REFERENCES

1. Xing G, Peng D, Ben T. Crystalline porous organic salts. Chem Soc Rev 2024;53:1495-513.

2. Yu S, Xing GL, Chen LH, Ben T, Su BL. Crystalline porous organic salts: from micropore to hierarchical pores. Adv Mater 2020;32:e2003270.

3. Xing G, Yan T, Das S, Ben T, Qiu S. Synthesis of crystalline porous organic salts with high proton conductivity. Angew Chem Int Ed Engl 2018;57:5345-9.

4. Xing G, Bassanetti I, Bracco S, et al. A double helix of opposite charges to form channels with unique CO2 selectivity and dynamics. Chem Sci 2019;10:730-6.

5. Zhao Y, Fan C, Pei C, et al. Colossal negative linear compressibility in porous organic salts. J Am Chem Soc 2020;142:3593-9.

6. Zhang S, Fu J, Das S, Ye K, Zhu W, Ben T. Crystalline porous organic salt for ultrarapid adsorption/desorption-based atmospheric water harvesting by dual hydrogen bond system. Angew Chem Int Ed Engl 2022;61:e202208660.

7. Xing G, Zhang S, Zhu W, Ben T. Reply to the correspondence on “Crystalline porous organic salt for ultrarapid adsorption/desorption-based atmospheric water harvesting by dual hydrogen bond system”. Angew Chem Int Ed Engl 2023;62:e202215074.

8. Yamamoto A, Hirukawa T, Hisaki I, Miyata M, Tohnai N. Multifunctionalized porosity in zeolitic diamondoid porous organic salt: selective adsorption and guest-responsive fluorescent properties. Tetrahedron Lett 2013;54:1268-73.

9. Ami T, Oka K, Tsuchiya K, Tohnai N. Porous organic salts: diversifying void structures and environments. Angew Chem Int Ed Engl 2022;61:e202202597.

10. Sei H, Oka K, Sotome H, Miyasaka H, Tohnai N. Cage-like sodalite-type porous organic salts enabling luminescent molecule’s incorporation and room-temperature phosphorescence induction in air. Small 2023;19:e2301887.

11. Brekalo I, Deliz DE, Barbour LJ, Ward MD, Friščić T, Holman KT. Microporosity of a guanidinium organodisulfonate hydrogen-bonded framework. Angew Chem Int Ed Engl 2020;59:1997-2002.

12. O'Shaughnessy M, Padgham AC, Clowes R, et al. Controlling the crystallisation and hydration state of crystalline porous organic salts. Chemistry 2023;29:e202302420.

13. Karmakar A, Illathvalappil R, Anothumakkool B, et al. Hydrogen-bonded organic frameworks (HOFs): a new class of porous crystalline proton-conducting materials. Angew Chem Int Ed Engl 2016;55:10667-71.

14. Comotti A, Bracco S, Yamamoto A, et al. Engineering switchable rotors in molecular crystals with open porosity. J Am Chem Soc 2014;136:618-21.

15. Bracco S, Miyano T, Negroni M, et al. CO2 regulates molecular rotor dynamics in porous materials. Chem Commun 2017;53:7776-9.

16. Chen LH, Li Y, Su BL. Hierarchy in materials for maximized efficiency. Natl Sci Rev 2020;7:1626-30.

17. Chen LH, Sun MH, Wang Z, Yang W, Xie Z, Su BL. Hierarchically structured zeolites: from design to application. Chem Rev 2020;120:11194-294.

18. Zhou J, Fan W, Wang Y, Xie Z. The essential mass transfer step in hierarchical/nano zeolite: surface diffusion. Natl Sci Rev 2020;7:1630-2.

19. Stein A, Wilson BE, Rudisill SG. Design and functionality of colloidal-crystal-templated materials--chemical applications of inverse opals. Chem Soc Rev 2013;42:2763-803.

20. Li P, Chen Q, Wang TC, et al. Hierarchically engineered mesoporous metal-organic frameworks toward cell-free immobilized enzyme systems. Chem 2018;4:1022-34.

21. Shen K, Zhang L, Chen X, et al. Ordered macro-microporous metal-organic framework single crystals. Science 2018;359:206-10.

22. Sun M, Zhou J, Hu Z, et al. Hierarchical zeolite single-crystal reactor for excellent catalytic efficiency. Matter 2020;3:1226-45.

23. Yao W, Chen J, Wang Y, et al. Nitrogen-doped carbon composites with ordered macropores and hollow walls. Angew Chem Int Ed Engl 2021;60:23729-34.

24. Yao W, Hu C, Zhang Y, et al. Hierarchically ordered porous carbon with atomically dispersed cobalt for oxidative esterification of furfural. Ind Chem Mater 2023;1:106-16.

25. Zhao X, Pachfule P, Li S, et al. Macro/microporous covalent organic frameworks for efficient electrocatalysis. J Am Chem Soc 2019;141:6623-30.

26. Liu T, Zhao Y, Song M, et al. Ordered macro-microporous single crystals of covalent organic frameworks with efficient sorption of iodine. J Am Chem Soc 2023;145:2544-52.

27. Schoemaker HE, Mink D, Wubbolts MG. Dispelling the myths - biocatalysis in industrial synthesis. Science 2003;299:1694-7.

28. Straathof AJJ. Transformation of biomass into commodity chemicals using enzymes or cells. Chem Rev 2014;114:1871-908.

29. Liang W, Wied P, Carraro F, et al. Metal-organic framework-based enzyme biocomposites. Chem Rev 2021;121:1077-129.

30. Huang S, Chen G, Ouyang G. Confining enzymes in porous organic frameworks: from synthetic strategy and characterization to healthcare applications. Chem Soc Rev 2022;51:6824-63.

31. Chen W, Vázquez-gonzález M, Zoabi A, Abu-reziq R, Willner I. Biocatalytic cascades driven by enzymes encapsulated in metal–organic framework nanoparticles. Nat Catal 2018;1:689-95.

32. An H, Song J, Wang T, et al. Metal-organic framework disintegrants: enzyme preparation platforms with boosted activity. Angew Chem Int Ed Engl 2020;59:16764-9.

33. Lu J, Wu JK, Jiang Y, et al. Fabrication of microporous metal-organic frameworks in uninterrupted mesoporous tunnels: hierarchical structure for efficient trypsin immobilization and stabilization. Angew Chem Int Ed Engl 2020;59:6428-34.

34. Liang J, Bin Zulkifli MY, Yong J, et al. Locking the ultrasound-induced active conformation of metalloenzymes in metal-organic frameworks. J Am Chem Soc 2022;144:17865-75.

35. Tang J, Liu J, Zheng Q, et al. In-situ encapsulation of protein into nanoscale hydrogen-bonded organic frameworks for intracellular biocatalysis. Angew Chem Int Ed Engl 2021;60:22315-21.

36. Chen G, Huang S, Shen Y, et al. Protein-directed, hydrogen-bonded biohybrid framework. Chem 2021;7:2722-42.

37. Wied P, Carraro F, Bolivar JM, Doonan CJ, Falcaro P, Nidetzky B. Combining a genetically engineered oxidase with hydrogen-bonded organic frameworks (HOFs) for highly efficient biocomposites. Angew Chem Int Ed Engl 2022;61:e202117345.

38. Chen G, Tong L, Huang S, Huang S, Zhu F, Ouyang G. Hydrogen-bonded organic framework biomimetic entrapment allowing non-native biocatalytic activity in enzyme. Nat Commun 2022;13:4816.

39. Xing C, Mei P, Mu Z, et al. Enhancing enzyme activity by the modulation of covalent interactions in the confined channels of covalent organic frameworks. Angew Chem Int Ed Engl 2022;61:e202201378.

40. Feng M, Niu Z, Xing C, et al. Covalent organic framework based crosslinked porous microcapsules for enzymatic catalysis. Angew Chem Int Ed Engl 2023;62:e202306621.

41. Liang J, Ruan J, Njegic B, et al. Insight into bioactivity of in-situ trapped enzyme-covalent-organic frameworks. Angew Chem Int Ed Engl 2023;62:e202303001.

42. Zhang Y, Xing C, Mu Z, et al. Harnessing self-repairing and crystallization processes for effective enzyme encapsulation in covalent organic frameworks. J Am Chem Soc 2023;145:13469-75.

43. Liu H, Zhou Y, Guo J, et al. Reticular synthesis of highly crystalline three-dimensional mesoporous covalent-organic frameworks for lipase inclusion. J Am Chem Soc 2023;145:23227-37.

44. Liu S, Sun Y. Co-encapsulating cofactor and enzymes in hydrogen-bonded organic frameworks for multienzyme cascade reactions with cofactor recycling. Angew Chem Int Ed Engl 2023;62:e202308562.

45. Freund R, Zaremba O, Arnauts G, et al. The current status of MOF and COF applications. Angew Chem Int Ed Engl 2021;60:23975-4001.

46. Kandambeth S, Venkatesh V, Shinde DB, et al. Self-templated chemically stable hollow spherical covalent organic framework. Nat Commun 2015;6:6786.

47. Sun Q, Fu CW, Aguila B, et al. Pore environment control and enhanced performance of enzymes infiltrated in covalent organic frameworks. J Am Chem Soc 2018;140:984-92.

48. Liang W, Ricco R, Maddigan NK, et al. Control of structure topology and spatial distribution of biomacromolecules in protein@ZIF-8 biocomposites. Chem Mater 2018;30:1069-77.

49. Feng Y, Hu H, Wang Z, et al. Three-dimensional ordered magnetic macroporous metal-organic frameworks for enzyme immobilization. J Colloid Interface Sci 2021;590:436-45.

50. Bradford MM. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 1976;72:248-54.

51. Liang W, Flint K, Yao Y, et al. Enhanced bioactivity of enzyme/MOF biocomposite via host framework engineering. J Am Chem Soc 2023;145:20365-74.

52. Ou P, Wolff SP. A discontinuous method for catalase determination at ‘near physiological’ concentrations of H2O2 and its application to the study of H2O2 fluxes within cells. J Biochem Biophys Methods 1996;31:59-67.

53. Li M, Qiao S, Zheng Y, et al. Fabricating covalent organic framework capsules with commodious microenvironment for enzymes. J Am Chem Soc 2020;142:6675-81.

54. Stein A, Schroden RC. Colloidal crystal templating of three-dimensionally ordered macroporous solids: materials for photonics and beyond. Curr Opin Solid St M 2001;5:553-64.

55. Liu X, Yan Z, Zhang Y, et al. Two-dimensional metal-organic framework/enzyme hybrid nanocatalyst as a benign and self-activated cascade reagent for in vivo wound healing. ACS Nano 2019;13:5222-30.

56. Fita I, Rossmann MG. The NADPH binding site on beef liver catalase. Proc Natl Acad Sci U S A 1985;82:1604-8.

57. Jesionowski T, Zdarta J, Krajewska B. Enzyme immobilization by adsorption: a review. Adsorption 2014;20:801-21.

58. Liang W, Carraro F, Solomon MB, et al. Enzyme encapsulation in a porous hydrogen-bonded organic framework. J Am Chem Soc 2019;141:14298-305.

59. Dong X, Fan Y, Yang P, et al. Ultraviolet-visible (UV-Vis) and fluorescence spectroscopic investigation of the interactions of ionic liquids and catalase. Appl Spectrosc 2016;70:1851-60.

60. Liang W, Xu H, Carraro F, et al. Enhanced activity of enzymes encapsulated in hydrophilic metal-organic frameworks. J Am Chem Soc 2019;141:2348-55.

61. Pan Y, Wang X, Li H, et al. In situ monitoring of protein transfer into nanoscale channels. Cell Rep Phys Sci 2021;2:100576.

Chemical Synthesis
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