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Biomaterials Jobs in Tennessee (NOW HIRING)

Deep knowledge of biomechanics, biomaterials, bioinstrumentation, medical imaging, tissue engineering, physiological systems modeling, biostatistics, and regulatory affairs. Ability to explain signal ...

Deep knowledge of biomechanics, biomaterials, bioinstrumentation, medical imaging, tissue engineering, physiological systems modeling, biostatistics, and regulatory affairs. Ability to explain signal ...

Deep knowledge of biomechanics, biomaterials, bioinstrumentation, medical imaging, tissue engineering, physiological systems modeling, biostatistics, and regulatory affairs. Ability to explain signal ...

Deep knowledge of biomechanics, biomaterials, bioinstrumentation, medical imaging, tissue engineering, physiological systems modeling, biostatistics, and regulatory affairs. Ability to explain signal ...

Biomaterials information

See Tennessee salary details

$13

$16

$22

How much do biomaterials jobs pay per hour?

As of Aug 28, 2026, the average hourly pay for biomaterials in Tennessee is $16.86, according to ZipRecruiter salary data. Most workers in this role earn between $14.86 and $17.69 per hour, depending on experience, location, and employer.

What is a biomaterials?

A Biomaterials job involves researching, designing, and developing materials that interact with biological systems for medical and healthcare applications. Professionals in this field work on materials for implants, prosthetics, drug delivery systems, and tissue engineering. They collaborate with scientists, engineers, and medical professionals to enhance biocompatibility, durability, and functionality. Careers in biomaterials can be found in medical device companies, research institutions, and biotechnology firms.

What are the key skills and qualifications needed to thrive in biomaterials?

To thrive in a Biomaterials role, a strong background in materials science, biomedical engineering, or a related field is essential, often supported by an advanced degree. Familiarity with laboratory techniques, characterization tools like SEM/TEM, and regulatory standards such as ISO 10993 is highly valued. Strong problem-solving skills, teamwork, and the ability to communicate complex ideas clearly will set you apart. These skills are vital for designing safe, innovative materials that address medical needs while meeting industry regulations.

What are the typical career advancement paths for professionals in biomaterials?

Professionals in biomaterials often start as research associates, engineers, or scientists, and can advance to senior research positions, team leads, or project managers as they gain experience. Many also move into specialized roles focusing on regulatory affairs, product development, or quality assurance, depending on their interests and skill sets. Some pursue further education to transition into academic or leadership positions, while others move into business development or consulting within the biomedical and pharmaceutical industries. In most organizations, career progression involves continually expanding your technical expertise, demonstrating leadership potential, and contributing to successful product innovations.

What do biomaterials do?

Biomaterials professionals develop and design materials used in medical devices, implants, and tissue engineering to interact safely with the body. They work with materials such as polymers, ceramics, and metals to improve biocompatibility, durability, and functionality in healthcare applications.

What are the most commonly searched types of Biomaterials jobs in Tennessee?

The most popular types of Biomaterials jobs in Tennessee are:

What are popular job titles related to Biomaterials jobs in Tennessee?

For Biomaterials jobs in Tennessee, the most frequently searched job titles are:

Infographic showing various Biomaterials job openings in Tennessee as of August 2026, with employment types broken down into 75% Full Time, and 25% Part Time. Highlights an 75% In-person, and 25% Remote job distribution, with an average salary of $35,064 per year, or $16.9 per hour.

Assistant Research Professor, Biomedical Engineering

Memphis, TN


University of Memphis
Colleges, Universities, and Professional Schools • 1 - 5K employees

8.9

Company rating: 8.9 out of 10

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Great coworkers

People enjoy working here

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$300K/yr

Full-time

Posted 8 days ago


Job description

Position Overview

The Herff College of Engineering at The University of Memphis invites applications for a dynamic, highly collaborative Assistant Research Professor (ARP). This specialized, non-tenure-track faculty position serves as the vital technical and intellectual bridge across three core departments: Biomedical Engineering (BME), Civil Engineering (CIVL), and Mechanical Engineering (MECH). 

The successful candidate will manage a Shared Materials Lab environment and establish a central "Fabrication-to-Function" nexus. The primary focus of this role is to accelerate interdisciplinary research, generate critical preliminary data for federal grants, and pioneer the development of sustainable, bio-inspired materials alongside advanced additive manufacturing techniques. 

Core Strategic Themes

The ARP will center their research, fabrication efforts, and grant writing around four core thematic pillars: 

  1. Bio-regenerative scaffolds for tissue engineering. 
  2. Sustainable "Green" composites for civil infrastructure applications. 
  3. Multi-scale fabrication of highly functional materials. 
  4. Multi-scale mechanical characterization of hybrid materials. 
     

Key Collaborations

The ARP will work with a robust, pre-established cohort of materials science and engineering experts, including but not limited to: 

  • Biomedical Engineering: Dr. Amber Jennings (Lead Mentor, Infection/Biomaterials), Dr. Joel Bumgardner (Dental Regeneration), Dr. Gary Bowlin (Tissue Templates/Electrospinning), and Dr. Hayden Carlton (Thermal Therapy). 
  • Civil Engineering: Dr. Farhad Jazei (Co-Lead, Sustainable Infrastructure) and Dr. Yuankai Huang (Sensors & Functionalized Materials). 
  • Mechanical Engineering: Dr. Yuan Gao (Technical Lead, Microfluidics/MPS), Dr. Gladius Lewis (Bone Cement/Stents), and Dr. Ranganathan Gopalakrishnan (Aerosol Delivery & Processes). 
  • External Synergy: Potential to facilitate broader inter-college collaborations with faculty in Physics, Chemistry, and Biology. 
     

Candidates must submit their application through https://workforum.memphis.edu. Click on the full-time faculty menu to find the Biomedical Engineering posting. Applications must include a cover letter, a comprehensive curriculum vitae, the full names and contact information (address, phone number, and e-mail address) of three professional references, and a statement on research philosophy.  Screening of applications will begin in August 2026 and will continue until the position is filled.

The University of Memphis is a leading, student-centered, urban public R1 research institution. Located in Memphis, Tennessee, on 1,160 acres. The University serves a population of nearly 20,000 students and 2,500 employees, including more than 1,000 full-time faculty members. The University offers bachelor's degrees in more than 230 areas of study, master's degrees in more than 50 subjects and doctoral degrees in 26 disciplines; supported an institutional record of more than $100 million in research awards for FY24; and has an operating budget of close to $500 million.

Minimum Qualifications

  • Education: Ph.D. in Materials Science, Biomedical Engineering, Mechanical Engineering, Civil Engineering, or a closely related engineering discipline.
  • Experience: Proven track record in advanced additive manufacturing, multi-scale material fabrication, and mechanical characterization protocols. 
  • Skills: Demonstrated ability to write and submit competitive federal grant proposals (NIH, NSF, USDA). 
    • Strong cross-disciplinary communication skills, with the agility to interface between micro-biological and macro-structural application spaces. 
    • Experience managing shared laboratory spaces and mentoring student researchers. 

1. Proposal Development & Financial Sustainability 

  • High-Frequency Grant Writing: Serve as a primary driver for an aggressive external proposal pipeline, aiming for at least five external submissions per year targeting the NSF, NIH, and USDA. 
  • Interdisciplinary Team Building: Co-author multi-departmental, multi-investigator grant proposals (e.g., NSF GCR, NIH P01) to bridge BME, CIVL, and MECH expertise. 
  • Targeted Funding Goals: Drive the strategic target of securing over $2.5M in requested funds over 24 months, with an expectation to secure at least one major award exceeding $300,000 by the end of Year 2. 
  • Transition to Independence: Actively manage the position's funding transition from 100% institutional support to 50% external grant funding by Month 12, and 100% by Month 24. 
     

2. Research, Fabrication & Lab Management 

  • Rapid Preliminary Data Generation: Pivot efficiently between the microscopic demands of drug delivery systems/biomaterials and the macroscopic requirements of civil infrastructure to provide high-quality preliminary data for faculty submissions. 
  • Shared Materials Lab Supervision: Manage the daily operations of the Shared Materials Lab environment. 
  • Interdisciplinary Cross-Pollination: Convene and facilitate weekly "sandpit" meetings for BME, CIVL, and MECH students and faculty to brainstorm fabrication-application fits and streamline characterization protocols. 
  • Contingency & Industry Liaison: If federal timelines experience delays, pivot strategically toward generating industry-sponsored research contracts by providing fee-for-service medical device testing and validation for private sector partners. 
     

3. Scholarly Output & Mentorship 

  • High-Impact Publications: Disseminate research by maintaining a steady publication record of at least three peer-reviewed articles per year in premier journals (e.g., Biomaterials, Acta Materialia, Advanced Functional Materials). 
  • Conference Presentations: Present pioneering fabrication methodologies and findings at prestigious national and international venues, such as the Society for Biomaterials, Orthopaedic Research Society (ORS), and Materials Research Society (MRS). 
  • Student Mentorship: Serve as a technical mentor for both undergraduate and graduate student-led research initiatives across diverse engineering backgrounds. 


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