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Carbon dots in zeolites: A new class of thermally activated delayed fluorescence materials with ultralong lifetimes
A facial and general “dots-in-zeolites” strategy to in situ confine carbon dots in zeolitic matrices during hydrothermal/solvothermal crystallization to generate high-efficient TADF materials with ultralong lifetimes is reported.
Carbon Dots in Porous Materials: Host-Guest Synergy for Enhanced Performance.
This minireview summarizes the recent progress in the research of CDs@PM s, and highlights synthetic strategies of constructing composites and roles of porous matrices in boosting the applications of CDs in diverse areas.
Carbon Dots-in-Matrix Boosting Intriguing Luminescence Properties and Applications.
The state-of-the-art strategies for introducing CDs in various host matrices, such as nanoporous materials, polyvinyl alcohol, polyurethane, potash alum, layered double hydroxides, amorphous silica, etc, and the resultant luminescent properties of the composites and their emission mechanisms are discussed.
Fabrication of SAPO-34 Crystals with Different Morphologies by Microwave Heating
The crystal size and shape of the silicoaluminophosphate molecular sieve SAPO-34 have been effectively controlled in the reaction system of Al2O3–P2O5–SiO2–TEAOH–H2O under microwave radiations. Nano
Structures and Templating Effect in the Formation of 2D Layered Aluminophosphates with Al3P4O163- Stoichiometry
The structural features of a family of layered aluminophosphates with Al3P4O163- stoichiometry (denoted L-n) have been discussed. Their 2D sheets are stabilized by protonated organic amines through
Hydrothermal synthesis of a new zinc phosphite (C5H7N2)2·[Zn3(HPO3)4] with intersecting 8- and 12-ring channels
Using 4-aminopyridine as the structure-directing agent(SDA), a new open-framework zinc phosphite, (C5H7N2)2·[Zn3(HPO3)4](ZnHPO-CJ70), was synthesized under hydrothermal condition. Single-crystal
Synthesis of new zeolite structures.
The advances in the synthesis of new zeolite structures in the last decade are presented, which are achieved by utilization of the synthetic strategies based on pre-designed structure-directing agents, heteroatom substitution, and topotactic transformations.
A microporous lanthanum metal-organic framework as a bi-functional chemosensor for the detection of picric acid and Fe(3+) ions.
The high quenching efficiency and selectivity of H3TPT makes it a potential bi-functional chemosensor for both PA and Fe(3+) ions.