Age, Biography and Wiki
Hong Byung-hee was born on 25 March, 1971 in South Korea. Discover Hong Byung-hee's Biography, Age, Height, Physical Stats, Dating/Affairs, Family and career updates. Learn How rich is He in this year and how He spends money? Also learn how He earned most of networth at the age of 52 years old?
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Age |
53 years old |
Zodiac Sign |
Aries |
Born |
25 March, 1971 |
Birthday |
25 March |
Birthplace |
South Korea |
Nationality |
South Korea |
We recommend you to check the complete list of Famous People born on 25 March.
He is a member of famous with the age 53 years old group.
Hong Byung-hee Height, Weight & Measurements
At 53 years old, Hong Byung-hee height not available right now. We will update Hong Byung-hee's Height, weight, Body Measurements, Eye Color, Hair Color, Shoe & Dress size soon as possible.
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Dating & Relationship status
He is currently single. He is not dating anyone. We don't have much information about He's past relationship and any previous engaged. According to our Database, He has no children.
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Not Available |
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Hong Byung-hee Net Worth
His net worth has been growing significantly in 2022-2023. So, how much is Hong Byung-hee worth at the age of 53 years old? Hong Byung-hee’s income source is mostly from being a successful . He is from South Korea. We have estimated
Hong Byung-hee's net worth
, money, salary, income, and assets.
Net Worth in 2023 |
$1 Million - $5 Million |
Salary in 2023 |
Under Review |
Net Worth in 2022 |
Pending |
Salary in 2022 |
Under Review |
House |
Not Available |
Cars |
Not Available |
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Hong Byung-hee Social Network
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Timeline
The unique electronic properties of this two dimensional carbon sheet are also of great interest to the semiconductor industry and have received considerable attention from leading high tech companies such as IBM, SAMSUNG, LG, Nokia, Google and Apple. Here, its potential for ultrafast transistors, energy storage and in particular flexible transparent conducting electrodes for, e.g. foldable touch screen panels generate most of the excitement. From a purely application point of view the key breakthrough took place in 2010: The founder of GSI have invented an industry compatible growth (CVD) and transfer (Roll-to-Roll) process enabling the large scale synthesize of graphene for commercial applications. The related key patents have been registered in Korea, US, Japan, and China.
Hong is also the founder of GSI pioneered the large-scale synthesis of graphene by chemical vapor deposition (CVD), which triggered chemical research toward the practical application of graphene. His first report on CVD synthesis of graphene (Nature 2009) has recorded the world highest citations in chemistry among the papers published since 2009 (roughly 5000 times). One year later, he developed the synthesis of ultra-large graphene based on roll-to-roll methods and its application to flexible touch screens (Nature Nanotechnology. 2010), which is believed to be the first demonstration of application of graphene materials in practical electronic devices. For this contribution, he was invited to give a talk in the Nobel Symposium on Graphene (2010). He made more than 90 patent applications on graphene synthesis and applications, which corresponds to the world 2nd graphene-related inventor. Hong's research has been highlighted by Bloomberg, Businessweek, BBC, CNBC, New York Times, Financial Times, Russia Today, MIT Technology Review, C&EN News (cover story), Physics Today, and Physics World. He is now acting as Scientific Advisory Committee member of €1 billion Graphene Flagship project together with 4 Nobel Laureates and as Scientific Advisory Member of Cambridge Graphene Center, UK. He is currently an Advisory Member for CTO of LG Electronics. He served as a member of R&D Strategy and Planning Committee for Korean National Graphene Commercialization Project.
Graphene, the world thinnest material combines seemingly mutually exclusive material properties, which are of great importance for the flexible transparent conducting electrode market: it is at the same time both the best electric conductor we know and yet optically almost transparent; it is the world's strongest material and yet extremely flexible/bendable. Since its discovery in 2004 it has revolutionized our understanding of two dimensional crystals and their potential for device applications. The rapid development of graphene research and its impact on material science culminated Nobel Prize in Physics in 2010 for its discovery. Hong's contribution in large-area graphene synthesis has been recognized by Nobel committee, which is being exhibited in Nobel Museum.