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首页> 外文期刊>Journal of Colloid and Interface Science >Liquid-phase laser ablation synthesis of graphene quantum dots from carbon nano-onions: Comparison with chemical oxidation
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Liquid-phase laser ablation synthesis of graphene quantum dots from carbon nano-onions: Comparison with chemical oxidation

机译:碳纳米洋葱的石墨烯量子点的液相激光烧蚀合成:与化学氧化相比

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摘要

Graphene quantum dots (GQDs) have been synthesized reproducibly by chemical oxidation (CO) of carbon nano-onions (nCNOs) and a one-step pulsed laser ablation (LA) of nCNOs in deionized water. The photoluminescence (PL) spectra show that the LA-GQDs have blue shifted emission relative to the CO-GQDs which is attributed to the effects of both particle sizes and surface functional groups. The CO-GQDs have an average diameter of 4.1(8) nm and a thickness corresponding to two or three graphene layers, while the LA-GQDs have an average diameter of 1.8(6) nm and a thickness comparable to a single layer of graphene. The CO-GQDs favor the presence of carboxylic groups and have a higher fraction of sp(2) carbons, while the LA-GQDs prefer the presence of hydroxyl groups and have a higher fraction of sp(3) carbons. PL lifetime data suggests that surface functional groups are the main source of radiative deactivation and the sp(2) carbon domains are mainly responsible for non-radiative decay. PL lifetimes are measured to be 7.9(6) ns for the emission from the carboxylic groups and 3.18(10) ns from the hydroxyl groups. Compared to CO, liquid-phase LA is a faster and cleaner one-step method for producing GQDs with fewer starting chemicals and byproducts. (C) 2018 Elsevier Inc. All rights reserved.
机译:石墨烯量子点(GQDS)通过碳纳米洋葱(NCNOS)的化学氧化(CO)和在去离子水中的NCNOS的一步脉冲激光烧蚀(LA)可重复合成。光致发光(PL)光谱表明,La-GQDS相对于CO-GQD具有蓝色偏移发射,其归因于粒度尺寸和表面官能团的效果。 CO-GQDS的平均直径为4.1(8)nm,厚度对应于两种或三个石墨烯层,而LA-GQD的平均直径为1.8(6)nm,并且与单层石墨烯相当的厚度。 Co-GQDS赞有羧基的存在并具有更高的SP(2)碳的级分,而La-GQD偏好羟基存在并具有更高的SP(3)碳的级数。 PL寿命数据表明,表面官能团是辐射失活的主要来源,SP(2)碳畴主要负责非辐射衰减。将PL寿命测量为7.9(6)ns,用于从羧基和3.18(10)ns从羟基中排放。与CO,液相LA相比是一种更快和更清洁的一步法,用于生产GQD,具有较少的起始化学品和副产物。 (c)2018 Elsevier Inc.保留所有权利。

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