top of page

2015

[64] T. Yoon, K. Kim, "스마트폰 기반의 실시간 관측 현미경 제작" 2015 한국광학회 하계학술발표회, Gyeongju, Korea, July 14, 2015.

[63] T. Yoon, S. Kim, K. Kim, "나노 biosensor의 원리와 응용" 2015 NANO KOREA, Seoul, Korea, July 3, 2015.

[62] H. Song, S. Lee, T. Kang, K. Kim, "Silver nanoislands based SERS-active substrates for DNAs detection," SPIE Photonics West 2015, San Francisco, CA, Feb. 9, 2015.

[61] H. S. Ahn, S. H. Hwang, T. L. Yoon, S. M. Kim, K. Kim, "Plasmon based super-resolution microscopy: break the diffraction limits," SPIE Photonics West 2015, San Francisco, CA, Feb. 9, 2015.

[60] W. Lee, Y. oh, J.-R. Choi, K. Kim, D. Kim,"Extraordinary transmission-based super-resolved axial imaging using subwavelength metallic nanoaperture arrays," SPIE Photonics West 2015, San Francisco, CA, Feb. 9, 2015.

2014

[60] (tutorial session) Kyujung Kim, "Nanoplasmonics for biological sensing and imaging," NANOPIA2014, Changwon, Nov. 14, 2014.

[59] Hyerin Song, Kyujung Kim, "Feasibility study of localized plasmon based Raman signal enhancements using silver nanoislands," Frontier in Optics 2014, USA, Feb. 3, 2014.

[58] Hyerin Song, Kyujung Kim, "Feasibility study of advanced SERS using diverse silver nanoisland structures for DNA detection," The 2014 KJS workshop, Hiroshima, Japan, July 12, 2014.

[57] Hyerin Song, Kyujung Kim, "은나노 섬구조 위에서의 DNA 검출을 위한 SERS 개선 효과에 대한 가능성 연구," 제 21 회 광전자 및 광통신 학술회의, Pusan, Korea, May 21, 2014.

[56] Hyerin Song, Kyujung Kim, "Imaging resolution improvement with plasmonic nanostructures for 3-dimensional mapping," NBMC-2014, Pusan, Korea, February 25, 2014.

[55] Hyerin Song, Kyujung Kim, "나노구조 기반 플라즈몬 현상을 이용한 초고해상도 이미징 기술 개발," 2014 한국광학회 동계학술발표회, Daejeon, Korea, February 19, 2014.

[54] Hyerin Song, Kyujung Kim, "Imaigng resolution improvement with plasmonic nanostructures to break an optical diffraction limit," SPIE Photonics West 2014 (Nanoscale Imaging, Sensing, and Actuation for Biomedical Applications X), San Francisco, CA, February 3, 2014.

[53] Wonju Lee, Yoshiaki Kinosita, Youngjin Oh, Kyujung Kim, Takayuki Nishizaka, and Donghyun Kim, "Plasmonic field localization by subwavelength metallic nanoaperture arrays for imaging biomolecular movement," SPIE Photonics West 2014 (1 - 6 February 2014, Imaging, Manipulation, and Analysis of Biomolecules, Cells, and Tissues XII), Paper No. 8947-52, San Francisco, CA, February 5, 2014.

2013

[52] Wonju Lee, Kyujung Kim, Youngjin Oh, and Donghyun Kim, "Nanoscale localization sampling based on plasmonic optical nanoapertures," SPIE Nano-Bio Sensing, Imaging, and Spectroscopy (M2313-NBS13, Jeju Island, Republic of Korea, February 20-23), February 22, 2013.

[51] Wonju Lee, Youngjin Oh, Jong-ryul Choi, Kyujung Kim, and Donghyun Kim, "Design and analysis of plasmonic nanoapertures for sub-diffraction-limited fluorescence imaging," SPIE Nano-Bio Sensing, Imaging, and Spectroscopy (M2313-NBS13, Jeju Island, Republic of Korea, February 20-23), February 22, 2013.

[50] Wonju Lee, Youngjin Oh, Kyujung Kim, and Donghyun Kim, "Surface plasmon enhanced spatially activated fluorescence imaging based on optical nanoapertures for super-resolution microscopy," SPIE Photonics West 2013 (Single Molecule Spectroscopy and Superresolution Imaging VI), Paper No. 8590-38, San Francisco, CA, February 3, 2013.

~2013

[49] Youngjin Oh, Kyujung Kim, Wonju Lee, and Donghyun Kim, "Subdiffraction-limited imaging based on surface plasmon enhanced random activation of nanoscale antennas," SPIE Global Congress on Nanosystems in Engineering and Medicine: Nano-Bio-Info Convergence, Paper No. 8548-225 (ANM12-ANM101-47), Incheon, Korea, September 10, 2012.

[48] D. Kim, K. Kim, Y. Oh, J. Choi, W. Lee, and S. Moon, "Customizable super-resolution imaging with random and periodic nanoplasmonic substrates," 14th International Congress of Histochemistry and Cytochemistry (ICHC 2012), Kyoto, Japan, August 29, 2012 (Invited).

[47] Y. Oh, K. Kim, W. Lee, and D. Kim, "Nanoscale localization sampling using periodic and random nanostructures for sub-diffraction limited imaging of biomolecules," SPIE Optics & Photonics/NanoScience + Engineering, Paper No. 8460-17, San Diego, CA, USA, August 12, 2012.

[46] 김규정,오영진,이원주,김동현, "나노스케일 샘플링을 통한 마이크로튜뷸의 초고분해능 영상화," 제19회 광전자 및 광통신 학술회의 (COOC 2012) , WP-Ⅴ15, 강릉KIST, 강원도, May 16, 2012.

[45] Kyujung Kim, Junichiro Yajima, Youngjin Oh, Wonju Lee, Shinsuke Oowada, Takayuki Nishizaka, and Donghyun Kim, "Sub-diffraction limited imaging of sliding microtubules based on nanoscale localization sampling using nanoantenna arrays," Biophysical Society 56th Annual Meeting, Abstract control #: 12-A-4096-BPS, Poster Session Title: Microtubules & Microtubule-associated Proteins, Program Number: 3557-Pos, February 29, 2012.

[44] Wonju Lee, Kyujung Kim, and Donghyun Kim, "Design and evaluation of patterned nanoarray chips for sub-diffraction limited far-field microscopy," The 19th Korean Conference on Semiconductors (KCS2012, 한국반도체학술대회), I_1001, Korea Univ., Seoul, February 17, 2012.

[43] K. Kim, Y. Oh, W. Lee, D. Kim, and F. Vollmer, "A feasibility study on plasmon coupled whispering gallery mode biosensors," SPIE Photonics West 2012 (Plasmonics in Biology and Medicine IX), Paper No. 8234-58, San Francisco, CA, January 23, 2012.

[42] J. Choi, K. Kim, and D. Kim, "Investigation of in situ fluorescence optical detection based on a programmable spatial light modulator," SPIE Photonics West 2012 (Imaging, Manipulation, and Analysis of Biomolecules, Cells, and Tissues X), Paper No. 8225-58, San Francisco, CA, January 23, 2012.

[41] W. Lee, K. Kim, and D. Kim, "Nano-aperture design and characterization for subdiffraction-limited fluorescence imaging," SPIE Photonics West 2012 (Single Molecule Spectroscopy and Superresolution Imaging V), Paper No. 8228-42, San Francisco, CA, January 22, 2012.

[40] Y. Oh, K. Kim, W. Lee, N. Han, R. Lee, K.-H. Yoo, and D. Kim, "Visualization of neuron cells using surface plasmon enhanced randomly activated fluorescence microscopy," SPIE Photonics West 2012 (Single Molecule Spectroscopy and Superresolution Imaging V), Paper No. 8228-44, San Francisco, CA, January 22, 2012.

[39] J. Choi, K. Kim, and D. Kim, "정전구동형 마이크로거울 소자를 이용한 프로그래머블 핀홀 어레이 기반의 공초점 형광 현미경의 개발 (Investigation of programmable pinholes array based confocal fluorescence microscopy using a digital micromirror device)," Photonics Conference 2011, T3C-V2, Pyungchang, Korea, December 1, 2011.

[38] Kyujung Kim, Youngjin Oh, Wonju Lee, and Donghyun Kim, "Super resolution imaging by nanoscale localization sampling on nanohole arrays," JTuA13, Frontiers in Optics 2011, San jose, CA, USA, October 18, 2011.

[37] K. Kim, Y. Oh, W. Lee, and D. Kim, "High resolution fluorescence microscopy using nanoplasmonic antennas," SPIE Optics and Photonics 2011 (Plasmonics: Metallic Nanostructures and Their Optical Properties IX), Paper No. 8096-33, San Diego, CA, USA, August 23, 2011.

[36] J. Choi, K. Kim, and D. Kim, "Enhanced fluorescence optical detection using programmable pinhole apertures (프로그래머블 핀홀 기반의 형광 측정 시스템 개발)," 18th Conference on Optoelectronics and Optical Communications (COOC), Kyungjoo, Korea, May 27, 2011

[35] W. Lee, K. Kim, Y. Oh, and D. Kim, "Nanoantenna-based near-field enhancement for total internal reflection fluorescence imaging," SPP5, ThP-59, Bexco, Busan, Korea, May 19, 2011.

[34] K. Kim, Y. Oh, W. Lee, and D. Kim, "Surface plasmon enhanced high resolution imaging by random and periodic nanoantennas," SPP5, ThC-5, Bexco, Busan, Korea, May 19, 2011.

[33] K. Kim, Y. Oh, W. Lee, and D. Kim, "Synthesis and characterization of nanoislands for surface plasmon enhanced randomly activated total internal reflection fluorescence microscopy (SUPRA-TIRFM)," SPP5, TuP-77, Bexco, Busan, Korea, May 17, 2011.

[32] Y. Oh, K. Kim, W. Lee, J. Park, and D. Kim, "Surface plasmon-enhanced randomly activated super-resolution microscopy using metal nanoislands (금속 나노섬 칩을 이용한 플라스몬 기반의 고분해능 분자영상센서 시스템 구축)," The 18th Korean Conference on Semiconductors (KCS2011, 한국반도체학술대회), FG4-2, Jeju, Korea, February 18, 2011.

[31] We have participated in the 10th International Nanotechnology Exhibition and Conference (nanotech 2011), Tokyo, Japan from February 16-18 as exhibitor.

[30] K. Kim, Y. Oh, and W. Lee, and D. Kim, "Surface plasmon enhanced high-resolution total internal reflection fluorescence microscopy," Photonics West 2011 (Imaging, Manipulation, and Analysis of Biomolecules, Cells, and Tissues IX), Paper No. 7902-47, San Francisco, CA, USA, January 24, 2011.

[29] W. Lee, K. Kim, and D. Kim, "Nanoplasmonic enhancement of field localization for super-resolution imaging: a computational approach," Photonics West 2011 (Single Molecule Spectroscopy and Imaging IV), Paper No. 7905-44, San Francisco, CA, USA, January 23, 2011.

[28] K. Kim, Y. Oh, W. Lee, and D. Kim, "Imaging based on random excitation of fluorescence localized by metallic nanoislands," JTuA07, 2010 Frontiers in Optics (FiO)/Laser Science XXVI (LS) Conference, Rochester, New York, USA, October 26, 2010.

[27] D. Kim, K. Kim, Y. Oh, and W. Lee, "Optical bioimaging and sensing based on nanoplasmonics," 4th Annual Symposium on Nanobiotechnology, Ludwig-Maximilian University, Munich, Bavaria, Germany, October 6, 2010.

[26] K. Kim, J.-W. Choi, K. Ma, C.-O. Yun, and D. Kim, "Synthesis of nanoislands for plasmonics-based subdiffraction-limited imaging: Applications to visualization of endocytotic internalization of adenovirus," 240th ACS National Meeting, 164, Boston, MA, USA, August 23, 2010.

[25] S. Moon, K. Ma, D. J. Kim, K. Kim, D. Kim, H. Lee, and K. Lee, "Detection of DNA hybridization with LSPR induced by surface relief nano structure and particle plasmon," SPIE Optics & Photonics/NanoScience + Engineering, Paper No. 7759-40, San Diego, CA, USA, August 3, 2010. Appeared in the Proceedings of SPIE Vol. 7759: Biosensing III, 775913, August 24, 2010.

[24] J. Y. Won, K. Kim, Y. Oh, and D. Kim, "Bio-compatibility test of plasmon enhanced total internal reflection fluorescence microscopy on metal nanostructures," SPIE Optics & Photonics/NanoScience + Engineering, Paper No. 7757-93, San Diego, CA, USA, August 2, 2010.

[23] K. Kim and D. Kim, "Plasmon-enhanced near-field detection and imaging with metal nanostructures," Photonics West 2010, Paper No. 7574-13, San Francisco, CA, USA, January 27, 2010.

[22] Y. Oh, K. Kim, D. Kim, and E. Sim, "Momentum mismatch for improved plasmon enhanced fluorescence emission," Photonics West 2010, Paper No. 7577-47, San Francisco, CA, USA, January 25, 2010. Appeared in the Proceedings of SPIE Vol. 7577: Plasmonics in Biology and Medicine VII, 757719, February 16, 2010.

[21] S. A. Kim, K. M. Byun, K. Kim, D. Kim, and S. J. Kim, "Nanowire-enhanced localized surface plasmon resonance sensor for a detection of avian-influenza DNA hybridization," Photonics West 2010, Paper No. 7577-44, San Francisco, CA, USA, January 25, 2010.

[20] S. Moon, D. J. Kim, K. Kim, D. Kim, H. Lee, K. Lee, and S. Haam, "Coupled localized surface plasmon resonance detection of nanoparticle-conjugated DNA hybridization," YES Workshop for Biophotonics, Biological Interfaces & Polymer Nanohybrids, Ewha University, Seoul, December 23, 2009.

[19] K. Kim, K. Ma, D. J. Kim, Y. Oh, and D. Kim, "Plasmon enhanced total internal reflection fluorescence microscopy for high resolution imaging," YES Workshop for Biophotonics, Biological Interfaces & Polymer Nanohybrids, Ewha University, Seoul, December 23, 2009.

[18] S. Moon, K. Kim, J. Choi, Y. Oh, K. Ma, D. J. Kim, H. Ryu, and D. Kim, "Evanescent wave-based biophotonic imaging and sensing," Korea (Micro/mm-wave photonics and electronics laboratory) and Swedish Photonics Delegation Meeting, December 7, 2009 (Invited).

[17] D. J. Kim, K. Kim, K. Ma, and D. Kim "Enhancement of resolution in total internal reflection fluorescence microscopy by controlled surface condition," 7th Asia-Pacific conference on Near-Field Optics (APNFO-7), Paper No. TP-IV-4, Jeju, Korea, November 26, 2009.

[16] S. A. Kim, S. M. Jang, S. Das, K. M. Byun, K. Kim, D. Kim, and S. J. Kim, "DNA hybridization detection using enhanced localized surface plasmon resonance biosensor (향상된 성능의 국소 표면 플라즈몬 공명 바이오센서를 이용한 DNA 중합반응 측정)," 2009 The Korean Society of Medical and Biological Engineering (KOSOMBE) Autumn Meeting, Catholic University, Seoul, November 13, 2009.

[15] 이리미, 김평환, 최정우, 김규정, 김경미, 박윤정, "Capacitance-Based Real Time Monitoring of Endocytosis," The Korean Physical Society Fall Meeting, E-45, Changwon, Korea, October 23, 2009.

[14] K. Ma, D. J. Kim, K. Kim, S. Moon, and D. Kim, "Highly sensitive SPR detection by target localization (국소 생체 반응의 측정을 통한 고감도 SPR 바이오센서의 구현)," The Optical Society of Korea 20th Anniversary Special Meeting, Gwangju, Korea, October 20, 2009.

[13] K. Kim, D. J. Kim, and D. Kim, "Localized surface plasmon enhanced imaging of live cells based on various subwavelength patterns," 2009 Frontiers in Optics (FiO)/Laser Science XXV (LS) Conference, paper FMH5, San Jose, CA, USA, October 12, 2009.

[12] K. Kim, D. J. Kim, E.-J. Cho, J.-S. Seo, Y.-M. Huh, and D. Kim, "Enhancement of total internal reflection fluorescence microscopy using subwavelength grating," 4th Asia-Pacific Rim Symposium on Biophotonics (APBP), Jeju, Korea, May 28, 2009 (Invited).

[11] K. Kim, D. J. Kim, E.-J. Cho, J.-S. Seo, Y.-M. Huh, and D. Kim, "Effect of silver nanoislands-embedded grating for surface plasmon based total internal reflection fluorescence imaging," Photonics West 2009, San Jose, CA, USA, January 28, 2009. Also published in the Proceedings of SPIE Vol. 7224: Quantum Dots, Particles, and Nanoclusters VI, K. G. Eyink, F. Szmulowicz, and D. L. Huffaker, Eds., 722417, February 18, 2009.

[10] K. Kim, D. J. Kim, E.-J. Cho, J.-S. Seo, Y.-M. Huh, and D. Kim, "Plasmon-enhanced total internal reflection fluorescence microscopy using periodic nanowires," NanoBio-Seoul 2008, Yonsei University, Seoul, October 31, 2008.

[9] H. Park, J. Yang, S.-B. Seo, K. Kim, J.-S. Suh, D. Kim, S. Haam, and K.-H. Yoo, "Nanoparticles for photothermally controlled drug delivery and MRI enhancement," NanoBio-Seoul 2008, Yonsei University, Seoul, October 30, 2008.

[8] D. J. Kim, K. Kim, and D. Kim, "Improvement of resolution in surface plasmon resonance imaging by controlled surface conditions," NanoBio-Seoul 2008, Yonsei University, Seoul, October 30, 2008.

[7] K. Kim, D. J. Kim, E.-J. Cho, Y.-M. Huh, J.-S. Seo, and D. Kim, "Nano grating-based plasmon enhancement in total internal reflection fluorescence microscopy," Joint 2008 Plasmonics and Metamaterials (META)/Optical Fabrication and Testing (OF&T), paper JWD39, Rochester, NY, USA, October 22, 2008.

[6] K. Kim, E.-J. Cho, Y.-M. Huh, and D. Kim, "Sensitivity enhancement for total internal reflection fluorescence imaging using dielectric thin films," Biomedical Optics Topical Meeting (BIOMED), paper BMD65, 2008 Spring Optics and Photonics Congress, St. Petersburg, FL, USA, March, 17, 2008 (Best Student Poster Presentation Award).

[5] K. Kim, E.-J. Cho, Y.-M. Huh, and D. Kim, "Feasibility study of enhanced total internal reflection imaging using dielectric films," Photonics West 2008, San Jose, CA, USA, January 21, 2008. Appeared in the Proceedings of SPIE Vol. 6850: Multimodal Biomedical Imaging III, 68500R, February 12, 2008.

[4] K. Kim, S. Seo, J. Choi, D. Kim, and S. Haam, "Real-time fluorescence imaging of a drug release using polymeric nanoparticles," CLEO Pacific Rim, Seoul, Korea, August 27, 2007.

[3] K. Kim, D. Kim, E. Cho, and Y. Huh, "A quantitative analysis of the intracellular transport of quantum dot-peptide in live cells using epifluorescence microscopy," SPIE Photonics West, San Jose, CA, January 23, 2007. Appeared in the Proceedings of SPIE Vol. 6449: Genetically Engineered and Optical Probes for Biomedical Applications IV, 64490K, February 14, 2007.

[2]K. Kim, and D. Kim, "A feasibility study of depth-resolved tomography using angle scanning total internal reflection fluorescence based microscopy," World Congress on Medical Physics and Biomedical Engineering, Seoul, Korea, August 29, 2006.

[1] K. Kim, T. H. Kang, S. Moon, and D. Kim, "Feasibility study of a wedge-type multifunctional surface plasmon resonance based optical biosensor," Korea Society of Medical Biological Engineering (KOSOMBE) Spring Conferences, Kimhae, Korea, May, 2005.

bottom of page