70

Çѱ¹È­ÇаøÇÐȸ 2009³â º½ (4/23 ~ 4/24, ±¤ÁÖ ±è´ëÁßÄÁº¥¼Ç¼¾ÅÍ) Á¦ 15 ±Ç 1 È£, p.960 Detection of specific DNA sequence using selective gold nanoparticle aggregation5,6,8,9 ÀÌÈ£¼·, °­Å°æ, ÁÖ»ó¿ì, À̼ҿµ, À±°æ¾Æ, ÀÌ°­Åà


69

Çѱ¹È­ÇаøÇÐȸ 2009³â º½ (4/23 ~ 4/24, ±¤ÁÖ ±è´ëÁßÄÁº¥¼Ç¼¾ÅÍ) Á¦ 15 ±Ç 1 È£, p.794 Detection of Single Base Mismatch Using Selective Aggregation of CdS Quantum Dots ±èÅÂÈÆ, ³ë¹ÎÈ£, ÀÌÈ£¼·, ÁÖ»ó¿ì, À̼ҿµ, ÀÌ°­ÅÃ


68
ÁÖ»ó¿ì, ³ª³ë¹°ÁúÀÇ ¹°¸®È­ÇÐÀû Ư¼ºÀ» ÀÌ¿ëÇÑ À§ÇØ ±âÀÛ ¿¬±¸, 2009.4.22. ³ª³ë¹°Áú ÃֽŠÀ§Çؼº Æò°¡±â¹ý

67

ÁÖ»ó¿ì, Raman spectroscopy for the study of nanomaterials in live cells, 2009.4.17. ´ëÇÑÈ­ÇÐȸ Á¦103ȸ ÃÑȸ ¹× Çмú¹ßǥȸ


66
ÁÖ»ó¿ì, 2008. 12.16. Molecular Ions in Space and Laboratory, õüȭÇÐ-õ¹®ÇÐ ¹× È­ÇÐÀÇ À¶ÇÕ ½ÉÆ÷Áö¿ò

65

Çѱ¹°ø¾÷È­ÇÐȸ  2008³â °¡À» (11/12 ~ 11/14, ICC Á¦ÁÖ) Biosensors based on the selective aggregation of nanoparticles ÀÌ°­ÅÃ, ±èÅÂÈÆ, ÀÌÀ±Èñ, À̼ҿµ, ÁÖ»ó¿ì


64

¿ÀÁ¤Áø, ÁÖ»ó¿ì, ÇÏÀ̵巹ÀÌÆ®¸¦ ÀÌ¿ëÇÑ ¿Â½Ç°¡½º Æ÷ȹ ¹× ÀúÀåÀ» À§ÇÑ ¶ó¸¸ ºÐ±¤Çבּ¸ , 2008.11.6. Çѱ¹È¯°æºÐ¼®ÇÐȸ Ãß°èÇмú´ëȸ


63

Çѱ¹È­ÇаøÇÐȸ 2008³â °¡À» (10/23 ~ 10/24, ºÎ»ê BEXCO) Á¦ 14 ±Ç 2 È£, p.2710 Selective Aggregation of Unmodified Gold Nanoparticles for Detection of Single Nucleotide Polymorphism ÀÌÀ±Èñ, ±èÅÂÈÆ, ÀÌ°­ÅÃ, ÁÖ»ó¿ì, À̼ҿµ


62

¹ÚÁÖÇö, ÁÖ»ó¿ì, Conjugation of amino acids onto 3,3'-dithioldipropionic acid di(N-hydroxysuccinimide ester) assembled onto metal surfaces, 2008.10.16. ´ëÇÑÈ­ÇÐȸ Á¦102ȸ ÃÑȸ ¹× Çмú¹ßǥȸ


61

Çѱ¹°íºÐÀÚÇÐȸ 2008³â °¡À» (10/9 ~ 10/10, ÀÏ»êŲÅؽº) Á¦ 33 ±Ç 2 È£ Biosensor Based on the Selective Aggregation of Gold Nanoparticles ÀÌ°­ÅÃ, ÀÌÀ±Èñ, ±èÅÂÈÆ, À̼ҿµ, ÁÖ»ó¿ì


60

ÁÖ»ó¿ì, T. Oka, Infrared spectrum of the methyl cation CH3+ in the 7 micrometer region, Çѱ¹Ãµ¹®ÇÐȸ °¡À» Çмú´ëȸ, 2008.10.7


59

À̼ҿµ, ÁÖ»ó¿ì, The 2008 Korea-Japan Symposium on Frontier Photoscience(2008.09.25) Elucidating the Mechanism of Cellular Uptake of Nanoparticles: In Situ Single Cell Monitoring by Functionalized Ag and Au Nanoprobe-Based Surface-Enhanced Raman Scattering


58

Yu Jin Lee, Sung Ik Yang, Jang Suk Kwon, Dae Seung Kang, Sang-Woo Joo, ¡°Solvent dependent photo-isomerization of 4-dimethylaminoazobenzene carboxylic acid¡± ´ëÇÑÈ­ÇÐȸ ¹°¸®È­Çкаú ÇÏ°è½ÉÆ÷Áö¿ò 2008/07/2


57
Çѱ¹¹ÙÀÌ¿ÀĨÇÐȸ Ãá°èÇмú´ëȸ,(2008/06/12 ´ëÀü KAIST âÀÇÇнÀ°ü) Kyungnam Cho, Yunhee Lee, Chang-Ha Lee, Kangtaek Lee, Youngmin Kim, Hyoungwoo Choi, Pan-Dong Ryu, So Yeong Lee, and Sang-Woo Joo  ¡°Selective Aggregation Mechanism of Unmodified Gold Nanoparticles in Detection of Single Nucleotide Polymorphism¡±

56

ÀÌÀ±Èñ ¡¤ ÀÌ°­Åà ¡¤ ÁÖ»ó¿ì

 ¡°Infrared Spectroscopic Analysis of Organic Dyes Adsorbed on Nanocrystalline TiO2 Surfaces¡± Çѱ¹È¯°æºÐ¼®ÇÐȸ Ãá°èÇмú´ëȸ, 2008/05/23


55

¹ÚÁÖÇö ¡¤ ÁÖ»ó¿ì ¡¤ ¿ÀÁ¤Áø

 ¡°Raman Spectroscopy of Environmentally Hazardous Materials using Nanoparticles¡±, Çѱ¹È¯°æºÐ¼®ÇÐȸ Ãá°èÇмú´ëȸ, 2008/05/23


54

Çѱ¹È­ÇаøÇÐȸ 2008³â º½ (4/23 ~ 4/25, Á¦ÁÖICC)Á¦ 14 ±Ç 1 È£, p.1068 Kinetics of gold nanoparticle aggregation: Experiments and modeling  ±èÅÂÈÆ, ÀÌ°­ÅÃ, ÁÖ»ó¿ì


53

Çѱ¹È­ÇаøÇÐȸ 2008³â º½ (4/23 ~ 4/25, Á¦ÁÖICC)Á¦ 14 ±Ç 1 È£, p.441 Selective Aggregation Mechanism of Unmodified Gold Nanoparticles in Detection of Single Nucleotide Polymorphism ÀÌÀ±Èñ, Á¶°æ³², ÀÌ°­ÅÃ, ÁÖ»ó¿ì, ·ùÆǵ¿, À̼ҿµ


52

ÀÌÀ¯Áø, ¾ç¼ºÀÍ, ÁÖ»ó¿ì ¡°Solvent effect on photoisomerization of azobenzene derivatives¡±

´ëÇÑÈ­ÇÐȸ Á¦101ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2008.4.17)


51
È«¼Ò¾ß, ÁÖ»ó¿ì, ±èÁÖ¿ë ¡°±Ý ³ª³ëÀÔÀÚ¸¦ ÇÔÀ¯ÇÑ ³ª³ëÀ¥ÀÇ Á¦Á¶¡±(2007³âµµ Çѱ¹¼¶À¯°øÇÐȸ Ãß°èÇмú ¹ßǥȸ, 2007/11/16)

50

ÁÖ»ó¿ì ¡°Surface-Enhanced Raman Scattering of Aromatic Self-Assembled Layers on Cu, Ag, and Au¡±

´ëÇÑÈ­ÇÐȸ Á¦100ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2007/10/19)


49
ÁÖ»ó¿ì ¡°Charge transfer mechanism of bipyridine compounds on metal surfaces¡±(2007³â Á¦3Â÷ ´ëÇÑÈ­ÇÐȸ ¹°¸®ºÐ°úȸ, ¼­¿ï´ëÇб³, 2007/09/08)

48
±è¿µ¹Î, ÀÓÁ¾±¹, À̼ҿµ, ÁÖ»ó¿ì ¡°Gold nanoparticle-based detection of DNA hybridization using UV-VIS and SERS¡±FAOMB Seoul Conference, COEX, 2007/05/27)

47

±èÇý¸°, ±èº¹±â, ±èÇü±¹, ÁÖ»ó¿ì, ¹éÇöÁ¾¡°Sidewall Functionalization of Carbon Nanotubes using Benzoyl Peroxides¡±

(International Conference on Molecular Electronics and Devices, 2007/05/10)


46

±èÇý¸°, ¹éÇöÁ¾, ±èº¹±â, ±èÇü±¹, ÁÖ»ó¿ì¡°Sidewall functionalization of carbon nanotubes using benzoyl peroxides¡±

(Çѱ¹°íºÐÀÚÇÐȸ Ãá°èÃÑȸ, 2007/04/12)


45
ÁÖ»ó¿ì, ¡°Self-assembly and UV Photodetachment of Covalently Functionalized Single-Walled Carbon Nanotubes¡± (The 2nd Young Chemist Workshop on Nanoscience, °æºÏ´ëÇб³, 2007³â 1¿ù9ÀÏ)

44

Jong Kuk Lim, In-Hyun Kim, Ki-Hyun Kim, Kuan Soo Shin, Weekyung Kang, Jaebum Choo, and Sang-Woo Joo ¡°Adsorption of dimethyl sulfide on Ag and Au surfaces: Surface-enhanced Raman scattering and density¡±(´ëÇÑÈ­ÇÐȸ ¹°¸®È­Çкаú ÇÏ°è ½ÉÆ÷Áö¿ò 2006³â 7¿ù14ÀÏ)


43

ÁÖ»ó¿ì

Self-assembly and UV photodetachment of covalently functionalized single-walled carbon nanotube" ´ëÇÑÈ­ÇÐȸ Á¦97ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2006³â 4¿ù21ÀÏ)


42

ÁÖ»ó¿ì, ÁÖÀç¹ü, ±è±âÇö "´ÙÀ̸ÞÆ¿ ¼³ÆÄÀ̵åÀÇ ÄÝ·ÎÀÌµå ³ª³ëÀÔÀÚ

Ç¥¸é¿¡¼­ ±¤¹ÝÀÀ

" (Çѱ¹³¿»õȯ°æÇÐȸ Á¤±âÃÑȸ ¹× Çмú¹ßǥȸ 2005³â 11¿ù 25ÀÏ)¡±

41

ÁÖ»ó¿ì¡°Organic Adsorbates on Au Nanoparticle Surfaces

investigated by Raman Spectroscopy¡±

(-³ª³ëÇÏÀ̺긮µå ¼ÒÀçÀÇ ÇÕ¼º ¹× ±â´É¼º ¿¬±¸-Á¦ 8ȸ ÀüÀÚÁ¤º¸

½Å¼ÒÀç ¹× ÀÀ¿ë±â¼ú: ½ÉÆ÷Áö¿ò,   °æÈñ´ëÇб³ ÀÚ¿¬°úÇÐÁ¾ÇÕ¿¬±¸¿ø)


40
ÁÖ»ó¿ì ¡°Raman spectroscopy of self-assembled thin films and functionalized single walled carbon nanotubes ¡± Çѱ¹±¤°úÇÐȸ (2005.6)

39

ÀÌÇü¸¸, ¾ç¿ì¼®, ±è¿ì°æ, ÀÌÇÑ¿µ, ±è¼ºÀÏ, ·ùÈñ¿í, ÁÖ»ó¿ì

"±ÙÀû¿Ü¼± ÆÄÀå °¡º¯ ·¹ÀÌÀú¸¦ ÀÌ¿ëÇÑ ±âü¼¿ÀÇ Èí¼ö ½ºÆåÆ®·³ Ư¼º ºÐ¼®"

Çѱ¹´ë±âȯ°æÇÐȸÃá°è Çмú´ëȸ (2005.5)


38

±è¼ºÀÏ, ÁÖ»ó¿ì ¡°Adsorption of ethanethiolate, 1-propanethiol, 1-propionic acid, and 1-propionitrile on gold nanoparticle surfaces. A comparative SERS study¡±

´ëÇÑÈ­ÇÐȸ Á¦94ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2005.4)


37

À¯¹ü±Ù, Àü±ÙÈ£, ÁÖ»ó¿ì ¡°Bonding of covalent-functionalized single-walled carbon nanotubes to Au surfaces prepared via diazonium reactions¡±

´ëÇÑÈ­ÇÐȸ Á¦94ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2005.4)

36
Ȳ½Â±¸, ÁÖ»ó¿ì, ¡°Aromatic nitrile binding to Au and Ag clusters: Density functional theoretical studies¡± ´ëÇÑÈ­ÇÐȸ Á¦95ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2005.4)

35
Á¶±¤ÈÖ, ÁÖÀç¹ü, ÁÖ»ó¿ì, ¡°Surface-Enhanced Raman Scattering and Density Functional Theory Calculation Study of Cytosine on Gold and Silver Nanoparticle Surfaces¡± ´ëÇÑÈ­ÇÐȸ Á¦95ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2005.4)

34
±è¼ºÀÏ, ÁÖ»ó¿ì, °ø¸í¼±, ¡°Temperature-dependent Raman spectroscopic study of a nematic liquid crystalline thin film of 5CB (4-n-pentyl-4¢-cyanobiphenyl)¡± Çѱ¹°íºÐÀÚÇÐȸ Ãá°èÃÑȸ ¹× ¿¬±¸³í¹®¹ßǥȸ 2005³â 4¿ù 14ÀÏ)

33
À¯¹ü±Ù, ÁÖ»ó¿ì,  "Solubility of sidewall functionalized single-walled carbon nanotubes via diazonium reactions¡± (Çѱ¹°íºÐÀÚÇÐȸ Ãá°èÃÑȸ ¹× ¿¬±¸³í¹®¹ßǥȸ 2005³â 4¿ù 14ÀÏ)

32
ÁÖ»ó¿ì, "Raman spectroscopic analysis of nanostructure materials: self-assembled liquid crystal thin film monolayers on colloidal nanoparticle surfaces and chemically functionalized single-walled carbon nanotubes¡± (Çѱ¹°íºÐÀÚÇÐȸ Ãá°èÃÑȸ ¹× ¿¬±¸³í¹®¹ßǥȸ 2005³â 4¿ù 14ÀÏ)

31
ÁÖ»ó¿ì, ¡°Raman spectroscopy of liquid crystalline materials and chemically functionalized single-walled carbon nanotubes¡± (The 1st Young Chemist Workshop on Nanoscience, KAIST)

30
ÁÖ»ó¿ì "ÄÝ·ÎÀÌµå ³ª³ëÀÔÀÚ¿Í ºÐ±¤¹ýÀ» ÀÌ¿ëÇÑ ¾ÇÃë¿øÀι°ÁúŽÁö" (Çѱ¹³¿»õȯ°æÇÐȸ Á¤±âÃÑȸ ¹× Çмú¹ßǥȸ 2004³â 11¿ù 25ÀÏ)

29

À¯¹ü±Ù, Àü±ÙÈ£, ÁÖ»ó¿ì ¡°Temperature dependent Raman study of sidewall functionalized single-wall carbon nanotubes¡±

´ëÇÑÈ­ÇÐȸ Á¦94ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2004)

28

±è¼ºÀÏ, ÁÖ»ó¿ì, ¡°Raman spectroscopic study of a nematic liquid crystalline thin film of 5CB (4-n-pentyl-4¢-cyanobiphenyl) on Au and Ag¡±

´ëÇÑÈ­ÇÐȸ Á¦94ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2004)

27

ÁÖ»ó¿ì, Á¶±Ùâ "Detection of Trace Odor Active Gases using Infrared Diode Laser Absorption Spectroscopy" (Çѱ¹³¿»õȯ°æÇÐȸ Á¤±âÃÑȸ ¹× Çмú¹ßǥȸ 2004³â 6¿ù 3ÀÏ)


26

±è¼ºÀÏ, ¼­µ¿¿î, ÁÖ»ó¿ì

¡°¸ÞźÀÇ ÆÄÀå°¡º¯ ´ÙÀÌ¿Àµå ·¹ÀÌÀú Èí¼ö ½ºÆåÆ®·³¡±

Çѱ¹´ë±âȯ°æÇÐȸÃá°è Çмú´ëȸ (2004)


25

ÁÖ»ó¿ì

¡°Tunable diode laser absorption spectroscopy for atmospheric gas monitoring¡±

´ëÇÑÈ­ÇÐȸ Á¦93ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2004)


24

Á¶±¤ÈÖ, ÁÖ»ó¿ì

¡°Diffrentiation of tautomers for uracil and thymine adsorbed on gold and silver nanoparticle surfaces investigated by concentration-dependent surface-enhanced Raman scattering and density functional theory calculations¡±

´ëÇÑÈ­ÇÐȸ Á¦93ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2004)


23

±è¼ºÀÏ, À¯¹ü±Ù, Àü±ÙÈ£, °­À§°æ, ÁÖ»ó¿ì

¡°Catalytic effect of Ni nanoparticles prepared by pulsed laser ablation¡±

´ëÇÑÈ­ÇÐȸ Á¦93ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2004)


22

Ȳ½Â±¸, ÁÖ»ó¿ì, ±è¿ÏÁß, À±¿Ï¼ö, ÃÖÀμº

¡°Density functional theoretical studies of the phenylisocyanide adsorption on Ag and Au surfaces¡±

´ëÇÑÈ­ÇÐȸ Á¦93ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2004)


21

±èÅÂÈÆ, ÀÌ°­ÅÃ, ÁÖ»ó¿ì

¡°Size-dependent aggregation behaviors of gold nanoparticles investigated by DLVO theory¡±

´ëÇÑÈ­ÇÐȸ Á¦93ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2004)


20

±è¼ºÀÏ, ¼­µ¿¿î, ÀÓ±Ô¿í, °­ÅÂÈñ, ÁÖ»ó¿ì

¡°Angle-resolved near-edge X-ray absorption fine structure spectroscopy of biphenyl derivatives on Ag and Au films¡±

´ëÇÑÈ­ÇÐȸ Á¦93ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2004)


19

ÁÖ»ó¿ì, ±è¼º±Ù

¡°ÆÄÀå°¡º¯ ´ÙÀÌ¿Àµå ·¹ÀÌÀú Èí¼ö ºÐ±¤ÇÐÀ» »ç¿ëÇÑ ´ë±âȯ°æºÐ¼®¡±

Çѱ¹´ë±âȯ°æÇÐȸÃß°èÇмú´ëȸ (2003)


18

±è¼ºÀÏ, ÃÖÀμº, ÁÖ»ó¿ì

¡°Preparation of Ni-Pd Catalytic Nanoparticles by Pulsed-Laser Ablation¡±

´ëÇÑÈ­ÇÐȸ Á¦92ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2003)


17

À±Ã¢Áß, ÁÖÀç¹ü, ÁÖ»ó¿ì

¡°Protein Immobilization on Gold Nanoparticle Surfaces¡±

´ëÇÑÈ­ÇÐȸ Á¦92ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2003)


16

¼­µ¿¿î, ¾ÆÄ¥¼º, À±¿Ï¼ö, ÁÖ»ó¿ì

¡°Adsorption of p-Biphenylisocyanide on Gold Nanorods¡±

´ëÇÑÈ­ÇÐȸ Á¦92ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2003)


15

¹ÚÇü¼®, ÀÌÄ¥¿ø, ÃÖº´±¸, °ø¸í¼± (2003)

¡°½Ç¶õ °¡±³Çü °íºÐÀÚ ÀüÇØÁúÀÇ Á¦Á¶ ¹× Ư¼ºÁ¶»ç¡±

Çѱ¹ °íºÐÀÚÇÐȸ Ãá°èÇмú´ëȸ


14

±è¼ºÀÏ, ÁÖ»ó¿ì

¡°Preparation of Au-Pt Bimetalic Nanolobes and Pd Nanoparticles by Pulsed-Laser Ablation¡±

´ëÇÑÈ­ÇÐȸ Á¦91ȸ ÃÑȸ ¹× Çмú¹ßǥȸ (2003)


13

À±Ã¢Áß, ÁÖ»ó¿ì

¡°DNA and RNA Bases on Gold Nanoparticles¡±

´ëÇÑÈ­ÇÐȸ Á¦91ȸÃÑȸ ¹× Çмú¹ßǥȸ (2003)


12

¼­µ¿¿î, À±Ã¢Áß, ±è¼ºÀÏ, ÀåÈ£Á¤, ÁÖ»ó¿ì

¡°Quenching of Growth of ZnO Nanoparticles by Adsorption of Organic Surfactants¡±

´ëÇÑÈ­ÇÐȸ Á¦91ȸÃÑȸ ¹× Çмú¹ßǥȸ (2003)


11

ÀÌÃæ·Î,¹è¼ºÁø,°ø¸í¼±,±è°ü, ÁÖ»ó¿ì

Spectroelectrochemical study of 4-cyanobiphenyl on Ag and Au surfaces

´ëÇÑÈ­ÇÐȸÁ¦89ȸÃÑȸ¹×Çмú¹ßǥȸ (2002)


10

ÁÖ»ó¿ì

Determination of the Dihedral Angle of p-Biphenylthiolate on Gold and Silver

´ëÇÑÈ­ÇÐȸ°íüºÐ°úȸ °íüºÐ°úȸÀÇ ¼º±Õ°ü´ëÇб³ (2002)


9

¹ÚÀç¼®,ÃÖÁÖ³²,ÀÌÄ¥¿ø, ÁÖ»ó¿ì, ¹èÀå¼ø,°ø¸í¼±,

PeryleneÀ¯µµÃ¼¸¦ Æ÷ÇÔÇÏ´Â ¹Ì¼¼½Ç¸®Ä«ÀÇ ¹ß±¤Æ¯¼ºÁ¶»ç

Çѱ¹°ø¾÷È­ÇÐȸÃß°èÃÑȸ¹×¿¬±¸³í¹®¹ßǥȸ (2001)


8

ÃÖÁÖ³²,ÀÌÄ¥¿ø, ÁÖ»ó¿ì,±Ý³»¸®,°ø¸í¼±,

¡°Chemiluminescence Characterization of Organic Fluorophores Containing Napthalene Units¡±

Çѱ¹°ø¾÷È­ÇÐȸÃß°èÃÑȸ¹×¿¬±¸³í¹®¹ßǥȸ (2001)


7

ÀÌÃæ·Î,¹Ú½ÂÇõ,ÀÌÄ¥¿ø,°ø¸í¼±,±è°ü, ÁÖ»ó¿ì,

¡°±Ý,Àº ³ª³ëÀÔÀÚ¿Í ¹ÙÀÌÆä´Ò ÀÚ±âÁ¶¸³´ÜÃþ¸·ÀÇ °è¸é¼ºÁú ¿¬±¸¡±

Çѱ¹°ø¾÷È­ÇÐȸÃß°èÃÑȸ¹×¿¬±¸³í¹®¹ßǥȸ (2001)

6

ÀÌÃæ·Î,±è´ë¿í, ÁÖ»ó¿ì, °ø¸í¼±,

¡°Æ÷½ºÆ÷´½À» Æ÷ÇÔÇÑ ¿¡Æø½Ã-¸ó¸ð¸±³ªÀÌÆ®ÀÇ ÇÕ¼º°ú ¹°¼º ¿¬±¸¡±

Çѱ¹°ø¾÷È­ÇÐȸÃß°èÃÑȸ¹×¿¬±¸³í¹®¹ßǥȸ  (2001)


5

S. Joo, F. Kühnemann, and T. Oka

"Observation of the high J transition +P(12,12) of H3+" (53rd Annual Korean Chemical Society Meeting, p60, April 21, 2000)


4

S. W. Han, S. Joo , T. Ha, and K. Kim

¡°Self-Assembly of Anthraquinone-2-Carboxylic Acid on Gold: Infrared and Raman Spectroscopy, Ellipsometry, Cyclic Voltammetry, Quartz Crystal Microbalance, and Ab Initio Quantum Mechanical Study¡± (53rd Annual Korean Chemical Society Meeting, p91, April 21, 2000)


3

S. Joo, S. W. Han, and K. Kim

"Multilayer Formation of Dithiols on Gold Surface"

(53rd Annual Korean Chemical Society Meeting, p72, April 21, 2000)


2

S. Joo, S. W. Han, and K. Kim

"Adsorption Characteristics of Para-substituted -Dithiol on Colloidal Gold and Silver Surfaces: Surface-enhanced Raman Scattering Study"

(Annual Korean Chemical Society Meeting (1999))


1

S. Joo, F. Kühnemann, M.-F. Jagod and T. Oka

" Infrared spectrum of the strongly Coriolis coupled 2 and 4 vibrational states of CH3+"

(Annual Korean Chemical Society Meeting (1997))


¾îÁ¦ : 36

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ÃÖ´ë : 1,053

Àüü : 106,780