Carlos Castano, Ph.D.

Associate Professor, Department of Mechanical and Nuclear Engineering

  • Richmond VA UNITED STATES
cecastanolond@vcu.edu

Professor Castano specializes in tailoring surface properties of materials for applications in energy, transportation, and manufacturing.

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Biography

The Castano's research group focuses on tailoring the surface properties of materials by physical and chemical methods for engineering applications. The research areas are organized around four main fields: Nanotechnology, Surface Science, Functional Coatings, and Materials under Extreme Environments - Irradiation, Plasmas, and High Temperatures.

Industry Expertise

Nanotechnology
Manufacturing
Machinery
Aerospace
Automotive
Metalworking and Coatings Technology
Steel
Ceramics and Glass
Semiconductors
Mechanical/Industrial Engineering
Paint
Renewables and Environmental
Chemicals
Pharmaceuticals
Research
Education/Learning

Areas of Expertise

Surface Engineering
Functional Coatings
Nanomaterials Engineering
Corrosion Engineering
Thin film deposition and characterization
Lightweight Alloys
Plasma Physics
Advanced Materials Characterization
Tribology

Accomplishments

Roberto Rocca Fellow

2012-09-01

Roberto Rocca Fellowships are given exceptional university graduates who are citizens of Argentina, Brazil, Colombia, Indonesia, Mexico, Venezuela and Romania, and who will enter a Ph.D. program outside their own country or who have already begun their studies towards a Ph.D. at a university outside their own country.

http://www.robertorocca.org/en/fellowships.aspx

Outstanding MSE Graduate Student Award at Missouri S&T

2014-02-03

The materials science and engineering department at Missouri S&T recognizes every year a graduate student for his research and teaching outstanding contributions

NSF ASSIST/LEVERAGE Awardee 2019

2019-03-29

This award allows the faculty to participate in the Academic and Research Leadership Symposium (ARLS). The ARLS has two threads: (1) a faculty development thread, and (2) a research networking thread. The ARL Network promotes the discussion of ideas for improving networking among underrepresented minority faculty at a local and national level.

Education

Virginia Commonwealth University

Postdoc

Chemical and Life Science Engineering

Research: “Synthesis of Heterogeneous Catalysts for Coupling Reactions”
“Advanced Nanomaterials Synthesis and Characterization”

Missouri University of Science and Technology

Ph.D.

Materials Science and Engineering

Dissertation: “Cerium-based Conversion Coatings on Mg Alloys”

National University of Colombia

M.Sc.

Engineering - Materials and Processes

Thesis: “Special Optical Effects of Titanium Dioxide Coatings on Mica”

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Affiliations

  • Alpha Sigma Mu (Honorary Member)
  • The Minerals, Metals & Materials Society (Member)
  • The American Ceramic Society (Member)

Media Appearances

VCU Engineering faculty receive promotions and tenure

VCU  online

2023-05-19

Congratulations to our recently-promoted VCU Engineering faculty! These advancements reflect their outstanding dedication and accomplishments.

Join us as we celebrate:

Christopher Lemmon, Ph.D.
Professor
Biomedical Engineering

Tamer Nadeem, Ph.D.
Professor
Computer Science

Charles Cartin, Ph.D.
Professor
Mechanical and Nuclear Engineering

Bradley Nichols, Ph.D.
Associate Professor
Mechanical and Nuclear Engineering

Zeyun Wu, Ph.D.
Associate Professor with Tenure
Mechanical and Nuclear Engineering

Shawn Chen, Ph.D.
Associate Professor with Tenure
Mechanical and Nuclear Engineering

Carlos Castano, Ph.D.
Associate Professor with Tenure
Mechanical and Nuclear Engineering

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Representing medical advances and transdisciplinary research, 22 VCU researchers are inducted into National Academy of Inventors

VCU  online

2023-05-01

Twenty-two Virginia Commonwealth University researchers spanning a range of disciplines were inducted last week into the National Academy of Inventors. The organization founded in 2010 includes more than 4,600 members worldwide and recognizes inventors who hold U.S. patents.

In remarks during a ceremony hosted by VCU TechTransfer and Ventures and held at Maymont, speakers highlighted VCU’s recent ranking by the National Science Foundation as a top 50 public research university and crossing the $400 million barrier in sponsored research in 2022.

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VCU Commercialization Fund awards support to four VCU Engineering innovators

VCU  

2022-01-25

Carlos Castano, Ph.D., an assistant professor in the Department of Mechanical and Nuclear Engineering, was funded to study a new method to modify the surface of metallic powders used for sintering, a process in which powders are converted into solid masses without being liquified. He hopes the work will expand the technology to coat metallic, ceramic and polymeric powders. The work also aims at improving the quality of the materials produced while increasing the scale. He says this will open a window for broader applications in solar energy, providing access to clean water, developing efficient carbon sequestration methods and engineering better medicines.

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Patents

Multifunctional cerium-based nanomaterials and methods for producing the same

US9,861,958B2

2019-01-08

Embodiments relate to a cerium- containing nano-coating composition , the composition including an amorphous
matrix including one or more of cerium oxide , cerium
hydroxide , and cerium phosphate ; and crystalline regions including one or more of crystalline cerium oxide , crystal
line cerium hydroxide , and crystalline cerium phosphate . The diameter of each crystalline region is less than about 50 nanometers .

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Carbon based materials as solid-state ligands for metal nanoparticle catalysts

US Patent 11,219,892

2022-01-11

High activity metal nanoparticle catalysts, such as Pd or Pt nanoparticle catalyst, are provided. Adsorption of metal precursors such as Pd or Pt precursors onto carbon based materials such as graphene followed by solventless (or low-solvent) microwave irradiation at ambient conditions results in the formation of the catalysts in which metal nanoparticles are supported on i) the surface of the carbon based materials and ii) in/on/within defects/holes in the carbon based materials.

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Courses

MECHANICAL SYSTEMS DESIGN - EGMN 300 - Fall 2017, 2018, 2019, 2020, 2021, 2022

Basic principles of applied mechanics and materials employed for the design of machine elements and mechanical systems; state of stress, deformation and failure criterion is applied to bearings, brakes, clutches, belt drives, gears, chains, springs, gear trains, power screws and transmissions.

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Special Topic: Materials Synthesis Lab - EGMN 691 - Summer 2018

This graduate course covers the basic principles of materials synthesis. From the lab perspective, the design of materials from either solid, liquid, gas, or plasma phase will be presented targeting final properties and applications. Three basic modules are discussed in detail to target the Synthesis Processes for Metals, Ceramics, Polymers, and Composites of 1) Bulk Materials , 2) Nanomaterials, and 3) Thin Films

Special Topic: Functional Coatings - EGMN 691 Spring 2019, 2021

This graduate level course introduces basic and advanced concepts in the field of surface coatings physics and chemistry. The topics will include coating deposition methods and the relationship of the physical and chemical properties explaining the macroscopic functionality of the materials. Special emphasis will be placed in corrosion protection, wear, superhydrophobicity, optical, and electromagnetic applications.

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Selected Articles

Controlling preferential growth of chromium–Nitrogen R-HiPIMS and R-DCMS films by substrate magnetic biasing

Applied Surface Science

2021-12-15

The effect of magnetic biasing on the structure of Cr-N coatings deposited on silicon substrates by reactive magnetron sputtering has been investigated. The magnetic biasing setup consisted of a permanent magnet placed close to the substrate holder to modify the plasma species dynamics and deposition flux. Three magnetic field configurations for reactive direct current magnetron sputtering (R-DCMS) and reactive High Power Impulse Magnetron Sputtering (R-HiPIMS) were compared. Deposition parameters such as deposition time, gun power, substrate distance, temperature, gas pressure, and gas composition were constant through the six R-DCMS/HiPIMS-magnetic-field combinations. Processes were monitored through optical emission spectroscopy (OES) and closely compared to the voltage and current curves at the target/substrate. An excitation mechanism was proposed accounting for the enhanced ionization detected by OES and the implications in the film’s growth. The films’ stoichiometry, structure, thickness, morphology, and crystal texture were characterized and associated with the process parameters. The R-DCMS processes led to Cr-N solid solution films, while the enhanced reactivity of R-HiPIMS plasma species increased the N content and formed CrN. Overall, the R-DCMS deposited samples were thicker than the R-HiPIMS deposited samples, but the different magnetic field biasing setups allowed for specific control of films’ thickness, texture, and microstructure.

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Hemocompatibility of plasma nitrided 316L stainless steel: Effect of processing temperature

Applied Surface Science

2020-04-15

The influence of plasma nitriding temperature on the hemocompatibility of 316LSS was evaluated through in vitro thrombogenicity tests. The nitriding processes were carried out using an industrial furnace at a temperature range that does not impair the corrosion resistance. The crystallographic phases, topography, chemical composition, wettability, and thrombogenicity of the modified surfaces were evaluated and compared to untreated 316LSS samples. The results revealed the formation and evolution of the γN phase with increasing the temperature. The γN phase development was assessed with the stacking fault probability, which rose with temperature leading to rougher surfaces. Nitrided samples at 380 ˚C exhibited polar groups at the surface, increasing the surface energy. There was a substantial reduction of these groups in samples nitrided at 400 ˚C and almost negligible at 420 ˚C. Lower amounts and less activation of platelets was observed on the nitrided surface at the lowest temperature, contrary to the results obtained at the highest nitriding temperature. It was correlated with the hydrophobicity and roughness of the plasma nitrided surfaces. Through this investigation it is possible to propose adequate conditions of plasma nitriding to improve the hemocompatibility of 316LSS samples, reinforcing the feasibility of this processing technique for biomaterials on an industrial-scale.

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Catalytically sustainable, palladium-decorated graphene oxide monoliths for synthesis in flow

Chemical Engineering Journal

2020-02-20

Continuous flow synthesis is an essential route towards high throughput manufacturing of fine chemical and pharmaceutical products. The mentioned chemistries are often catalyzed by solid-supported catalysts via packed beds which are characterized by multiple issues such as high pressure-drops, micro channeling through the bed, and leaching of the metallic catalyst into the product stream. These issues lower the overall process efficiency. Three dimensional (3D) structures, known as monoliths, with high porosity and mechanical robustness, offer the ideal properties to be used macroscopic supports for metallic catalyst particles. This approach has shown to alleviate several known issues with catalyst packed beds effectively.

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