...
首页> 外文期刊>Materials Research Bulletin >Sustainable synthesis of carbon dots from agarose waste and prospective application in sensing of L-aspartic acid
【24h】

Sustainable synthesis of carbon dots from agarose waste and prospective application in sensing of L-aspartic acid

机译:可持续合成琼脂糖废弃物的碳点和对L-天冬氨酸感测的前瞻性应用

获取原文
获取原文并翻译 | 示例

摘要

The excessive utilization of carbon dots (CDs) has led to different fates and perseverance which further prejudiced by various photochemical and other transformations. The mechanistic behaviour of their respective conversions is still very unclear. The present report fulfils this knowledge breach by single step synthesis of CDs with one step synthesis of CDs by thermal treatment by using agarose waste. The formed particles have possessed outstanding quantum yield with value similar to 62 %. The developed CDs are highly sustainable and non-toxic in nature as compared to organic and inorganic quantum dots as their unknown chemical, physical and optoelectronic properties limit their widespread use. The exceptional luminescence and physicochemical characteristics of developed CDs inspired this research work towards commercial products. With this view, they particles have been successfully applied in recognition of biological component such as aspartic acid. The fluorescence emission intensity of developed CDs reflects extraordinary sensitivity and selectivity towards i-aspartic acid out of twenty amino acids through quenching mechanism in wide concentration range with a linear relationship of 10 mu m to 1 nm and value of detection limit was found to be 0.28 nm. Astonishingly, such a sensor can be applied in real world analysis with satisfactory spiked recovery of 98 %. The developed C-dots are pragmatic to real sample recognition and results are highly sustaining.
机译:碳点(CDS)的过度利用导致了不同的粘性和恒定,其进一步偏见了各种光化学和其他转化。各自转化的机械行为仍然尚不清楚。本报告通过使用琼脂糖废物,通过热处理,通过单步合成Cds的CDS合成,通过使用琼脂糖废物来实现这一知识突发。所形成的颗粒具有与62%相似的值的出色量子产率。与有机和无机量子点相比,开发的CD具有高度可持续和无毒的无毒,与其未知的化学,物理和光电性质限制它们广泛使用。发达的CDS的特殊发光和物理化学特性激发了这项研究致力于商业产品。通过这种观点,它们已经成功地应用于识别生物组分如天冬氨酸。发育CD的荧光发射强度反映了20个氨基酸中的I-天冬氨酸的非凡敏感性和选择性,通过宽浓度范围内的淬火机制,线性关系为10μm至1nm,并且发现检测限的值为0.28纳米。令人惊讶的是,这种传感器可以应用于现实世界分析,令人满意的飙升回收率为98%。开发的C点是实际样本识别的务实,结果高度维持。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号