Work with thought leaders and academic experts in Physical and Theoretical Chemistry

Companies can greatly benefit from collaborating with experts in Physical and Theoretical Chemistry. These researchers possess in-depth knowledge of chemical processes and can provide valuable insights into complex problems. Here are some ways companies can collaborate with academic researchers in this field: 1. Research and Development: Academic researchers can contribute to the development of new products and technologies by applying their expertise in Physical and Theoretical Chemistry. 2. Problem Solving: Companies facing challenges related to chemical processes can seek the assistance of experts to analyze and solve complex problems. 3. Process Optimization: Researchers can help optimize manufacturing processes by applying their knowledge of chemical reactions and thermodynamics. 4. Material Design: Academic researchers can assist in designing new materials with specific properties, such as improved durability or enhanced conductivity. 5. Data Analysis: Experts in Physical and Theoretical Chemistry can analyze large datasets to extract meaningful insights and patterns. 6. Quality Control: Researchers can contribute to quality control processes by developing analytical methods and ensuring product consistency. 7. Environmental Impact Assessment: Companies can collaborate with experts to assess the environmental impact of their processes and develop sustainable solutions. 8. Training and Education: Academic researchers can provide training and education to company employees, keeping them updated with the latest advancements in the field. By collaborating with academic researchers in Physical and Theoretical Chemistry, companies can gain a competitive edge, enhance their research capabilities, and solve industry-specific challenges.

Researchers on NotedSource with backgrounds in Physical and Theoretical Chemistry include Mohammad Imran Khan, Luciano Dibona, Ph.D, Keisha Walters, Aimee Eggler, Keiran Thompson, Edward Elliott, Ph.D., Joshua Cohen, Xiaolei Wang, Ammon Posey, Michael Hickner, Dr. Swati Deswal, Ph.D., and Fábio Medeiros.

Luciano Dibona, Ph.D

Santiago
7 Years Experience
Highly motivated young professional with a PhD in Chemistry and specialized in Photobiological aspects of Life Sciences and Agriculture on Crop protection.
Education

Pontificia Universidad Católica de Chile

PhD Chemistry, Facultad de Química y de Farmacia

Santiago

Universidad de Tarapaca - Campus Saucache

Químico/Licenciado en Química, Departamento de Química

Arica
Experience

IQS

Postdoctoral Researcher / March, 2022Present

Pontificia Universidad Católica de Chile

R+D Project Director / January, 2021April, 2023

R&D Project director in VIU Project: “Development of fungicidal formulations based on photoactive polymers (LEAPs) for application in Agriculture”. Pontificia Universidad Católica de Chile.

Pontificia Universidad Católica de Chile

Researcher / January, 2021June, 2023

Researcher in COPEC UC 2019.J.1273 “Photoactive biofungicides for use citrus and postharvest table grapes” Pontificia Universidad Católica de Chile

Most Relevant Research Expertise
Physical and Theoretical Chemistry
Other Research Expertise (6)
Antimicrobial Photodynamic Therapy
Physical and Theoretical Chemistry
Biochemistry
Plant Science
Horticulture
And 1 more
About
With more than 5 years of background in the field, I'm committed to drive scientific advances into impactful innovation for the industry and the market through knowledge and technology transfer. Experience as a consultant in formulation of R&D projects with a focus on teamwork, collaboration, and communication skills. Works with an analytical mindset to deliver meaningful results. Experience in designing and evaluating industry-driven scientific research and intellectual property protection processes involved.

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Keisha Walters

Fayetteville, Arkansas, United States of America
27 Years Experience
University of Arkansas
Education

Clemson University

PhD, Chemical Engineering / 2005

Clemson, South Carolina, United States of America

Clemson University

BS, Biological Sciences / 1996

Clemson, South Carolina, United States of America

Clemson University

M.S., Chemical Engineering / May, 2001

Clemson, South Carolina, United States of America
Experience

University of Arkansas College of Engineering

Endowed Chair and Professor of Chemical Engineering / August, 2021Present

University of Oklahoma

Professor of Chemical, Biological and Materials Engineering / 20162021

Developing a world-class research program in stimuli reponsive polymers and polymer-grafted nanoparticles for biomedical, energy, and environmental applications. Committed to balance and excellence in research scholarship, teaching scholarship, and service to the profession. Passionate about instilling a love of learning and curiosity about how the world works physically in future generations.

Mississippi State University

Professor of Engineering / 20052016

Professor of Chemical Engineering who is committed to research, teaching, and service. My research is focused on polymer and nanoparticle-based material design, including ‘smart’ stimuli responsive polymers, polymer-nanoparticle constructs for biomedical and energy applications, and bio-based products such as polymers and fuels.

Most Relevant Research Expertise
Physical and Theoretical Chemistry
Other Research Expertise (35)
Materials Chemistry
Inorganic Chemistry
Polymers and Plastics
Organic Chemistry
Fluid Flow and Transfer Processes
And 30 more
About
Her research covers a broad range of topics in polymer- and nano-based materials engineering and transport modeling, which has been published in 110+ refereed technical manuscripts and presented at numerous national and international conferences. Dr. Walters’ work has been sponsored by government agencies including NSF, DOE, and DOD, and by industry partners.

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Keiran Thompson

Palo Alto, California, United States of America
10 Years Experience
Stanford University
Education

Australian National University

PhD, Physical Chemistry / 1999

Canberra, Australian Capital Territory, Australia

University of Illinois Urbana-Champaign

Postdoc / 1999

Urbana, Illinois, United States of America
Experience

Stanford University

Research Fellow / 2016Present

Snowball Trading

Head of Research / 20142016

Robo-Advisor startup applying machine learning and the latest finance research to produce dramatically more profitable portfolios for ordinary investors.

Datagmi

Chief Scientist / 20132016

Datagami is a machine learning startup, bringing insights about your data to you, in terms you already understand. Under the hood it's cutting edge algorithms and cloud services. At the front end, a disarmingly simple interface you likely already use.

Most Relevant Research Expertise
Physical and Theoretical Chemistry
Other Research Expertise (6)
Physical and Theoretical Chemistry
Colloid and Surface Chemistry
Biochemistry
Catalysis
Computer Science Applications
And 1 more
About
Keiran Thompson is a machine learning and quantum chemistry researcher. Originally from Australia, he currently works as an AI research scientist at Stanford University where he transfers machine learning knowledge from the private sector to academic research which can then be reconverted back to private sector usage. He is experienced with large scale numerical computing and has led several startups as Chief Scientist.

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Joshua Cohen

Cincinnati, Ohio, United States of America
9 Years Experience
PhD in Physics Applies Scientific Expertise to Develop ML Models for Diverse Applications
Education

Tufts University

Ph.D., Physics / July, 2018

Medford, Massachusetts, United States of America
Experience

Clarigent Health

Chief Scientific Officer / January, 2022Present

•Leads team's scientific and technical efforts for company focused on identifying mental health risks from speech data •Direct clinical mental health data collection for machine learning model development, validation, and utility assessment •Heads communication of scientific achievements through peer-reviewed publications and conference presentations

Director of Data Science / September, 2020January, 2022

•Invented novel quantitative methods to drive product changes and improve end-to-end customer experience (e.g., automatic speaker identification, transcript quality assessments, and on-topic speech detection) •Developed customer facing dashboard and data model in Microsoft PowerBI to communicate sensitive patient data •Published 2 first author articles validating machine learning models and presented findings at international conference •Principal Investigator for Phase I NIH SBIR grant investigating and mitigating machine learning model bias •Oversaw interviewing, onboarding, training, and daily tasks of 5 data scientists

Senior Data Scientist / September, 2019September, 2020

Developed and deployed ML models in Python to identify suicidal risk, depression, and anxiety from speech data •Experimented with various ML approaches (e.g., SVM, RF, and ANN) to improve model performance •Utilized advanced NLP (e.g., word embeddings and sentiment analysis) to extract meaningful features and improve accuracy •Designed and implemented ETL pipelines to efficiently extract, transform, and load large volumes of speech data

Freelance

Data Scientist / January, 2019September, 2019

Developed models to predict mouse sleep states (sleep, REM, wake) from brain and muscle signals with 96% accuracy

UES at Air Force Research Labs

Research Scientist / August, 2018September, 2019

•Lead R&D program for medical countermeasures of directed energy in 711th HPW/Force Health Protection Branch •Principal Investigator: Feasibility of Deployed Medical System Hardening to Directed Energy, In-Vitro Cellular Response to Directed Energy, Rapid Environmental Site Assessment with Readily Available Biomaterials •Characterized emissions from ammunition causing health issues with microscopic, spectroscopic, and statistical analysis

Most Relevant Research Expertise
Physical and Theoretical Chemistry
Other Research Expertise (2)
Public Health, Environmental and Occupational Health
Physical and Theoretical Chemistry
About
I am a highly motivated individual with expertise in various artificial intelligence (AI) tools, including machine learning (ML) and natural language processing (NLP). Over the course of my academic and professional career, I have developed a strong skill set in these areas, and have applied them to various domains, including mental health. At Clarigent Health, I have played a key role in developing and improving machine learning models that analyze patient speech to identify mental health concerns such as depression, anxiety, and suicide risk. In addition, I have been the principal investigator on a NIMH SBIR grant investigating machine learning model performance across different patient characteristics and settings. Moreover, I have experience in developing and implementing customer-facing dashboards using tools like PowerBI, which enable clients to interact with and derive insights from complex data sets. Through my work at Clarigent Health, I have been able to leverage my expertise in ML, NLP, and other AI-related tools to drive innovation and improve mental health outcomes through data-driven solutions.

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Xiaolei Wang

Raleigh, North Carolina, United States of America
8 Years Experience
R&D Scientist in biomedical imaging and surgical microscope development
Education

University of Science and Technology of China

Ph.D., Optics / June, 2011

Hefei

Anhui Normal University

Bachelor, Physics / July, 2006

Wuhu
Experience

Duke University

Research Scientist/Manager / June, 2019May, 2022

University of Chicago

Research Professional / April, 2016May, 2019

True Digital Surgery

Principal R&D Scientist / July, 2022January, 2024

Most Relevant Research Expertise
Physical and Theoretical Chemistry
Other Research Expertise (20)
Optical imaging system development
image analysis algorithm development
Atomic and Molecular Physics, and Optics
Mechanics of Materials
Mechanical Engineering
And 15 more
About
I am an R&D Optical Scientist and Expert specializing in Optical Imaging and Optical Microscope Development for biomedical and clinical applications. With a background in Physics and over 15 years of experience in optical science and imaging, I am passionate about pushing the boundaries of what light can achieve in the realm of medicine and healthcare. My journey in the world of optics has led me to become a leader in the research and development of next-generation optical imaging products that have a profound impact on surgical procedures and patient outcomes. My areas of expertise encompass optical physics, optical microscopy, optical metrology, photonics, and computational modeling and simulation. I've had the privilege of sharing my insights through multiple peer-reviewed publications in prestigious journals like ACS Nano, Optical Letter, and Advanced Materials. Additionally, I hold certifications in machine learning and deep learning for image analysis, allowing me to harness the power of cutting-edge technology in my work.

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Michael Hickner

20 Years Experience
Michigan State University
Education

Virginia Tech

PhD, Chemical Engineering / 2003

Blacksburg, Virginia, United States of America
Experience

Michigan State University

Rogerson Endowed Professor / January, 2023Present

The Pennsylvania State University

July, 2007December, 2022

Sandia National Laboratories

Senior Member of the Technical Staff / September, 2005June, 2007

Postdoctoral researcher / December, 2003September, 2005

Most Relevant Research Expertise
Physical and Theoretical Chemistry
Other Research Expertise (36)
polymers : 3D printing : materials chemistry : energy : water
Colloid and Surface Chemistry
Biochemistry
Catalysis
Pollution
And 31 more
About
Michael Hickner is an accomplished researcher and educator with an extensive background in chemical engineering. He received his PhD in Chemical Engineering from Virginia Tech in 2003. For the past 15 years, Hickner has been a Rogerson Endowed Professor at Michigan State University, where he has conducted highly acclaimed research in the areas of sustainable energy technologies and nanomanufacturing. Previous to this appointment, Hickner was a Senior Member of the Technical Staff at Sandia National Laboratories, where he conducted post-doctoral research in the fields of materials science, nanotechnology, and catalysis. Given his diverse skill set and supportive leadership style, Michigan State students look to Hickner to provide them with the guidance, mentorship, and educational tools necessary to excel in the field of chemical engineering.

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Fábio Medeiros

Charlotte, North Carolina, United States of America
1 Years Experience
Postdoctoral Research Scholar at North Carolina State University with 15 years of research experience in food processing and low carbon fuels.
Education

University of São Paulo

MBA in Project Management / June, 2025 (anticipated)

Federal University of Rio Grande do Norte

Master's, Chemical Engineering / July, 2019

Natal

Federal University of Rio Grande do Norte

Bachelor, Chemical Engineering / July, 2017

Natal
Experience

North Carolina State University

Postdoctoral Research Scholar / March, 2023Present

Most Relevant Research Expertise
Physical and Theoretical Chemistry
Other Research Expertise (13)
Food processing
food microbiology
E-fuels
Applied Microbiology and Biotechnology
Biotechnology
And 8 more
About
Postdoctoral Research Scholar at the Plants for Human Health Institute from the North Carolina State University working on food ingredient engineering, focused on the development of novel nutrient-dense food ingredients from alternative sources (altenative proteins and repurposing wastes from the food industry). PhD in Chemical Engineering from the Université de Sherbrooke (Sherbrooke, QC, Canada). Graduated in Chemical Engineering (bachelor and master degree) at the Universidade Federal do Rio Grande do Norte (UFRN, Brazil) with an one-year exchange period at the University of Strathclyde (Glasgow, UK). Extensive background and R&D experience on food science and technology (especially, food microbiology, food processing, food bioactive compounds, drying and encapsulation technologies), bioprocess and valorization of agri-industrial residues for new products development and bio-based food packaging functionalization. Solid R&D experience in themes related to CO2 conversion, renewable energy, low-carbon fuels, e-fuels and Power-to-X technologies.

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Example Physical and Theoretical Chemistry projects

How can companies collaborate more effectively with researchers, experts, and thought leaders to make progress on Physical and Theoretical Chemistry?

Development of Advanced Batteries

An academic researcher in Physical and Theoretical Chemistry can collaborate with a battery manufacturing company to develop advanced battery technologies. The researcher can contribute to the design of new electrode materials, optimize the battery's performance, and analyze the electrochemical processes involved.

Drug Discovery and Design

Pharmaceutical companies can benefit from collaborating with experts in Physical and Theoretical Chemistry for drug discovery and design. These researchers can use computational methods to predict the behavior of drug molecules, optimize their properties, and accelerate the discovery process.

Catalyst Development

Companies involved in chemical manufacturing can collaborate with academic researchers to develop efficient catalysts. The researchers can use their expertise in Physical and Theoretical Chemistry to design catalysts with improved activity, selectivity, and stability, leading to more sustainable and cost-effective processes.

Environmental Remediation

Academic researchers in Physical and Theoretical Chemistry can collaborate with environmental consulting firms to develop innovative solutions for environmental remediation. They can apply their knowledge of chemical reactions and kinetics to design effective treatment methods for contaminated sites.

Optimization of Solar Cells

Renewable energy companies can collaborate with experts in Physical and Theoretical Chemistry to optimize the efficiency of solar cells. These researchers can analyze the electronic properties of materials, propose new device architectures, and improve the overall performance of solar energy conversion.