Silicoaluminophosphate zeolite (SAPO-34) has been attracting increasing attention due to its excellent form selection and controllability in the chemical industry, as well as being one of the best industrial catalysts for methanol-to-olefin (MTO) reaction conversion. However, as a microporous molecular sieve, SAPO-34 easily generates carbon deposition and rapidly becomes inactivated. Therefore, it is necessary to reduce the crystal size of the zeolite or to introduce secondary macropores into the zeolite crystal to form a hierarchical structure in order to improve the catalytic effect. In this review, the synthesis methods of conventional SAPO-34 molecular sieves, hierarchical SAPO-34 molecular sieves and nanosized SAPO-34 molecular sieves ...
The nanosheet SAPO-34 zeolite crystals with a diameter of 300 nm and a thickness of 50 nm using a ne...
Silicoaluminophosphate SAPO-34 molecular sieve nanocrystals have been prepared by a post-synthesis m...
In this work, we systematically investigated the size effect of silicoaluminophosphate molecular sie...
Silicoaluminophosphate zeolite (SAPO-34) has been attracting increasing attention due to its excelle...
International audienceAs an effective non-petroleum based process for producing light olefins, the m...
International audienceAs an effective non-petroleum based process for producing light olefins, the m...
The recent advances in synthesis and catalytic applications of nano-hierarchical SAPO-34 for methano...
The recent advances in synthesis and catalytic applications of nano-hierarchical SAPO-34 for methano...
A hierarchical porous petal-shaped SAPO-34 zeolite was successfully synthesized via one-pot method b...
The synthesis and characterization of SAPO-57 (AFV) and SAPO-59 (AVL), two new members of the ABC-6 ...
Solvent-free synthesis methodology is a promising technique for the green and sustainable preparatio...
Using an organosilane surfactant as the mesopore director, hierarchical porous silicoaluminophosphat...
SAPO-35 molecular sieve samples with different Si contents were hydrothermally synthesized using hex...
The methanol-to-olefin (MTO) process is important because it offers an alternative to the convention...
The nanosheet SAPO-34 zeolite crystals with a diameter of 300 nm and a thickness of 50 nm using a ne...
The nanosheet SAPO-34 zeolite crystals with a diameter of 300 nm and a thickness of 50 nm using a ne...
Silicoaluminophosphate SAPO-34 molecular sieve nanocrystals have been prepared by a post-synthesis m...
In this work, we systematically investigated the size effect of silicoaluminophosphate molecular sie...
Silicoaluminophosphate zeolite (SAPO-34) has been attracting increasing attention due to its excelle...
International audienceAs an effective non-petroleum based process for producing light olefins, the m...
International audienceAs an effective non-petroleum based process for producing light olefins, the m...
The recent advances in synthesis and catalytic applications of nano-hierarchical SAPO-34 for methano...
The recent advances in synthesis and catalytic applications of nano-hierarchical SAPO-34 for methano...
A hierarchical porous petal-shaped SAPO-34 zeolite was successfully synthesized via one-pot method b...
The synthesis and characterization of SAPO-57 (AFV) and SAPO-59 (AVL), two new members of the ABC-6 ...
Solvent-free synthesis methodology is a promising technique for the green and sustainable preparatio...
Using an organosilane surfactant as the mesopore director, hierarchical porous silicoaluminophosphat...
SAPO-35 molecular sieve samples with different Si contents were hydrothermally synthesized using hex...
The methanol-to-olefin (MTO) process is important because it offers an alternative to the convention...
The nanosheet SAPO-34 zeolite crystals with a diameter of 300 nm and a thickness of 50 nm using a ne...
The nanosheet SAPO-34 zeolite crystals with a diameter of 300 nm and a thickness of 50 nm using a ne...
Silicoaluminophosphate SAPO-34 molecular sieve nanocrystals have been prepared by a post-synthesis m...
In this work, we systematically investigated the size effect of silicoaluminophosphate molecular sie...