The overcommitting Rhodamine has aroused widely attention for the mainly organic pollutant in dying and pringting process, which is difficultly to remove the contaminate in totally. Thus, the BiOCl‐based semiconductors with relatively high photocatalytic properties toward water pullution were well defined. However, the limitted application of BiOCl due to the wider band gap, which can only be irradiated by UV light. In this work, we further introduced CdSe quantum dots (QDs), for the small‐size effect, specific surface area, special absorbability, designed for anchoring on BiOCl surface. A facial one‐step hydrothermal synthesis was developed for flower‐like BiOCl‐CdSe composites. The photodegradation of 20 mg/L RhB research under UV‐vis irradiation, 10 wt% CdSe‐BiOCl semiconductors displayed well photocatalytic abilities. From the electrochemical analysis, the effective separation of e− and h+ occured on the CdSe‐BiOCl composites. And the main work radicals during the photocatalytic produre were the e+, h+ and •O2− by the ESR analysis. The CdSe‐BiOCl composites have an immense prospective as the photocatalysts in pratical application.