TY - JOUR
T1 - Reconstruction of Al species enables binder-free hierarchical monolithic ZSM-5 zeolite with unique Al distribution
AU - Wang, Yiran
AU - Zhang, Penghe
AU - Zhong, Weiyong
AU - Li, Fang
AU - Jiang, Jiejing
AU - Liu, Yueming
AU - He, Mingyuan
N1 - Publisher Copyright:
© 2026 Elsevier Ltd
PY - 2026/3
Y1 - 2026/3
N2 - Recrystallization of molded zeolite catalysts enables transformation into binder-free zeolite catalysts, effectively solving the negative effects of binders. However, the evolution and underlying origin of acid properties still remain unclear. In this study, the changes of acid properties, the reconstruction behaviors of Al species, and the chemical interactions between parent ZSM-5 zeolite and SiO2 binder during the recrystallization process were systematically investigated, aiming to clarify the fundamental causes of changes in acid properties. Upon complete recrystallization, the binder-free monolithic ZSM-5 zeolite exhibited significant changes in acid properties (including acid amounts, acid strength, acid types and spatial distribution of acid centers). Notably, the spatial distribution of acid centers closely resembled that of hydrothermally synthesized ZSM-5 zeolite with the same Si/Al2 ratio, directly indicating Al species’ reconstruction. Further analysis confirmed that recrystallization process involves changes in Al coordination states and spatial distribution. Moreover, comparison of transformation behaviors of parent ZSM-5 zeolite and SiO2 binder further revealed that recrystallization of molded ZSM-5 zeolite is not a simple superposition of post-treatment of parent ZSM-5 zeolite and separate crystallization of SiO2 binder. Instead, strong chemical interactions exist between the two processes, in which Si and Al species released from dissolved ZSM-5 crystals directly participate in the recrystallization of SiO2 binder. This provides a fundamental explanation for the reconstruction of Al species and changes of acid properties. These insights not only advance the knowledge of Al species during liquid-solid phase transformations but also provide theoretical guidance and practical implications for the targeted synthesis of binder-free zeolites.
AB - Recrystallization of molded zeolite catalysts enables transformation into binder-free zeolite catalysts, effectively solving the negative effects of binders. However, the evolution and underlying origin of acid properties still remain unclear. In this study, the changes of acid properties, the reconstruction behaviors of Al species, and the chemical interactions between parent ZSM-5 zeolite and SiO2 binder during the recrystallization process were systematically investigated, aiming to clarify the fundamental causes of changes in acid properties. Upon complete recrystallization, the binder-free monolithic ZSM-5 zeolite exhibited significant changes in acid properties (including acid amounts, acid strength, acid types and spatial distribution of acid centers). Notably, the spatial distribution of acid centers closely resembled that of hydrothermally synthesized ZSM-5 zeolite with the same Si/Al2 ratio, directly indicating Al species’ reconstruction. Further analysis confirmed that recrystallization process involves changes in Al coordination states and spatial distribution. Moreover, comparison of transformation behaviors of parent ZSM-5 zeolite and SiO2 binder further revealed that recrystallization of molded ZSM-5 zeolite is not a simple superposition of post-treatment of parent ZSM-5 zeolite and separate crystallization of SiO2 binder. Instead, strong chemical interactions exist between the two processes, in which Si and Al species released from dissolved ZSM-5 crystals directly participate in the recrystallization of SiO2 binder. This provides a fundamental explanation for the reconstruction of Al species and changes of acid properties. These insights not only advance the knowledge of Al species during liquid-solid phase transformations but also provide theoretical guidance and practical implications for the targeted synthesis of binder-free zeolites.
KW - Acid properties
KW - Al species reconstruction
KW - Binder-free ZSM-5
KW - Monolithic zeolite
KW - Recrystallization mechanism
UR - https://www.scopus.com/pages/publications/105028727528
U2 - 10.1016/j.mtchem.2026.103405
DO - 10.1016/j.mtchem.2026.103405
M3 - 文章
AN - SCOPUS:105028727528
SN - 2468-5194
VL - 52
JO - Materials Today Chemistry
JF - Materials Today Chemistry
M1 - 103405
ER -