Title : One-Pot Synthesis of Size-Controllable Core-Shell CdS and Derived CdS@Znx Cd1-x S Structures for Photocatalytic Hydrogen Production.

Pub. Date : 2017 Nov 21

PMID : 28925020






7 Functional Relationships(s)
Download
Sentence
Compound Name
Protein Name
Organism
1 One-Pot Synthesis of Size-Controllable Core-Shell CdS and Derived CdS@Znx Cd1-x S Structures for Photocatalytic Hydrogen Production. Cadmium CD1c molecule Homo sapiens
2 Herein, a facile one-pot method for the synthesis of monodisperse, size-controllable CdS core-shell and CdS@Znx Cd1-x S core-double shell submicrospheres, which were engineered with respect to structure and size, is reported. Cadmium CD1c molecule Homo sapiens
3 By introduction of a zinc precursor in the synthetic system, CdS@Znx Cd1-x S core-double shell submicrospheres were obtained by cation exchange of CdS with zinc ions, with a process of diffusion of CdS towards the outside and transformation of Znx Cd1-x S crystallites. Cadmium CD1c molecule Homo sapiens
4 By introduction of a zinc precursor in the synthetic system, CdS@Znx Cd1-x S core-double shell submicrospheres were obtained by cation exchange of CdS with zinc ions, with a process of diffusion of CdS towards the outside and transformation of Znx Cd1-x S crystallites. Cadmium CD1c molecule Homo sapiens
5 By introduction of a zinc precursor in the synthetic system, CdS@Znx Cd1-x S core-double shell submicrospheres were obtained by cation exchange of CdS with zinc ions, with a process of diffusion of CdS towards the outside and transformation of Znx Cd1-x S crystallites. Cadmium CD1c molecule Homo sapiens
6 By introduction of a zinc precursor in the synthetic system, CdS@Znx Cd1-x S core-double shell submicrospheres were obtained by cation exchange of CdS with zinc ions, with a process of diffusion of CdS towards the outside and transformation of Znx Cd1-x S crystallites. Cadmium CD1c molecule Homo sapiens
7 Furthermore, CdS@Znx Cd1-x S core-double shell structures exhibited excellent stability over 20 h of hydrogen production. Cadmium CD1c molecule Homo sapiens