虎门体育官方登录入口网:讲座预告 | 伦敦帝国理工虎门体育app下载官网Martyn A. McLachlan教授:“Publishing for impact: Tips from RSC Editors”“Sustainable Routes for the Synthesis and Circularity of Metal Halide Perovskite Materials and Devices”
报告题目(1):Publishing for impact: Tips from RSC Editors(提升研究影响力:RSC 编辑的论文发表建议)
报告题目(2):Sustainable Routes for the Synthesis and Circularity of Metal Halide Perovskite Materials and Devices
报 告 人:Martyn A. McLachlan 教授(英国伦敦帝国理工虎门体育app下载官网;Editor in-Chief: Journal of Materials Chemistry C & Materials Advances)
邀 请 人:夏志国 教授
报告时间:2026年9月24日15:00-16:30
报告地点:北区科技园1号楼W301会议室
报告摘要1
Topics will include:
? Choosing the right journal for your work.? Preparing a clear, compelling and publication-ready manuscript.? Understanding journal scope, editorial assessment and Impact Factor.? Peer review and the lifecycle of a manuscript.? How to make your work stand out from submission to publication.? Good publishing practice and research integrity.? The opportunities and challenges associated with Artificial Intelligence in publishing.? Resources available to support authors.? Promoting your research and increasing its visibility and impact.
报告摘要2
Metal halide perovskites (MHPs) have emerged as a highly versatile materials platform for photovoltaics and nextgeneration optoelectronics. Their rapid development is driven by an exceptional combination of properties, including bandgap tunability, strong optical absorption, long charge-carrier diffusion lengths, and high chargecarrier mobilities, alongside compatibility with low-cost and scalable processing. Despite this promise, the sustainable manufacture of MHP-based devices remains limited by processing routes that often depend on toxic or environmentally hazardous solvents, complex multi-solvent systems, and thermal annealing steps to achieve the desired crystalline phases. Addressing these limitations is essential if MHP technologies are to move towards scalable, low-impact manufacturing.
In this talk, I will present an overview of recent strategies developed in our laboratory that fundamentally reimagine how MHP thin films, nanocrystals, and single crystals are made. At the heart of our approach is a breakthrough water-based solvent system that enables the ambient, room-temperature synthesis of size-tuneable, compositionally controlled CsPbBr? nanocrystals no toxic solvents, no thermal annealing, no compromise.1 The resulting nanocrystals achieve photoluminescence quantum yields exceeding 60%, and through post-synthetic anion exchange, we unlock access to the full CsPbX3 family (X = Cl, Br, I), with emission continuously tuneable across 450–660 nm. But perhaps most excitingly, we demonstrate that these same solvent systems can be harnessed to recover and recycle MHP thin films, enabling the fabrication of efficient devices from reclaimed perovskite materials a compelling proof-of-concept for truly circular, sustainable MHP manufacturing.
Together, these advances chart a scalable, low-cost, and greener pathway to high-performance MHP nanomaterials with precisely controlled optical properties, bringing the vision of environmentally responsible nextgeneration optoelectronics meaningfully closer to reality.
报告人简介

Martyn A. McLachlan is Professor of Thin Films, Interfaces and Electronic Devices at Imperial College London. His research spans materials chemistry, physics and engineering, with a focus on metal-halide perovskites, metal oxide semiconductors, sustainable materials processing and emerging optoelectronic devices. He leads the EPSRC-SFI Centre for Doctoral Training in Advanced Characterisation of Materials and serves as the elected Consul for Imperial’s Faculty of Engineering and Business School. He is Editor-in-Chief of the Royal Society of Chemistry journals Journal of Materials Chemistry C and Materials Advances (joint). His recent work has focussed ambient, water-based approaches to the synthesis of composition- and size-controlled perovskite nanocrystals, alongside new strategies for recovery, recycling and reuse of metal-halide perovskites. Across his career Martyn has published > 150 peer reviewed papers (h = 47), supervised >30 PhD students to successful completion and has made a sustained contribution to undergraduate education and student support.
Martyn A. McLachlan是伦敦帝国理工虎门体育app下载官网薄膜、界面与电子器件教授。他的研究横跨材料化学、物理与工程领域,重点研究金属卤化物钙钛矿、金属氧化物半导体、可持续材料制备工艺以及新型光电器件。他主持英国工程与物理科学研究委员会-爱尔兰科学基金会(EPSRC-SFI)先进材料表征博士培训中心,并担任帝国理工工程虎门体育app下载官网与商虎门体育app下载官网的当选理事。他同时担任英国皇家化学会期刊《Journal of Materials Chemistry C》与《Materials Advances》(联合)主编。他近期的研究致力于采用环境友好的水相法合成组分、尺寸可控的钙钛矿纳米晶,同时开发金属卤化物钙钛矿的回收、循环与再利用新方案。职业生涯中,马丁已发表 150 余篇同行评审论文(H 指数 47),指导 30 余名博士生顺利毕业,并长期致力于本科教学与学生培养工作。
