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Nanocarbon Aerogel Catalysts for Chemical Flow Processes

Nanocarbon Aerogel Catalysts for Chemical Flow Processes
用于化学流程的纳米碳气凝胶催化剂
批准号:
2744796
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:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --

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中文摘要
翻译
该博士研究生项目的目标是开发新的化学方法,以设计气凝胶催化剂的微观结构和表面化学,并将这些新型催化剂系统整合到现代化学流程中。该项目将探索纳米碳气凝胶的合成及其与纳米颗粒和分子实体的化学功能化。然后,该项目将这些材料整合到化学流动反应器中,以研究功能化气凝胶作为电化学反应中的多孔多相催化剂的结构-功能关系,专注于精细-该项目的好处包括开发创新的新催化剂系统,可与先进的化学加工和制造技术相结合,旨在提高在商业和环境重要的反应,如二氧化碳利用和医药相关的精细化学品合成的效率。该奖学金还将为先进材料科学和工艺工程技术的博士生提供高度专业化的培训。学生还将受益于利兹实习设施的访问,例如通过布拉格材料研究中心和工艺研究与开发研究所。该博士项目与目前的EPSRC研究资助“捕获和释放:使用芳香标签和电活性纳米碳泡沫回收均相金属催化剂”(EP/T012153/1)具有协同作用,由博士生导师领导。在这种情况下,在学生学习的后期阶段,可能会出现与英国化学制造合作伙伴合作的机会,以探索扩大规模,知识转移和商业开发的博士研究。拟议的研究具有很强的跨学科主题,福尔斯属于各种EPSRC研究主题和领域,包括先进材料,催化,功能陶瓷和无机物,制造未来,以及石墨烯和碳纳米技术。
英文摘要
The objective of this PhD studentship is the development of new chemical methodologies to engineer the microstructure and surface chemistry of aerogel catalysts and the integration of these novel catalyst systems into modern chemical flow processes. The project will explore the synthesis of nanocarbon aerogels and their chemical functionalisation with nanoparticles and molecular entities. The project will then integrate the materials into chemical flow reactor to investigate structure-function relationships of the functionalised aerogels as porous, heterogeneous catalysts within electrochemical reactions, with focus on fine-chemical and CO2 reduction reactions.The benefits of the project include the development of innovative new catalysts systems that can be integrated with advanced chemical processing and manufacturing technologies with the aim to enhance efficiency in commercially- and environmentally-important reactions, such as CO2 utilisation and pharma-relevant fine-chemical synthesis. The studentship will also provide highly specialised training for the PhD student in advanced materials science and process engineering techniques. The student will also benefit from Leeds-intern facility access, e.g. through the Bragg Centre for Materials Research and the Institute for Process Research and Development. The PhD project has synergies with the current EPSRC research grant "Catch and Release: Recycling of Homogenous Metal Catalysts Using Aromatic Tags and Electroactive Nanocarbon Foams" (EP/T012153/1), led by the PhD supervisor. In this context, opportunities might arise at the later stages of the studentship for collaboration with UK chemical manufacturing partners to explore scale-up, knowledge transfer and commercial exploitation of the PhD research.The proposed research has a strong interdisciplinary theme and falls within various EPSRC research themes and areas, including advanced materials, catalysis, functional ceramics and inorganics, manufacturing the future, and graphene and carbon nanotechnology.
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