Nugroho Bangun Satrio, Nakashima Satoru
Radioactivity Environmental Protection Course, Phoenix Leader Education Program, Hiroshima University 1-1-1 Kagamiyama Higashi-Hiroshima 739-8524 Japan
Department of Chemistry, Graduate School of Science, Hiroshima University 1-3-1 Kagamiyama Higashi-Hiroshima 739-8526 Japan.
RSC Adv. 2022 Jul 6;12(30):19667-19677. doi: 10.1039/d2ra02091b. eCollection 2022 Jun 29.
A new nanocomposite was developed using functionalized graphene oxide quantum dots (GOQDs) with cesium green molecules for the first time. Although the cesium green molecule works effectively only in the solid-state, without water, and in basic conditions, the functionalized GOQDs with cesium green made the nanocomposite work well as a cesium (Cs) detector in mixed solution (distilled water/THF). The nanocomposite can be employed as a Cs detector in both acidic and basic conditions. The present study revealed that the nanocomposite of GOQDs with cesium green showed an enhanced photoluminescence in basic conditions, while the intensity of the photoluminescence in acidic conditions is the superposition of the photoluminescence of the corresponding components. The photoluminescence of the nanocomposite was quenched (turned OFF) after Cs treatment in basic conditions. On the other hand, in the acidic conditions it was found that the photoluminescence intensity of this nanocomposite was enhanced (turned ON) by the Cs addition in two different Cs concentrations, 0.06 mmol L and 0.12 mmol L. In addition, the movement of the nanocomposite (after Cs addition) under the electron beams through TEM measurement was observed. The formation of CsCl and Cs nanoparticles was identified. Specifically, the Cs cluster occurrence is discussed by taking into account the mobility effect of the adatoms on the composite layer under electron beam irradiation.
首次使用功能化氧化石墨烯量子点(GOQDs)与铯绿色分子开发了一种新型纳米复合材料。尽管铯绿色分子仅在固态、无水且碱性条件下才能有效发挥作用,但带有铯绿色分子的功能化GOQDs使该纳米复合材料在混合溶液(蒸馏水/四氢呋喃)中作为铯(Cs)探测器能很好地发挥作用。该纳米复合材料在酸性和碱性条件下均可用作Cs探测器。本研究表明,GOQDs与铯绿色分子的纳米复合材料在碱性条件下表现出增强的光致发光,而在酸性条件下光致发光强度是相应组分光致发光的叠加。在碱性条件下用Cs处理后,该纳米复合材料的光致发光被猝灭(关闭)。另一方面,在酸性条件下发现,添加两种不同浓度(0.06 mmol/L和0.12 mmol/L)的Cs会增强(开启)该纳米复合材料的光致发光强度。此外,通过透射电镜测量观察了添加Cs后纳米复合材料在电子束下的运动。确定了CsCl和Cs纳米颗粒的形成。具体而言,通过考虑电子束照射下复合层上吸附原子的迁移效应来讨论Cs簇的出现情况。