Study of the effect of nitric acid on the structure and optical properties of alkali lignin-based carbon dots

Carbon Capture Science & Technology Pub Date : 2024-09-01 Epub Date: 2024-03-29 DOI:10.1016/j.ccst.2024.100218
Zhiqiang Chen , Mingwei Xia , Ying Gao , Wanli Ma , Yingquan Chen , Xianhua Wang , Hanping Chen , Haiping Yang
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Abstract

Hydrothermal reactions can convert lignin into carbon dots, and the process often uses acids as additives, but the mechanism of action is not clear. In this study, lignin-based carbon dots were successfully prepared by HNO3-assisted one-pot hydrothermal method. The mechanism of the influence of the acidic environment on the structure and optical properties of lignin-based carbon dots was also investigated by changing the addition amount of HNO3. It was found that the particle size distribution of carbon dots collected was 1-5 nm, and they could emit bright blue fluorescence under violet light irradiation with the highest fluorescence quantum yield of 10.17%. HNO3 acts on the branched chains and ether bonds of alkali lignin, prompting the depolymerization of lignin and re-cross-linking and condensation to form lignin-based carbon dots. With the increase of HNO3 addition, the carbon core of lignin-based carbon dots gradually transformed from amorphous structure to complete graphene-like structure, and the emission wavelength of lignin-based carbon dots shifted from 517 nm to 499 nm, and the fluorescence quantum yield was increased from 2.61% to 10.17% by the effect of integrated N doping, which is of great significance for the analysis of the conformational relationship of lignin-based carbon dots, and for the guidance of the high-efficiency synthesis of lignin-based carbon dots.

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硝酸对碱木质素基碳点的结构和光学特性的影响研究
水热反应可将木质素转化为碳点,该过程通常使用酸作为添加剂,但其作用机理尚不清楚。本研究采用 HNO3 辅助一锅水热法成功制备了木质素基碳点。通过改变 HNO3 的添加量,研究了酸性环境对木质素基碳点结构和光学性质的影响机制。结果发现,收集到的碳点粒径分布为1-5 nm,在紫光照射下可发出明亮的蓝色荧光,最高荧光量子产率为10.17%。HNO3 作用于碱木质素的支链和醚键,促使木质素解聚并重新交联缩合形成木质素基碳点。随着 HNO3 加入量的增加,木质素基碳点的碳核逐渐由无定形结构转变为完整的类石墨烯结构,木质素基碳点的发射波长由 517 nm 转变为 499 nm,荧光量子产率由 2.61%提高到10.17%,这对于分析木质素基碳点的构象关系,指导木质素基碳点的高效合成具有重要意义。
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Novel PAU zeolite with enhanced working capacity for waste-heat-driven temperature swing adsorption CO₂ capture Exploiting indigenous self-flocculating alkaliphilic Desmodesmus subspicatus for robust photosynthetic biogas upgrading under temperate climatic regimes Inside Front Cover Outside Front Cover Inside Back Cover
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