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Advanced Quantum-Nano Materials & Optoelectronics Laboratory (AQNMOL)

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Expected Impact

 

ㅇ Educational aspects:

– Nurture talents who have secured core expertise in next-generation semiconductor and communication convergence
– Nurturing graduate students with a sense of international research
– Reinforcement of employment of participating graduate students in related companies

ㅇ Technology development side:

– Securing technology of key elements for next-generation semiconductor device communication application innovation – Preemptively secure core technologies leading the future semiconductor/communication convergence industry and create new industrial fields – Presenting future research fields in the semiconductor/communication convergence industry

ㅇ Aspect of industry-university cooperation:

– Industrialization of research results and securing intellectual property rights through patent registration
– Contribution to the industry by nurturing key talents in the semiconductor/communication convergence industry
– Establishment of demand-oriented research direction and results through close industry-academia cooperation

 

– Kwangwoon University –

Advanced Quantum-Nano Materials & Optoelectronics Laboratory

– University of Arkansas –

 

– Funding Agency & Centers –

– Journal Editorials –

 

Editorial Board Nanoscale Research Letters * IF 3.125 (JCR 2018) Springer New York, USA
Editorial Board Nanoscale Research Letters * IF 3.125 (JCR 2018) Springer New York, USA

 

Special Issue Editor Nanomaterials *IF 4.043 (JCR 2018) MDPI Basel, Switzerland
Special Issue Editor Nanomaterials *IF 4.043 (JCR 2018) MDPI Basel, Switzerland

 

Managing Editor 3D RESEARCH * ESCI, SCOPUS Springer New York, USA
Managing Editor 3D RESEARCH * ESCI, SCOPUS Springer New York, USA

– Research Highlight –

 

(Journal cover, The Journal of Physical Chemistry C) Volume 123 Issue 4 (2019)
(Journal cover, The Journal of Physical Chemistry C) Volume 123 Issue 4 (2019)

 

(Journal cover, Journal of Nanoelectronics and Optoelectronics) Volume 13 Issue 6 (2018)
(Journal cover, Journal of Nanoelectronics and Optoelectronics) Volume 13 Issue 6 (2018)

 

Journal cover, Metals Volume 7 Issue 11 (2017)
(Journal cover, Metals) Volume 7 Issue 11 (2017)

 

(Journal cover, CrystEngComm) Volume 18 Issue 19 (2016)
(Journal cover, CrystEngComm) Volume 18 Issue 19 (2016)

 

(Journal cover, CrystEngComm) Volume 16 Issue 21 (2014)
(Journal cover, CrystEngComm) Volume 16 Issue 21 (2014)

 

(Journal cover, Physica Status Solidi (a)) Volume 209 Issue 6 (2012)
(Journal cover, Physica Status Solidi (a)) Volume 209 Issue 6 (2012)

 

(Journal cover, Physica Status Solidi (a)) Volume 208 Issue 1 (2011)
(Journal cover, Physica Status Solidi (a)) Volume 208 Issue 1 (2011)

 

(Journal cover, IEEE Transactions on Nanotechnology) Volume 9 Issue 2 (2010)
(Journal cover, IEEE Transactions on Nanotechnology) Volume 9 Issue 2 (2010)

 

(Materials Views, Wiley's Material Science) "Nano Rings and Nano Pyramids" (2010)
(Materials Views, Wiley’s Material Science) “Nano Rings and Nano Pyramids” (2010)
(Journal cover, Physica Status Solidi (a) Volume 207 Issue 2 (2010)
(Journal cover, Physica Status Solidi (a) Volume 207 Issue 2 (2010)

 

(Journal cover, Applied Physics Letters) Volume 89 Issue 20 (2006)
(Journal cover, Applied Physics Letters) Volume 89 Issue 20 (2006)

 

(2006 MRS Fall Meeting Scene) "Self-Assembly of InGaAs Quantum Dot Molecules (QDMs)" (2006)
(2006 MRS Fall Meeting Scene) “Self-Assembly of InGaAs Quantum Dot Molecules (QDMs)” (2006)

 

(Journal cover, Applied Physics Letters) Volume 88 Issue 23 (2006)
(Journal cover, Applied Physics Letters) Volume 88 Issue 23 (2006)

 

(NanoWerk, Spotlight) "Quantum dot necklaces and other QD chains" (April 12, 2006)
(NanoWerk, Spotlight) “Quantum dot necklaces and other QD chains” (April 12, 2006)

 

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