Syzygy Plasmonics
Chemicals, 3250 S Sam Houston Pkwye, Houston, Texas, 77047, United States, 51-200 Employees
Who is SYZYGY PLASMONICS
Syzygy is a deep-decarbonization company. We build reactors that use light instead of heat to electrify chemical manufacturing and power a cleaner, safer world. We are commercializing a r...
Read More
- Headquarters: 3250 S Sam Houston Pkwye, Houston, Texas, 77047, United States
- Date Founded: 2018
- Employees: 51-200
- Revenue: $10 Million to $25 Million
- Active Tech Stack: See technologies
Industry: Chemicals
SIC Code: 2819
Does something look wrong? Fix it. | View contact records from SYZYGY PLASMONICS
Syzygy Plasmonics Org Chart and Mapping
Sign in to CIENCE GO Data to uncover contact details
Free credits every month
Frequently Asked Questions Regarding Syzygy Plasmonics
Answer: Syzygy Plasmonics's headquarters are located at 3250 S Sam Houston Pkwye, Houston, Texas, 77047, United States
Answer: Syzygy Plasmonics's official website is https://plasmonics.tech
Answer: Syzygy Plasmonics's revenue is $10 Million to $25 Million
Answer: Syzygy Plasmonics's SIC: 2819
Answer: Syzygy Plasmonics has 51-200 employees
Answer: Syzygy Plasmonics is in Chemicals
Answer: Syzygy Plasmonics contact info: Phone number: Website: https://plasmonics.tech
Answer: Syzygy is a deep-decarbonization company. We build reactors that use light instead of heat to electrify chemical manufacturing and power a cleaner, safer world. We are commercializing a radical new technology developed at Rice University. Our technology enables us to turn traditional catalysts into high-efficiency photocatalysts. This conversion allows us to produce chemical reactors that are powered by light instead of burning fuel and operate at up to 1,000 degrees Fahrenheit lower temperatures than conventional chemical reactors. Through this process, we can dramatically reduce the cost of chemicals produced while simultaneously reducing emissions associated with their production. Currently, we are capable of performing multiple different chemical reactions and plan to enter the market with photocatalytic steam methane reforming to generate hydrogen gas. Hydrogen gas made through our process will reduce costs for industry, and also help enable the expansion of the hydrogen fuel cell market.
Premium Sales Data for Prospecting
-
Sales data across over 200M records
-
Up-to-date records (less decayed data)
-
Accurate Email Lists (real-world tested)
-
Powerful search engine and intuitive interface
Sign in to CIENCE GO Data to uncover contact details
Free credits every month