1

Crystal Growth Phd Jobs (NOW HIRING)

Design and automate novel crystal growth, processing, and analysis techniques, with a focus on ... PhD or Masters in Physics, Chemistry, Optical Science and Engineering, Electrical Engineering, or ...

Design and automate novel crystal growth, processing, and analysis techniques, with a focus on ... PhD or Masters in Physics, Chemistry, Optical Science and Engineering, Electrical Engineering, or ...

We are insourcing solar cell manufacturing end-to-end, from crystal growth and ingot production ... Master's degree or PhD in materials science, chemical engineering, or a related field. * Hands-on ...

We are insourcing solar cell manufacturing end-to-end, from crystal growth and ingot production ... Master's degree or PhD in materials science, chemical engineering, or a related field. * Proven ...

We are insourcing solar cell manufacturing end-to-end, from crystal growth and ingot production ... Master's degree or PhD in materials science, chemical engineering, or a related field. * Proven ...

We are insourcing solar cell manufacturing end-to-end, from crystal growth and ingot production ... Master's degree or PhD in materials science, chemical engineering, or a related field. * Proven ...

Showing results 21-40

Crystal Growth Phd information

See salary details

$72.5K

$148.4K

$215K

How much do crystal growth phd jobs pay per year?

As of Sep 10, 2026, the average yearly pay for crystal growth phd in the United States is $148,429.00, according to ZipRecruiter salary data. Most workers in this role earn between $113,000.00 and $171,500.00 per year, depending on experience, location, and employer.

What does a Crystal Growth PhD do?

A Crystal Growth PhD conducts advanced research on the synthesis and characterization of crystals, including their growth mechanisms, properties, and potential applications. They design and perform experiments to grow high-quality crystals, often for use in electronics, optics, or materials science. Their work may involve developing new techniques for crystal growth, analyzing crystal structures using various instruments, and publishing their findings in scientific journals. Collaboration with other scientists and presenting results at conferences are also common responsibilities.

What are the key skills and qualifications needed to thrive as a Crystal Growth PhD?

To thrive as a Crystal Growth PhD, you need a strong background in materials science, solid-state physics, and chemistry, typically supported by a doctoral degree in a related field. Familiarity with advanced crystal growth techniques (such as Czochralski or Bridgman methods), characterization tools (like X-ray diffraction and electron microscopy), and data analysis software is essential. Strong problem-solving abilities, meticulous attention to detail, and effective communication skills are crucial soft skills for success in this role. These competencies are vital for conducting high-quality research, optimizing crystal production, and effectively sharing findings with the scientific community.

What are some common research challenges faced by Crystal Growth PhD candidates, and how can they be overcome?

Crystal Growth PhD candidates frequently encounter challenges such as controlling crystal quality, reproducibility of results, and managing complex instrumentation. Overcoming these obstacles often involves developing a strong understanding of crystallization processes, maintaining meticulous experimental records, and collaborating closely with materials scientists and engineers. Regular discussions with advisors and participation in research groups can also provide valuable feedback and troubleshooting support, helping candidates refine their techniques and achieve consistent outcomes.

What is the difference between Crystal Growth Phd vs Materials Scientist?

AspectCrystal Growth PhdMaterials Scientist
Required CredentialsPhD in Materials Science, Chemistry, or related fieldBachelor's or Master's in Materials Science, Chemistry, or related field; PhD preferred for advanced roles
Work EnvironmentResearch labs, academic institutions, industrial R&DResearch labs, manufacturing facilities, industry R&D
Industry UsageSpecialized in crystal growth techniques, materials developmentBroader focus on material properties, testing, and application

While both roles involve materials research, Crystal Growth PhDs focus specifically on developing and understanding crystal growth processes, often in academic or specialized industrial settings. Materials Scientists have a broader scope, working on various material properties and applications across industries. The choice depends on whether you prefer specialized crystal research or a wider materials focus.

What are popular job titles related to Crystal Growth Phd jobs?

For Crystal Growth Phd jobs, the most frequently searched job titles are:

Infographic showing various Crystal Growth Phd job openings in the United States as of September 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $148,429 per year, or $71.4 per hour.

Research Scientist III

Redmond, WA โ€ข On-site

Infotech Sourcing
IT Servicesย โ€ขย 11 - 50 employees

Full-time

Re-posted 4 days ago


Job description

Research Scientist III

Location: Redmond WA Onsite

Duration: 12 months with possible extension.

.
Meta Reality Labs brings together a world-class team of researchers, developers, and engineers to create the future of virtual and augmented reality, which together will become as universal and essential as smartphones and personal computers are today. And just as personal computers have done over the past 45 years, AR and VR will ultimately change everything about how we work, play, and connect. We are developing all the technologies needed to enable breakthrough AR glasses and VR headsets, including optics and displays, computer vision, audio, graphics, brain-computer interface, haptic interaction, eye/hand/face/body tracking, perception science, and true telepresence. Some of those will advance much faster than others, but they all need to happen to enable AR and VR devices that are so compelling they become an integral part of our lives.
Beyond working within current paradigms to realize our vision, Reality Labs is heavily
invested in materials research and development at the fundamental level. This involves,
but is not limited to, designing and characterizing materials yet to be discovered, for highly
specific applications.
Responsibilities:
The position involves designing, building and automating an established workflow for the experimental screening of organic materials. Built on current in-house processes, this will streamline data acquisition required for the development of novel optoelectronic materials.
Develop next-generation optoelectronic materials with an emphasis on advanced design, fabrication, and analysis, to prove new concepts and understand the potential impact of those concepts.
Collaborate with the larger Meta Reality Labs Research team to holistically understand current goals, limitations, and bottlenecks in the wider AR/VR space.
Build with and develop an intimate understanding of equipment designed for high-throughput experiments.
Design and automate novel crystal growth, processing, and analysis techniques, with a focus on highly specific components and devices.
Communicate results internally and with external partners.
Assist in the translation of research results to practical application in Meta product development.
Minimum Qualifications:
PhD or Masters in Physics, Chemistry, Optical Science and Engineering, Electrical Engineering, or relevant technical field.
Must obtain work authorization in the country of employment at the time of hire and maintain ongoing work authorization during employment.
Experience programming hardware interfaces (e.g., serial/I2C/SPI communication, DAQ systems, motion control) using Python, LabVIEW, C, or similar languages.
2+ years experience in at least one of the following areas: chemistry, materials, organic materials, crystallization, nucleation, solid state analysis, optoelectronic materials.
2+ years experience, experimental laboratory work (i.e., demonstrated ability to take concepts, adapt them and translate them to the bench-top).
Preferred Qualifications:
Proven track record of achieving significant results as demonstrated by grants, fellowships, patents, as well as first-authored publications at relevant high-impact journals.
Experience with solid-state analysis: e.g. diffuse reflectance, XRD, spectroscopy, DSC, optical microscopy.
Experience with crystallographic software (e.g. CCDC suite, BGMN, Profex, Olex2).
Experience with HPLC, LC-MS, UV/Vis and/or GC.
Experience working and communicating cross functionally in a team environment.
Experience with crystal growth and related concepts (e.g. supersaturation, nucleation, etc.).

Top 3 must-have

HARD skills:Experience programming hardware interfaces (e.g., serial/I2C/SPI communication, DAQ systems, motion control) using Python, LabVIEW, C, or similar languages.
2+ years experience in at least one of the following areas: chemistry, materials, organic materials, crystallization, nucleation, solid state analysis, optoelectronic materials.
2+ years experience, experimental laboratory work (i.e., demonstrated ability to take concepts, adapt them and translate them to the bench-top).

Good to have skills:

Working with organic crystals - and solubility of compounds
Previous experience with CAD software is asset
Experience with frequent report writing

PhD or Masters in Physics, Chemistry, Optical Science and Engineering, Electrical Engineering, or relevant technical field