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Phd Radiochemistry Jobs in Texas (NOW HIRING)

Phd Radiochemistry information

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$9

$21

$37

How much do phd radiochemistry jobs pay per hour?

As of Jul 30, 2026, the average hourly pay for phd radiochemistry in Texas is $21.95, according to ZipRecruiter salary data. Most workers in this role earn between $15.00 and $27.12 per hour, depending on experience, location, and employer.

What are some typical interdisciplinary collaborations for a PhD-level radiochemist in a research or clinical setting?

PhD radiochemists frequently work alongside professionals in nuclear medicine, medical physics, biology, and engineering to develop and optimize radiotracers for imaging and therapeutic applications. Collaboration is key, as projects often require integrating radiochemistry expertise with biological assay design, clinical trial protocols, and instrumentation development. These interdisciplinary teams allow radiochemists to contribute their synthetic and analytical skills while gaining experience in translational research and exposure to patient-oriented applications, enhancing both scientific impact and career progression.

What are the key skills and qualifications needed to thrive as a PhD Radiochemist, and why are they important?

To excel as a PhD Radiochemist, you need advanced knowledge of radiochemistry, inorganic and analytical chemistry, and a doctoral degree in chemistry or a related field. Experience with radiation detection instruments, radioactive isotope handling, and compliance with safety protocols is essential, along with familiarity with lab software and analytical tools. Strong problem-solving abilities, meticulous attention to detail, and effective teamwork and communication skills distinguish top professionals in this field. These skills ensure the safe and accurate development, analysis, and application of radiochemical materials in research, medicine, or industry.

What is the difference between Phd Radiochemistry vs Radiochemist?

AspectPhd RadiochemistryRadiochemist
Required CredentialsPhD in Radiochemistry or related fieldBachelor's or Master's in Chemistry, Radiochemistry, or related field
Work EnvironmentResearch labs, academia, industry R&DLaboratories, manufacturing, clinical settings
Industry UsageAcademic research, government agencies, industry R&DProduction, quality control, applied research

Phd Radiochemistry typically involves advanced research and development roles requiring a doctoral degree, focusing on innovative projects. Radiochemists often hold bachelor's or master's degrees and work in practical applications like radiopharmaceutical production or quality control. Both roles are essential in the radiochemistry industry but differ mainly in education level and scope of responsibilities.

What does a PhD in Radiochemistry do?

A PhD in Radiochemistry specializes in the study of radioactive materials and their chemical properties, reactions, and applications. Professionals in this field often conduct research related to nuclear medicine, environmental monitoring, and radioactive waste management. Their work can involve developing new radiopharmaceuticals for medical imaging or cancer treatment, ensuring the safe handling of radioactive substances, and advancing nuclear energy technologies. Many PhD radiochemists work in academia, government labs, hospitals, or the nuclear industry.
What are popular job titles related to Phd Radiochemistry jobs in Texas? For Phd Radiochemistry jobs in Texas, the most frequently searched job titles are:
What cities in Texas are hiring for Phd Radiochemistry jobs? Cities in Texas with the most Phd Radiochemistry job openings:

$75K - $103K/yr

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Re-posted 21 days ago


Job description

See Yourself at Telix

Physical Sciences R&D is seeking a Senior Scientist with deep expertise in organic, analytical, and radiochemistry to play a critical role in the design, development, and advancement of radiopharmaceutical programs across the Telix pipeline.

In this role, the Senior Scientist will independently lead complex experimental workstreams, contribute to programlevel scientific strategy, and solve technically ambiguous problems spanning discovery through GMPadjacent development. The position requires regular handling of radioactive materials and work within both R&D and GMP environments.

The ideal candidate is a recognized technical expert who operates with minimal supervision, mentors junior scientists, and is motivated to make highimpact contributions to the next generation of radiopharmaceutical therapeutics.

Key Accountabilities:

Scientific Leadership & Ownership

    • Serve as a technical lead for assigned projects or workstreams, driving experimental strategy, execution, and interpretation with limited oversight.
    • Apply advanced scientific judgment to design, optimize, and troubleshoot complex radiochemical and analytical processes.
    • Identify scientific risks, propose mitigation strategies, and adapt approaches in response to experimental findings.

Experimental Design & Execution

    • Independently design, execute, and document sophisticated experiments supporting radiopharmaceutical discovery and development.
    • Lead the synthesis and optimization of novel bifunctional chelators and radiolabeled compounds.
    • Ensure experimental work is conducted efficiently, safely, and in alignment with project timelines and program goals.

Analytical Method Development

    • Develop, validate, and refine advanced radioanalytical methods, including radioTLC and HPLC, to support characterization, release, and stability studies.
    • Evaluate and implement improvements to analytical approaches to increase robustness, sensitivity, and throughput.

CrossFunctional Collaboration

    • Partner closely with Quality, Manufacturing, Regulatory, and crossdisciplinary R&D teams to support program progression.
    • Provide scientific input to crossfunctional discussions, contributing to decisionmaking at the project or subprogram level.

Data Analysis, Reporting & Communication

    • Critically analyze complex datasets and translate findings into clear technical conclusions and recommendations.
    • Author and review technical reports, development summaries, and presentations for internal stakeholders and external collaborators.
    • Support documentation required for GxP, regulatory, or techtransfer activities, as applicable.

Laboratory & Operational Excellence

    • Ensure proper operation, calibration, and qualification of laboratory equipment.
    • Promote best practices in laboratory safety, radioactive material handling, and data integrity.
    • Contribute to continuous improvement initiatives within the laboratory and broader R&D organization.

Mentorship & Knowledge Sharing

    • Mentor and guide junior scientists, providing technical direction, feedback, and informal coaching.
    • Share expertise and lessons learned to elevate overall team capability and scientific rigor.

Education and Experience:

  • PhD + 5 years, MS + 6 years, or BS + 8 years of relevant industry or postdoctoral experience.
  • Demonstrated experience working with radioactive materials in an R&D and/or GMPadjacent environment.
  • Proven track record of independent scientific contribution and problem solving.

Technical Expertise

  • Advanced proficiency in synthetic organic chemistry and radiochemistry.
  • Strong experience developing and applying radioanalytical methods (e.g., radioTLC, HPLC).
  • Expertise in statistical experimental design, data interpretation, and structured problem solving (e.g., Six Sigma methodologies).

Professional Capabilities

  • Experience leading projectlevel or workstreamlevel scientific initiatives.
  • Strong written and verbal communication skills, with the ability to clearly convey complex technical concepts.
  • Demonstrated ability to influence without authority and operate effectively in a matrixed, fastpaced environment.

Key Capabilities:

  • Inclusive mindset: Demonstrate an understanding and appreciation for diversity, and actively work to create an inclusive environment where everyone feels valued and respected.
  • Adaptability: Comfortable working in a dynamic, global environment across multiple time zones, able to adjust to changing priorities, and willing to take on new challenges.
  • Strong communication skills: Able to communicate effectively with colleagues and stakeholders at all levels, using clear and concise language.
  • Creativity and innovation: Possess a willingness to think outside the box, take initiative and come up with unique and creative solutions to challenges.
  • Commitment to excellence: Take pride in your work and consistently strive for excellence in everything you do.
  • Results-oriented: Driven to achieve goals and objectives, with a strong focus on delivering measurable results.
  • Ethical behavior: Act with integrity and demonstrate a commitment to ethical behavior in all interactions with colleagues and stakeholders.
  • Collaboration: Work effectively as part of a team, actively sharing knowledge and expertise to achieve common goals.
  • Resilience: Ability to work under pressure and with tight timelines; Demonstrate the ability to bounce back from setbacks and persevere in the face of challenges.
  • Continuous learning: Show a commitment to ongoing learning and professional development, continually seeking out opportunities to expand your knowledge and skills.