City University of Hong Kong · College of Engineering

Advancing nuclear safety through materials, modelling and multidisciplinary research.

ANSD connects fundamental science with engineering solutions for safer nuclear systems, resilient materials and sustainable technologies.

Our purpose

Research that moves from atomic behaviour to societal safety.

We bring together expertise in nuclear safety, risk assessment, materials under extreme environments, computational materials science and sustainable applications. Our goal is to build research partnerships with lasting impact in Hong Kong, the Greater Bay Area and the international community.

Vision and mission

Research

Four connected areas of inquiry

From risk and reliability to material behaviour at the atomic scale, our research addresses safety as a connected system.

02

Materials in Extreme Environments

How irradiation, temperature and mechanical loading reshape structure and performance.

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03

Computational Materials Science

Atomistic and multiscale modelling that connects mechanisms with engineering response.

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04

Sustainable Technologies

Smart materials, energy harvesting and storage, nanostructures and medical applications.

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Collaborative research platforms

Shared facilities that turn questions into evidence.

These representative platforms are hosted and operated by ANSD’s closely collaborating units. ANSD researchers access them through collaboration; they are not ANSD-owned facilities.

Computing, SEM-FIB-EBSD, ion milling, high-resolution electron microscopy and mechanical testing equipment

02 · Characterisation and testing

Integrated materials analysis

Computation, microscopy, focused-ion-beam preparation, ion milling and mechanical testing provide connected routes from microstructure to measured performance.

Collaborative partner platforms: left, an ultra-high-temperature lead-bismuth corrosion system; right, views (a) and (b) of an ultra-high-temperature ion accelerator
English guide to the partner-platform image

Left image

Ultra-high-temperature lead–bismuth corrosion system

Labels: Corrosion vessel · Chiller · Heating power supply · Test stand · Control power supply

Right image (a)

Ultra-high-temperature ion accelerator

View (a) of the collaborating unit’s accelerator platform.

Right image (b)

Ultra-high-temperature ion accelerator

View (b) of the same collaborating unit’s accelerator platform.

03 · Collaborative partner platforms

Corrosion and irradiation partner platforms

These specialised high-temperature lead–bismuth corrosion and ion-irradiation facilities are partner platforms hosted and operated by ANSD’s collaborating units, not ANSD-owned facilities. ANSD researchers access them through collaboration to investigate degradation mechanisms relevant to advanced nuclear-energy systems.

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ANSD researchers and collaborators in a group photograph by the waterfront
ANSD researchers and collaborators · Hong Kong

Our research team

People advancing materials for demanding conditions.

Led by the Centre Director, ANSD’s current research team brings together six Postdoctoral Fellows—including one part-time appointment—working across complex alloys, irradiation response, nanomechanics and materials design.

Connect

Collaborate with ANSD

Room 1511, Yellow Zone, G/F, Yeung Kin Man Academic Building, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong

+852 3442 8071 jijkai@cityu.edu.hk
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