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Nanotechnology Engineering Jobs in Indiana (NOW HIRING)

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Nanotechnology Engineering information

See Indiana salary details

$38.1K

$69.3K

$98K

How much do nanotechnology engineering jobs pay per year?

As of Sep 8, 2026, the average yearly pay for nanotechnology engineering in Indiana is $69,314.00, according to ZipRecruiter salary data. Most workers in this role earn between $58,000.00 and $79,000.00 per year, depending on experience, location, and employer.

What is nanotechnology engineering?

Nanotechnology engineering is a field that involves the design, development, and application of materials and devices on the scale of nanometers—one billionth of a meter. It combines principles from physics, chemistry, biology, and engineering to manipulate matter at the atomic and molecular level. Nanotechnology engineers work on creating new materials, improving existing products, and developing innovative solutions in areas such as medicine, electronics, energy, and the environment. The field is highly interdisciplinary and rapidly evolving, offering diverse career opportunities.

What are the key skills and qualifications needed to thrive as a nanotechnology engineer?

To thrive as a Nanotechnology Engineer, you need a strong background in physics, chemistry, materials science, and engineering, usually supported by at least a bachelor's degree in a related field. Proficiency with tools such as electron microscopes, atomic force microscopes, and simulation software, as well as knowledge of cleanroom protocols and possibly certifications in nanofabrication, is essential. Strong analytical thinking, attention to detail, and effective teamwork and communication skills help professionals excel in research and cross-disciplinary projects. These skills and qualifications are crucial for developing innovative solutions, maintaining safety, and advancing applications in sectors like medicine, electronics, and energy.

What are some common challenges faced by nanotechnology engineers when working on interdisciplinary teams?

Nanotechnology engineers frequently collaborate with professionals in fields such as chemistry, biology, materials science, and physics. A common challenge is communicating complex technical concepts across disciplines with differing terminologies and priorities. Successfully bridging these gaps requires strong teamwork, adaptability, and an openness to learning from others. Building these skills not only enhances project outcomes but also creates more opportunities for career advancement in this rapidly evolving field.

What is the difference between Nanotechnology Engineering vs Materials Science Engineering?

AspectNanotechnology EngineeringMaterials Science Engineering
Required CredentialsBachelor's or higher in Nanotechnology or related fieldsBachelor's or higher in Materials Science or Engineering
Work EnvironmentResearch labs, manufacturing, R&D departmentsManufacturing plants, research labs, product development
Industry UsageElectronics, medicine, energy, materialsAutomotive, aerospace, consumer goods, manufacturing
Common Search/ComparisonYesYes

Nanotechnology Engineering and Materials Science Engineering share overlapping skills and work environments, often collaborating in research and development. However, Nanotechnology Engineering focuses specifically on manipulating matter at the atomic and molecular levels, while Materials Science Engineering covers a broader range of materials and their properties. Both fields are vital in advancing technology and innovation, with Nanotechnology Engineering offering specialized expertise in nanoscale applications.

Is nanotechnology engineering a good career?

Nanotechnology engineering is a growing field that involves designing and manipulating materials at the atomic and molecular levels, often requiring knowledge of physics, chemistry, and materials science. It offers opportunities in industries such as electronics, healthcare, and energy, with a demand for specialized skills and advanced degrees. Career prospects are favorable for those with strong technical backgrounds and experience with tools like microscopy and nanofabrication techniques.

What does a nanotechnology engineer do?

A nanotechnology engineer designs, develops, and tests materials and devices at the nanoscale, typically involving manipulation of structures less than 100 nanometers. They work with tools like electron microscopes and focus on applications in electronics, medicine, and materials science, often requiring knowledge of physics, chemistry, and engineering principles.

What are popular job titles related to Nanotechnology Engineering jobs in Indiana?

For Nanotechnology Engineering jobs in Indiana, the most frequently searched job titles are:

What job categories do people searching Nanotechnology Engineering jobs in Indiana look for?

The top searched job categories for Nanotechnology Engineering jobs in Indiana are:

What cities in Indiana are hiring for Nanotechnology Engineering jobs?

Cities in Indiana with the most Nanotechnology Engineering job openings:

Infographic showing various Nanotechnology Engineering job openings in Indiana as of August 2026, with employment types broken down into 89% Full Time, 7% Part Time, 3% Contract, and 1% Nights. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $69,314 per year, or $33.3 per hour.

Postdoctoral Fellow in Quantum Materials and Quantum Optics

Indiana University Academic Positions

Bloomington, IN • Hybrid

$45K - $61K/yr

Full-time

Posted 11 days ago


Job description

Position Details
Title Postdoctoral Fellow in Quantum Materials and Quantum Optics Appointment Status Non-Tenure Track Department IU Bloomington Intelligent Systems Engineering Location Bloomington Position Summary
Working under the direction of Dr. Iqbal Utama, the postdoctoral fellow will lead experimental research focused on low-dimensional, molecular, and hybrid organic-inorganic materials for applications in quantum sensing, quantum photonics, and related quantum technologies. The successful candidate will design, fabricate, and characterize quantum materials and nanoscale devices, contribute to scientific publications and research proposals, and mentor graduate and undergraduate students in a collaborative research environment.
This is an outstanding opportunity for early-career researchers to advance an independent research program, build a strong publication record, and contribute to cutting-edge developments in quantum science and technology within a highly interdisciplinary and well-supported academic setting.
Specific Duties:
  • Conduct experimental research on low-dimensional, molecular, and hybrid organic-inorganic materials for quantum sensing, quantum photonics, and related quantum technologies.
  • Design, fabricate, and characterize quantum-material and nanoscale devices using techniques that may include materials synthesis and processing, nanofabrication, optical spectroscopy, scanning probe microscopy, magnetometry, and optically-detected magnetic resonance.
  • Develop experimental protocols and assist with the setup, operation, maintenance, and documentation of laboratory instruments.
  • Analyze and interpret experimental data and maintain complete, organized records of experiments, procedures, and results.
  • Prepare manuscripts for publication in peer-reviewed journals and present research findings at scientific meetings.
  • Contribute to the preparation of research proposals, technical reports, and collaborative projects.
  • Mentor graduate and undergraduate students and provide training in relevant laboratory methods.
  • Contribute to a safe, collegial, collaborative, and intellectually engaged laboratory environment.

Anticipated start date: December 1, 2026, or a mutually agreed date thereafter.
Anticipated end date: November 30, 2027, based on a December 1, 2026 start date.
Appointment term: The initial appointment will be for 12 months. The appointment may be renewed annually, subject to satisfactory performance and availability of funding.
Basic Qualifications
Required Education:
  • Ph.D. completed by the appointment start date. This degree must be in Physics; Chemistry; Materials Science and Engineering; Electrical Engineering; Chemical Engineering; Applied Physics; or a closely related field.

Required Experience:
  • Relevant hands-on experimental research experience obtained during the candidate's doctoral training is required and is described in the position qualifications.
Department Contact for Questions
Questions may be sent to: Dr. Iqbal Utama (iqutama@iu.edu)
Additional Qualifications
Preferred Qualifications: 
  • Experience in one or more of the following areas is preferred:
  • Two-dimensional or other low-dimensional materials.
  • Molecular, organic, or hybrid organic-inorganic materials.
  • Cleanroom nanofabrication, including electron-beam or optical lithography, thin-film deposition, etching, or atomic layer deposition.
  • Optical spectroscopy, confocal microscopy, time-resolved spectroscopy, or single-photon measurements.
  • Optically detected magnetic resonance, spin resonance, quantum sensing, or scanning-probe magnetometry.
  • Scanning probe microscopy and related techniques.
  • Construction, modification, automation, or troubleshooting of optical measurement systems.
  • Simulation of light-matter interactions using software packages such as Lumerical FDTD and COMSOL Multiphysics
Salary and Rank Special Instructions
Applications received by October 5, 2026 will receive full consideration. However, we will continue accepting applications until the position is filled.
Interested candidates should review the application requirements and apply online at:
https://indiana.peopleadmin.com/postings/34134

We will continue accepting applications until the position is filled.
Application Materials:
1) CV
2) Cover Letter
3) Contact information for at least 3 references
For Best Consideration Date 10/05/2026 Expected Start Date 12/01/2026 Posting Number IU-101649-2026