1. Fluorescent sensors have been considered as useful method to detect metal ions due to their high sensitivity, selectivity and fast detection.
2. However fluorescent semiconductor quantum dots and metal nanoparticles have attracted considerable attention as fluorescent sensing materials for the detection of metal ions, they are limited by their toxicity and expensive synthesis method.
3. Recently, fluorescent GQDs have gained great attention as alternative to semiconductor quantum dots in the detection of metal ions due to their low toxicity, excellent biocompatibility, and good photostability.
4. Despite aforementioned method to synthesize GQDs, it is still necessary to develop a promising method for GQDs with simple, low-cost, and environmentally friend approach.
1. Fluorescent sensors have been considered as useful method to detect metal ions due to their high sensitivity, selectivity and fast detection.
2. However fluorescent semiconductor quantum dots and metal nanoparticles have attracted considerable attention as fluorescent sensing materials for the detection of metal ions, they are limited by their toxicity and expensive synthesis method.
3. Recently, fluorescent GQDs have gained great attention as alternative to semiconductor quantum dots in the detection of metal ions due to their low toxicity, excellent biocompatibility, and good photostability.
4. Despite aforementioned method to synthesize GQDs, it is still necessary to develop a promising method for GQDs with simple, low-cost, and environmentally friend approach.
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