Research Assistant/Associate in Sustainable & Scalable Industrial Biocatalysis - Job Opportunity at Imperial College London

White City, United Kingdom
Full-time
Mid-level
Posted: February 11, 2025
On-site
GBP 43,003 - 56,345 per year

Benefits

Enhanced annual leave (39 days) exceeding UK market standard
Competitive pension scheme with employer contributions
Season ticket loan for transportation cost management
Comprehensive family leave policies
On-site leisure facilities promoting work-life balance
Cycle-to-work scheme supporting sustainable commuting
Professional development resources and career support

Key Responsibilities

Lead development of Flash Thermal Racemization process for pharmaceutical manufacturing
Conduct advanced research in continuous flow processing for high-value chemicals
Collaborate with industrial partners including potential placement at ALMAC Northern Ireland
Perform kinetic experiments and flow chemistry optimization
Contribute to sustainable process development for chiral active pharmaceutical ingredients
Engage in cross-functional research with chemical engineering teams

Requirements

Education

PhD in chemistry, chemical engineering or related field (for Research Associate); First/Masters degree (for Research Assistant)

Experience

Research, industrial or commercial experience in related field

Required Skills

Practical experience in asymmetric synthesis Kinetic experiments Flow chemistry Research methods and best practices Continuous flow expertise
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Sauge AI Market Intelligence

Industry Trends

Continuous flow chemistry is experiencing rapid adoption in pharmaceutical manufacturing, driven by efficiency and sustainability demands Integration of AI and automation in process optimization is becoming standard in industrial chemistry Sustainable manufacturing processes are receiving increased investment due to regulatory pressure and ESG considerations

Salary Evaluation

The offered salary range aligns with UK academic research positions but is slightly below industry equivalents. Market rate for similar industrial positions typically ranges from GBP 50,000-70,000

Role Significance

Typically part of a 5-10 person research group within larger consortium structure
Mid-level research position with significant project ownership and potential for rapid advancement through industrial collaboration

Key Projects

Scale-up of novel chemical processes for industrial implementation Optimization of continuous flow systems for pharmaceutical production Development of sustainable manufacturing methods

Success Factors

Strong theoretical foundation in organic chemistry and process engineering Ability to bridge academic research with industrial applications Experience with modern analytical techniques and process optimization Strong collaborative skills for industry-academia partnerships

Market Demand

High demand with growing opportunities as pharmaceutical companies invest in continuous manufacturing technologies

Important Skills

Critical Skills

Flow chemistry expertise: Essential for process development and optimization Catalysis knowledge: Core to developing efficient chemical processes Scale-up experience: Critical for industrial implementation

Beneficial Skills

Automation and control systems Sustainability assessment methods Project management Industrial collaboration experience

Unique Aspects

Direct industry collaboration through IConIC consortium
Access to cutting-edge flow chemistry facilities
Potential for industrial placement
Focus on commercially relevant process development

Career Growth

2-4 years in role with potential for industrial transition within 3-5 years

Potential Next Roles

Senior Research Scientist Process Development Manager Technical Lead in Industrial Chemistry R&D Team Leader

Company Overview

Imperial College London

Imperial College London is a world-leading science-focused institution with exceptional research facilities and industry connections

Top 10 global university with strong industry partnerships and research commercialization track record
Major influence in UK research landscape with significant European research funding
High-performance academic environment with strong emphasis on industrial collaboration and practical applications
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