Citric acid triammonium is a nitrogen-rich compound formed by the reaction of citric acid with ammonia in a 1:3 molar ratio. As an endogenous metabolite, it serves as an effective carbon source for the synthesis of carbon quantum dots (CDs). The enhanced nitrogen content of citric acid triammonium may facilitate the incorporation of nitrogen-based functional groups in CDs, contributing to improved emission-color tunability. Its unique properties make it valuable for research in materials science and nanotechnology applications.
Citric acid triammonium is a nitrogen-rich compound formed by the reaction of citric acid with ammonia in a 1:3 molar ratio. As an endogenous metabolite, it serves as an effective carbon source for the synthesis of carbon quantum dots (CDs). The enhanced nitrogen content of citric acid triammonium may facilitate the incorporation of nitrogen-based functional groups in CDs, contributing to improved emission-color tunability. Its unique properties make it valuable for research in materials science and nanotechnology applications.
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