Colloidal synthesis of AgGa(S 1− x Se x ) 2 solid solution nanocrystals with composition-dependent crystal phase for efficient photocatalytic degradation of methyl violet

A series of homogeneous AgGa(S 1− x Se x ) 2 solid solution nanocrystals with controllable composition (0 ≤ x ≤ 1) have been successfully prepared through a facile colloidal synthesis approach. Remarkably, they exhibit an evident crystal phase transformation from orthorhombic to tetragonal along wit...

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Veröffentlicht in:CrystEngComm 2022-06, Vol.24 (25), p.4540-4545
Hauptverfasser: Li, Tong, Shang, Di, Liu, Cong, Li, Ruyi, Bai, Fengying, Bai, Tianyu, Xing, Shanghua
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Sprache:eng
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Zusammenfassung:A series of homogeneous AgGa(S 1− x Se x ) 2 solid solution nanocrystals with controllable composition (0 ≤ x ≤ 1) have been successfully prepared through a facile colloidal synthesis approach. Remarkably, they exhibit an evident crystal phase transformation from orthorhombic to tetragonal along with the chemical composition of particles from either S or Se excess to S/Se approximate equality. The factors to determine this phase-selective synthesis of AgGa(S 1- x Se x ) 2 nanocrystals could be probably attributed to the relatively weak reactivity of Ga 3+ in the oleylamine-based reactive system and the metastable terminal possessed by AgGa(S 1- x Se x ) 2 , which was proposed after investigating their nucleation mechanisms. Furthermore, the photocatalytic potential of the as-synthesized AgGa(S 1− x Se x ) 2 nanocrystals has been evaluated through degrading methyl violet under visible-light illumination. Benefiting from the optimized crystal phase and energy structure, AgGa(S 0.7 Se 0.3 ) 2 presents the optimal photocatalytic efficiency of 88.48%.
ISSN:1466-8033
1466-8033
DOI:10.1039/D2CE00200K