Investigating the Chemically Controlled Self-Assembly of Radionuclide-Nanomaterial Hybrids
Investigating the Chemically Controlled Self-Assembly of Radionuclide-Nanomaterial Hybrids
批准号:
1649500
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2015
资助国家:
英国
项目状态:
已结题
起止时间:
2015 至 --
中文摘要
目前,传统色谱柱用于环境样品和放射性核废料中放射性核素的化学分离和回收,面临许多限制:样品制备耗时,选择性不足,并且在存在化学干扰物质(例如重金属)的情况下,目标放射性核素的吸收往往很慢。因此,鉴于现实世界对目标放射性核素的更有效和选择性化学分离的需求,有必要探索新技术。近几十年来,纳米材料由于其极具吸引力的内在特性,在广泛的技术应用中得到了研究。这类材料的另一个吸引人的特点是极高的表面积体积比,这引入了纳米尺度的尺寸,并促进了互利材料与纳米材料表面的耦合,如冠醚,以帮助形成增强的杂化材料。因此,在这种情况下,纳米材料可能被认为是分离、吸附和回收长寿命放射性核素的理想支架。因此,该项目的目的是研究由萃取剂、冠醚和碳纳米材料、碳纳米管或氧化石墨烯组成的新型功能化杂化纳米材料的可行性。提出了一项研究计划,设计、合成和表征具有特定放射性核素装载能力的冠醚功能化碳纳米材料。对现有纳米材料系统的研究表明,这种材料是吸附和最终分离存在于环境水和核废料样品中的典型放射性核素的理想材料。考虑的另一个研究应用是在诊断领域,通过进一步设计具有不同功能的智能纳米材料,以满足核医学部门对加强剂量控制和镭-223靶向放射治疗的当前需求。
英文摘要
Currently, traditional chromatography columns used for the chemical separation and recovery of radionuclides present in environmental samples and radioactive nuclear waste, face many limitations: sample preparation is time-consuming, selectivity is inadequate, and uptake of target radionuclides is often slow in the presence of chemical interferent species, e.g. heavy metals. Thus, given real-world demands for more efficient and selective chemical separation of target radionuclides, there exists a pertinent need to explore new technologies. In recent decades, nanomaterials have been investigated in a vast range of technological applications on account of their highly attractive intrinsic properties. An additional attractive feature of this class of materials is an extremely high surface area to volume ratio, which introduces nanoscale dimensionality and facilitates the coupling of mutually beneficial materials to the nanomaterial surface such as crown ethers to help form enhanced hybrid materials. Hence, it is in this context that nanomaterials may be considered as ideal scaffolds for the separation, adsorption and recovery of long-lived radionuclides. As a result, the aim of this project is to investigate the viability of novel functionalised hybrid nanomaterials consisting of the extractant agent, crown ethers and the carbon nanomaterial, carbon nanotubes or graphene oxide. A programme of research was proposed to design, synthesise and characterise crown ether-functionalised carbon nanomaterials designed with specific radionuclide loading capabilities. Research into existing nanomaterial systems has shown that such materials are ideal for the adsorption and eventual separation of typical radionuclides present in environmental water and nuclear waste samples. Another research application of consideration is in the area of diagnostics whereby the smart nanomaterials are designed further with different functionalities to meet current demands for enhanced dose control and targeted radiotherapies of Radium-223 for the nuclear medicine sector.
期刊论文(2)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1007/s10967-018-5741-4
发表时间:
2018
期刊:
Journal of radioanalytical and nuclear chemistry
影响因子:
1.6
作者:
[Mohamud H, Ivanov P, Russell BC, Regan PH, Ward NI]
通讯作者:
Ward NI
Progress towards the development of a rapid analytical approach for separation of 226 Ra using dibenzo-18-crown-6 ether functionalised silica (SiO 2 ) disks
使用二苯并-18-冠-6醚官能化二氧化硅(SiO 2 )盘分离 226 Ra 的快速分析方法的开发进展
DOI:
10.1016/j.radphyschem.2017.02.020
发表时间:
2017
期刊:
Radiation Physics and Chemistry
影响因子:
2.9
作者:
[Mohamud H]
通讯作者:
Mohamud H
海外基金