Overview
In this role you will strengthen solid-state science by applying molecular-level insight to design robust pharmaceutical materials across oral and inhalation platforms. You will join a global team, combining hands-on experimentation with computational methods to interpret material behavior and its impact on product performance. You will translate mechanistic understanding into practical material, process and product-performance control for clinical through commercial phases. This role offers opportunities to shape development decisions, collaborate cross-functionally, and contribute to regulatory readiness.
Responsibilities
- Lead solid-state science activities underpinning drug product projects and meet milestones in complex amorphous/disordered systems
- Identify Critical Molecularly Driven Material Attributes affecting performance and manufacturability
- Design laboratory experiments to assess solid-state risks and drug–excipient interactions
- Deconvolute how attributes influence performance (wetting, hydration, dissolution, supersaturation, recrystallisation)
- Investigate how molecular descriptors and processing conditions affect material formation and surface composition
- Translate mechanistic insight into robust material, process and product-performance control for stability and continuous manufacturing
- Drive digital-first strategies using in silico approaches alongside experiments to accelerate decisions
- Represent solid-state science on drug product projects, integrate risk-based material strategies, and engage external collaborators
- Author and review technical documentation for development, regulatory submissions, and responses
- Mentor and coach global solid-state science community through knowledge sharing and collaboration
Key requirements
- PhD or MSc with extensive experience in pharmaceutical sciences, chemistry, materials science, spectroscopy or related field
- Deep expertise in molecular-level characterization of complex pharmaceutical materials (amorphous, disordered, heterogeneous)
- Hands-on solid-state characterization experience and ability to integrate diverse datasets
- Understanding of how material attributes and interactions influence developability, stability, dissolution and performance
- Ability to interpret data, connect molecular mechanisms to product implications, and propose practical controls
- Proven ability to lead scientific activities in multidisciplinary teams and deliver high-quality outcomes
- Strong communication skills to translate complex data into actionable recommendations
- Digital fluency with data-driven tools, computational techniques, and AI-enabled workflows
- curious and collaborative mindset
- ability to frame the right questions and choose appropriate approaches
- clear scientific communication and stakeholder engagement
- Molecular-level solid-state characterization
- Amorphous and disordered system analysis
- Molecular modelling and informatics
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