T. Xu, Q.H. Xia, X. Su, L. Zhang, Y. Zhang, Y.L. He, Z.M. Liu, A novel solvothermal approach to synthesize SAPO molecular sieves using organic amines as the solvent and template, J. Mater. Chem. 22(14)(2012)6568. [4] R.D. Rogers, K.R. Seddon, Chemistry. ionic liquids:solvents of the future?Science 302(5646)(2003)792-793. [5] E.R. Cooper, C.D. Andrews, P.S. Wheatley, P.B. Webb, P. Wormald, R.E. Morris, Ionic liquids and eutectic mixtures as solvent and template in synthesis of zeolite analogues, Nature 430(7003)(2004)1012-1016. [6] Y.Y. Jin, X. Chen, Q. Sun, N. Sheng, Y. Liu, C.Q. Bian, F. Chen, X.J. Meng, F.S. Xiao, Solvent-free syntheses of hierarchically porous aluminophosphate-based zeolites with AEL and AFI structures, Chem. Weinheim Der Bergstrasse Ger. 20(52)(2014)17616-17623. [7] Q.M. Wu, X.L. Liu, L.F. Zhu, X.J. Meng, F. Deng, F.T. Fan, Z.C. Feng, C. Li, S. Maurer, M. Feyen, U. Muller, F.S. Xiao, Solvent-free synthesis of ITQ-12, ITQ-13, and ITQ-17 zeolites, Chin. J. Chem. 35(5)(2017)572-576. [8] Q.M. Wu, X. Wang, G.D. Qi, Q. Guo, S.X. Pan, X.J. Meng, J. Xu, F. Deng, F.T. Fan, Z.C. Feng, C. Li, S. Maurer, U. Muller, F.S. Xiao, Sustainable synthesis of zeolites without addition of both organotemplates and solvents, J. Am. Chem. Soc. 136(10)(2014)4019-4025. [9] L.M. Ren, Q.M. Wu, C.G. Yang, L.F. Zhu, C.J. Li, P.L. Zhang, H.Y. Zhang, X.J. Meng, F.S. Xiao, Solvent-free synthesis of zeolites from solid raw materials, J. Am. Chem. Soc. 134(37)(2012)15173-15176. [10] Y.Y. Jin, Q. Sun, G.D. Qi, C.G. Yang, J. Xu, F. Chen, X.J. Meng, F. Deng, F.S. Xiao, Solvent-free synthesis of silicoaluminophosphate zeolites, Angew. Chem. Int. Ed Engl. 52(35)(2013)9172-9175. [11] Q.M. Wu, X.L. Liu, L.F. Zhu, L.H. Ding, P. Gao, X. Wang, S.X. Pan, C.Q. Bian, X.J. Meng, J. Xu, F. Deng, S. Maurer, U. Muller, F.S. Xiao, Solvent-free synthesis of zeolites from anhydrous starting raw solids, J. Am. Chem. Soc. 137(3)(2015)1052-1055. [12] Q.M. Wu, X.J. Meng, X.H. Gao, F.S. Xiao, Solvent-free synthesis of zeolites:mechanism and utility, Acc. Chem. Res. 51(6)(2018)1396-1403. [13] L.J. Zhang, X.P. Wang, C.A. Shi, Rapid solvent-free synthesis of nano-sized ZSM-5 with a low Si/Al ratio at 90℃, Inorg. Chem. Front. 9(9)(2022)1992-2000. [14] Y. Ma, S.C. Han, Q.M. Wu, L.F. Zhu, H.M. Luan, X.J. Meng, F.S. Xiao, One-pot fabrication of metal-zeolite catalysts from a combination of solvent-free and sodium-free routes, Catal. Today 371(2021)64-68. [15] M. Ma, X.M. Huang, E.S. Zhan, Y. Zhou, H.F. Xue, W.J. Shen, Synthesis of mordenite nanosheets with shortened channel lengths and enhanced catalytic activity, J. Mater. Chem. A 5(19)(2017)8887-8891. [16] K. Itabashi, T. Fukushima, K. Igawa, Synthesis and characteristic properties of siliceous mordenite, Zeolites 6(1)(1986)30-34. [17] Y.H. Liu, N. Zhao, H. Xian, Q.P. Cheng, Y.S. Tan, N. Tsubaki, X.G. Li, Facilely synthesized H-mordenite nanosheet assembly for carbonylation of dimethyl ether, ACS Appl. Mater. Interfaces 7(16)(2015)8398-8403. [18] X.S. Wang, R.J. Li, C.C. Yu, Y.X. Liu, Study on the reconstruction in the crystallization process of mordenite, Microporous Mesoporous Mater. 311(2021)110665. [19] X.S. Wang, R.J. Li, C.C. Yu, L.Y. Zhang, C.M. Xu, H.J. Zhou, Dimethyl ether carbonylation over nanosheet-assembled hierarchical mordenite, Microporous Mesoporous Mater. 274(2019)227-235. [20] L.Y. Li, Q.Y. Wang, H.C. Liu, T.T. Sun, D. Fan, M. Yang, P. Tian, Z.M. Liu, Preparation of spherical mordenite zeolite assemblies with excellent catalytic performance for dimethyl ether carbonylation, ACS Appl. Mater. Interfaces 10(38)(2018)32239-32246. [21] A. Bhan, E. Iglesia, A link between reactivity and local structure in acid catalysis on zeolites, Acc. Chem. Res. 41(4)(2008)559-567. [22] P. Cheung, A. Bhan, G.J. Sunley, E. Iglesia, Selective carbonylation of dimethyl ether to methyl acetate catalyzed by acidic zeolites, Angew. Chem. Int. Ed. 45(10)(2006)1617-1620. [23] Z.Z. Cheng, S.Y. Huang, Y. Li, K. Cai, Y.E. Wang, M.Y. Wang, J. Lv, X.B. Ma, Role of Broensted acid sites within 8-MR of mordenite in the deactivation roadmap for dimethyl ether carbonylation, ACS Catal. 11(9)(2021)5647-5657. [24] S.Y. Li, K. Cai, Y. Li, S.P. Liu, M. Yu, Y.E. Wang, X.B. Ma, S.Y. Huang, Identifying the active silver species in carbonylation of dimethyl ether over Ag-HMOR, ChemCatChem 12(12)(2020)3290-3297. [25] E.S. Zhan, Z.P. Xiong, W.J. Shen, Dimethyl ether carbonylation over zeolites, J. Energy Chem. 36(2019)51-63. [26] Z.Q. Liu, X.F. Yi, G.R. Wang, X.M. Tang, G.C. Li, L. Huang, A.M. Zheng, Roles of 8-ring and 12-ring channels in mordenite for carbonylation reaction:from the perspective of molecular adsorption and diffusion, J. Catal. 369(2019)335-344. [27] K.P. Cao, D. Fan, L.Y. Li, B.H. Fan, L.Y. Wang, D.L. Zhu, Q.Y. Wang, P. Tian, Z.M. Liu, Insights into the pyridine-modified MOR zeolite catalysts for DME carbonylation, ACS Catal. 10(5)(2020)3372-3380. [28] S. Grundner, M.A. Markovits, G.N. Li, M. Tromp, E.A. Pidko, E.J. Hensen, A. Jentys, M. Sanchez-Sanchez, J.A. Lercher, Single-site trinuclear copper oxygen clusters in mordenite for selective conversion of methane to methanol, Nat. Commun. 6(2015)7546. [29] J.L. Liu, H.F. Xue, X.M. Huang, P.H. Wu, S.J. Huang, S.B. Liu, W.J. Shen, Stability enhancement of H-mordenite in dimethyl ether carbonylation to methyl acetate by pre-adsorption of pyridine, Chin. J. Catal. 31(7)(2010)729-738. [30] Z.Z. Cheng, S.Y. Huang, Y. Li, K. Cai, D.W. Yao, J. Lv, S.P. Wang, X.B. Ma, Carbonylation of dimethyl ether over MOR and Cu/H-MOR catalysts:comparative investigation of deactivation behavior, Appl. Catal. A 576(2019)1-10. [31] Y. Li, Z.H. Li, S.Y. Huang, K. Cai, Z. Qu, J.F. Zhang, Y. Wang, X.B. Ma, Morphology-dependent catalytic performance of mordenite in carbonylation of dimethyl ether:enhanced activity with high c/b ratio, ACS Appl. Mater. Interfaces 11(27)(2019)24000-24005. [32] N. Zhao, Q.P. Cheng, S.S. Lyu, L.H. Guo, Y. Tian, T. Ding, J. Xu, X.B. Ma, X.G. Li, Promoting dimethyl ether carbonylation over hot-water pretreated H-mordenite, Catal. Today 339(2020)86-92. [33] A. Bhan, A.D. Allian, G.J. Sunley, D.J. Law, E. Iglesia, Specificity of sites within eight-membered ring zeolite channels for carbonylation of methyls to acetyls, J. Am. Chem. Soc. 129(16)(2007)4919-4924. [34] M. Boronat, C. Martinez-Sanchez, D. Law, A. Corma, Enzyme-like specificity in zeolites:a unique site position in mordenite for selective carbonylation of methanol and dimethyl ether with CO, J. Am. Chem. Soc. 130(48)(2008)16316-16323. [35] H.F. Xue, X.M. Huang, E. Ditzel, E.S. Zhan, M. Ma, W.J. Shen, Coking on micrometer-and nanometer-sized mordenite during dimethyl ether carbonylation to methyl acetate, Chin. J. Catal. 34(8)(2013)1496-1503. [36] H. Zhou, W.L. Zhu, L. Shi, H.C. Liu, S.P. Liu, Y.M. Ni, Y. Liu, Y.L. He, S.L. Xu, L.N. Li, Z.M. Liu, in situ DRIFT study of dimethyl ether carbonylation to methyl acetate on H-mordenite, J. Mol. Catal. A 417(2016)1-9. |