Forge Nano to present at ECS Meeting October 1-5 in National Harbor, MD.
Forge Nano’s Vice President of Engineering Dr. James Trevey will present at the 232nd ECS MEETING Oct. 1-5, 2017 in National Harbor, MD. ECS biannual meetings are a
Atomic scale surface engineering at industrial scale speed & efficiency. Forge Nano makes surface engineering at the atomic level, both simple, and economical. Nano coatings can impart a number of benefits to products in order to optimize performance over a number of metrics. Please use the menu below to choose articles or news stories you are most interested in.
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Forge Nano’s Vice President of Engineering Dr. James Trevey will present at the 232nd ECS MEETING Oct. 1-5, 2017 in National Harbor, MD. ECS biannual meetings are a
With today’s rapidly advancing electronics and technology industries, the chemistry within batteries is progressing at an exponential rate. There are many new discoveries in electrode
2017 R&D 100 Awards Finalists Announced Forge Nano was selected as a finalist for the 2017 R&D100 Awards as Co-Developer with General Motors. The R&D
Forge Nano assembles complete & exclusive intellectual property rights portfolio for Lithium-Ion battery production using Atomic Layer Deposition (ALD) technology Company also named a finalist
Forge Nano assembles complete & exclusive intellectual property rights portfolio for Lithium-Ion battery production using Atomic Layer Deposition (ALD) technology Company also named a finalist
Forge Nano will attend The Battery Show 2017 September 12-14 in Novi MI. The Battery Show 2017 brings together actors from across the industry in an
A nanocoating is the sealing of a material at the atomic level through methods such as atomic layer deposition (ALD). The term nanocoating refers to
Forge Nano are market leaders in providing precision nanocoatings to protect lithium-ion (Li-ion) batteries against their most common degradation mechanisms. We provide ultra-thin, functional surface
Atomic layer deposition (ALD), is a common method to precisely control the growth of materials and fabricate thin films on a substrate- i.e. the formation
Atomic layer deposition (ALD), in its various forms, is a way of coating a substrate with a thin film using a layer-by-layer (LbL) bottom-up approach.
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