Publications

Journal Articles

67. K. S. Kim, S. Y. Choi, T. W. Kim, M. Y. Kang, "Recycling waste melamine-formaldehyde resin as a photocatalytic enhancer for g-C3N4 photocatalyst and application on photoelectrochemical (PEC) reaction", ACS Sustain. Chem. Eng., 12, 7083-7091 (2024) (link)

66. S. Jung, R. A. Senthil, A. Min, A. Kumar, C. J. Moon, G. H. Jeong, T. W. Kim*, M. Y. Choi*, "Exploring Ir-doped NiFe-LDH nanosheets via pulsed laser for oxygen evolution kinetics: In situ Raman and DFT Insights", J. Mater. Chem. A, 12, 8694-8706 (2024) (link)

65. R. Shahin, R. K. Yadav, R. K. Verma, C. Singh, S. Singh, T. W. Kim, N. K. Gupta, J-O. Baeg, "Revolutionizing carbon chemistry: Solar-powered C(sp3)–N bond activation and CO2 transformation via newly designed SBE-Y cutting-edge dynamic photocatalyst", Photochem. Photobiol., DOI:10.1111/php.13895 (2024) (link)

64. S. Singh, R. K. Yadav, A. Umar, A. A. Ibrahim, T. W. Kim, A. P. Singh, R. Kumar, S. Chaudhary, D. K. Dwivedi, R. V. Singh, N. K. Gupta, J-O. Baeg, S. Baskoutas, "Transformation of PMMA from sunlight-blocking to sunlight-activated coupled with DNH photocatalytic platform for oxidative coupling of amines and generation/regeneration of LDC/NADH", Photochem. Photobiol., DOI:10.1111/php.13888 (2024) (link)

63. S. Rahnuma, R. K. Yadav, S. Singh, R. Shahin, A. Dubey, A. K. Singh, N. K. Gupta, J-O. Baeg, and T. W. Kim*, "Photocatalytic oxygenation of sulfide using solar light and ingenious GQDs@AQ catalyst: Mechanistic and synthetic investigations", Photochem. Photobiol., 100, 541-548 (2024) (link)

62. R. K. Shukla, R. K. Yadav, V. L. Gole, C. Y. Na, G. H. Jeong, S. Singh, J-O. Baeg, M. Y. Choi, N. K. Gupta, and T. W. Kim*, "Aloe vera-derived graphene-coupled phenosafranin photocatalyst for generation and regeneration of ammonia and NADH by mimicking natural photosynthetic route", Photochem. Photobiol., 100, 41-51 (2024) (link)

61. L. Kumari, S. Singh, R. K. Yadav, R. Shahin, T. W. Kim*, S. K. Pandey, D. Tiwari, A. K. Singh, D. K. Dwivedi, and N. K. Gupta, "Revolutionizing regeneration of NADH and deoxygenation of sulfide: Harnessing visible light with SDG@TPP composites for powerful synthetic applications", Mater. Today Commun., 37, 106862 (2023) (link)

60. A. Tripathi, R. K. Yadav, S. Singh, R. Shahin, D. K. Dwivedi, N. K. Gupta, T. W. Kim*, R. K. Verma, K. Kumar, "A donor-acceptor self-assembled graphitic carbon nitride based EB-T photocatalytic system for generation and regeneration of C(sp3)single bondF bond and NADH under sunlight", Diam. Relat. Mater., 136, 109998 (2023) (link)

59. J. Kim, E. Park, J. Park, J. Kim, K. Yoon, D. Oh, J. Lee, T. W. Kim, T. K. Kim, "High Level Ab Initio and Density Functional Study of TeF₆⁺ and TeCl₆⁺: Attainability of +7 Oxidation State for Tellurium", J. Chem. Phys., 158, 154301 (2023) (link)

58. S. Kumar, R. K. Yadav, S. Y. Choi, P. Singh, T. W. Kim*, "An efficient polydopamine modified sulphur doped GCN photocatalyst for generation of HCOOH from CO2 under sun ray irradiation", J. Photochem. Photobiol. A (Elsevier), 439, 114591 (2023) (link)

57. S. Kumar, R. K. Yadav, S. Gupta, S. Y. Choi, T. W. Kim*, "A spherical photocatalyst to emulate natural photosynthesis for the production of formic acid From CO2", J. Photochem. Photobiol. A (Elsevier), 438, 114545 (2023) (link)

56. P. Singh, S. Chaubey, C. Singh, S. Singh, R. K. Yadav, A. P. Singh, Subhash P. D., D. Tiwari, N. K. Gupta, T. W. Kim*, "Polystyrene based eosin-Y as a photocatalyst for solar light mediated NADH/NADPH regeneration and organic transformations", React. Chem. Eng. (RSC), 8, 1072-1082 (2023) (link)

55. S. Srivastava, R. K. Yadav, P. P. Pande, S. Singh, S. Chaubey, P. Singh, S. K. Gupta, S. Gupta, T. W. Kim, D. Tiwary, "Dye degradation and sulfur oxidation of methyl orange and thiophenol via newly designed nanocomposite GQDs/NiSe-NiO photocatalyst under homemade LED light", Photochem. Photobiol., 99, 1097-1105 (2023) (link)

54. S. Mishra, R. K. Yadav, S. Sing, S. Chaubey, P. Singh, C. Singh, S. K. Gupta, D. Tiwary, and T. W. Kim*, "Solar light responsive graphitic carbon nitride coupled porphyrin photocatalyst that uses for solar fine chemical production", Photochem. Photobiol., 99, 1080-1091 (2023) (link)

53. S. Chaubey, C. Singh, P. Singh, S. Singh, Y-j. Jeong, R. K. Yadav, A. K. Gupta, A. P. Singh, M. Kumar, and T. W. Kim*, "Solar light-assisted rod-shaped CPTF@FACC photocatalyst: An efficient platform for oxygenation reactions and coenzymes regeneration", Int. J. Energy Res., 46, 16643-16657 (2022) (link)

52. T. W. Kim, P. Kim, A. W. Mills, A. Chakraborty, S. Kromer, A. J. S. Valentine, F. N. Castellano, X. Li, and L. X. Chen, "Ligand structure dependent coherent vibrational wavepacket dynamics in pyrazolate-bridged Pt(II) dimers", J. Phys. Chem. C, 126, 11487-11497 (2022) (link)

51. H. Ki, T. W. Kim, J. Moon, J. Kim, Y. Lee, J. Heo, K. H. Kim, Q. Kong, D. Khakhulin, G. Newby, J. Kim, J. Kim, M. Wulff, and H. Ihee, "Photoactivation of triosmium dodecacarbonyl at 400 nm probed with time-resolved X-ray liquidography", Chem. Commun., 58, 7380-7383 (2022) (link)

50. S. J. Lee§, T. W. Kim§, J. G. Kim, C. Yang, S. R. Yun, C. Kim, Z. Ren, I. Kumarapperuma, J. Kuk, K. Moffat, X. Yang, and H. Ihee, "Light-induced protein structural dynamics in bacteriophytochrome revealed by time-resolved x-ray solution scattering", Science Advances, 8, eabm6278 (2022) (§Equal Contributions) (link)

49. S. Singh, R. K. Yadav, T. W. Kim*, C. Singh, P. Singh, S. Chaubey, A. P. Singh, J-O. Baeg, S. K. Gupta, and D. Tiwary, "Generation and regeneration of C(sp3)−F bond and 1,4-NADH/NADPH via newly designed S-gC3N4@Fe2O3/LC photocatalyst under solar light", Energy & Fuels, 36, 8402-8412 (2022) (link)

48. S. Satyam, R. K. Yadav, T. W. Kim*, C. Singh, P. Singh, S. Chaubey, B. Rose, and G. Dzhardimalieva, "In-situ prepared NRCPFs as highly active photo-platforms for In-Situ bond formation between aryldiazonium salts and heteroarenes", Photochem. Photobiol., 98, 748753 (2022) (link)

47. S. Singh, R. K. Yadav, T. W. Kim*, C. Singh, P. Singh, A. P. Singh, A. K. Singh, J-O. Baeg, and S. K. Gupta, "Rational design of graphitic carbon nitride catalytic-biocatalytic as a photocatalytic platform for solar fine chemical production from CO2", React. Chem. Eng. (RSC), 7, 1566-1572 (2022) (link)

46. C. Singh, R. K. Yadav, T. W. Kim*, J-O. Baeg, and A. P. Singh, "Greener one step synthesis of novel in-situ selenium-doped frameworks photocatalyst by melem and perylene dianhydride for enhanced solar fuel production from CO2", Photochem. Photobiol., 98, 998-1007 (2022) (link)

45. P. Singh, R. K. Yadav, C. Singh, S. Chaubey, S. Singh, A. P. Singh, J-O. Baeg, T. W. Kim*, and G. Dzhardimalieva, "Photocatalytic activity of ultrathin 2DPNs for enzymatically formic acid generation from CO2 and C-S/C-N bonds formation", Sustain. Energy Fuels., 6, 2223-2232 (2022) (link)

44. A. Singh, R. K. Yadav, U. Yadav, and T. W. Kim, "Highly efficient flower like graphene quantum dots based fuschin photocatalyst for selective NAD(P)H cofactor regeneration under solar light irradiation", Photochem. Photobiol., 98, 412-420 (2022) (link)

43. S. Chaubey, P. Singh, C. Singh, S. Singh, S. Shreya, R. K. Yadav, S. Mishra, Y-j. Jeong, B. K. Biswas, and T. W. Kim*, "Ultra-efficient synthesis of bamboo-shape porphyrin framework for photocatalytic CO2 reduction and consecutive C-S/C-N bonds formation", J. CO2 Util., 59, 101968 (2022) (link)

42. M. W. Mara, B. T. Phelan, Z-L. Xie, T. W. Kim, D. J. Hsu, X. Liu, A. J. S. Valentine, P. Kim, X. Li, S-i. Adachi, T. Katayama, K. L. Mulfort, and L. X. Chen, "Unveiling ultrafast dynamics in bridged bimetallic complexes using optical and X-ray transient absorption spectroscopies", Chem. Sci., 13, 1715-1724 (2022) (link)

41. S. Chaubey, R. K. Yadav, S. K. Tripathi, B. C. Yadav, S. N. Singh, and T. W. Kim*, "Covalent triazine framework as an efficient photocatalyst for regeneration of NAD(P)H and selective oxidation of organic sulfide", Photochem. Photobiol., 98, 150159 (2022) (link)

40. P. Singh, R. K. Yadav, K. Kumar, Y. Lee, A. K. Gupta, K. Kumar, B. C. Yadav, S. N. Singh, D. K. Dwivedi, S-H. Nam, A. P. Singh, and T. W. Kim*, "Eosin-Y and sulfur-codoped g-C3N4 composite for photocatalytic applications: regeneration of NADH/NADPH and oxidation of sulfide to sulfoxide", Catal. Sci. Technol., 11, 64016410 (2021) (link)

39. H. Ki,§ J. Jo,§ Y. Kim,§ T. W. Kim,§ C. Kim, Y. Kim, C. W. Kim, S. Muniyappan, S. J. Lee, Y. Kim, H. M. Kim, Y. Yang, Y. M. Rhee, and H Ihee, "Uncovering conformational distribution of a small protein with nanoparticle-aided cryo-electron microscopy sampling", J. Phys. Chem. Lett., 12, 6565–6573 (2021) (§Equal Contributions) (link)

38. S. J. Lee, Y. Kim, T. W. Kim, C. Yang, K. Thamilselvan, H. Jeong, J. Hyun, and H. Ihee, Reversible molecular motional switch based on circular photoactive protein oligomers: unexpected photo-induced contraction”, Cell Rep. Phys. Sci. 2, 100512 (2021) (link)

37. Y. Lee, J. G. Kim, S. J. Lee, S. Muniyappan, T. W. Kim, H. Ki, H. Kim, J. Jo, S. R. Yun, H. Lee, K. W. Lee, S. O. Kim, M. Cammarata, and H. Ihee, “Ultrafast coherent motion and helix rearrangement of homodimeric hemoglobin visualized with femtosecond X-ray solution scattering”, Nature Commun. 12, 3677 (2021) (link)

36. M. Choi, J. G. Kim, S. Muniyappan, H. Kim, T. W. Kim, Y. Lee, S. J. Lee, S. O. Kim, and H. Ihee, “Effect of abolition of intersubunit salt bridges on allosteric protein structural dynamics”, Chem. Sci., 12, 8207-8217 (2021) (link)

35. C. Singh, T. W. Kim,* R. K. Yadav, K. Kumar, and B. C. Yadav, “Anthracene-based g-C3N4 photocatalyst for regeneration of NAD(P)H and sulfide oxidation based on Z-scheme nature”, Int. J. Energy Res., 45, 13117-13129 (2021) (link)

34. P. Singh, R. K. Yadav, T. W. Kim,* T. C. Yadav, V. Gole, A. K. Gupta, K. Singh, K. Kumar, B. C. Yadav & D. K. Dwivedi, "Solar light active flexible activated carbon cloth based photocatalyst for Markovnikov-selective radical-radical cross-Coupling of S-Nucleophiles to Terminal Alkyne and LPG Sensing", J. Chin. Chem. Soc., 68, 1435-1444 (2021) (link)

33. C. Singh, R. K. Yadav, T. W. Kim,* P. P. Upare, A. K. Gupta, A. P. Singh, B. C. Yadav, and D. K. Dwivedi, “In-situ prepared solar light driven flexible actuated carbon cloth based nanorod photocatalyst for Selective Radical-Radical Coupling to Vinyl Sulfides”, Photochem. Photobiol., 97, 955-962 (2021) (link)

32. C. Singh, T. W. Kim,* R. K. Yadav, J-O. Baeg, V. Gole, and A. P. Singh, “Flexible covalent porphyrin framework film: An emerged platform for photocatalytic CH bond activation”, Appl. Surf. Sci., 544, 148938 (2021) (link)

31. H. Kim, J. G. Kim, T. W. Kim, S. J. Lee, S. Nozawa, S-i. Adachi, K. Yoon, J. Kim, and H. Ihee, “Ultrafast structural dynamics of in-cage isomerization of diiodomethane in solution”, Chem. Sci., 12, 2114-2120 (2021) (link)

30. P. Singh, R. K. Yadav, T. W. Kim, A. Kumar, and D. K. Dwivedi, “Chitosan‐based fluorescein isothiocyanate film as a highly efficient metal‐free photocatalyst for solar‐light‐mediated direct C-H arylation”, Int. J. Energy Res., 45, 5964-5973 (2021) (link)

29. S. Chaubey, R. K. Yadav, T. W. Kim,* T. C. Yadav, A. Kumar, D. K. Dwivedi, B. K. Pandey, and A. P. Singh, "Fabrication of graphitic carbon nitride‐based film: An emerged highly efficient catalyst for direct C–H arylation under solar light", Chin. J. Chem., 39, 633-639 (2021) (link)

28. C. Kim, T. W. Kim, S. Kim, I. Oh, H. Wonneberger, K. Yoon, M. Kwak, J. Kim, J. Kim, C. Li, K. Müllen, and H. Ihee, “Molecular-level understanding of excited states of N-annulated rylene dye for dye-sensitized solar cells”, J. Phys. Chem. C, 124, 22993-23003 (2020) (link)

27. I. Oh, H. Lee, T. W. Kim, C. W. Kim, S. Jun, C. Kim, E. H. Choi, Y. M. Rhee, W-D. Jang, and H. Ihee, “Enhancement of Energy Transfer Efficiency with Structural Control of Multichromophore Light‐Harvesting Assembly”, Adv. Sci. 7, 2001623 (2020) (link)

26. J. G. Kim, S. Nozawa, H. Kim, E. H. Choi, T. Sato, T. W. Kim, K. H. Kim, H. Ki, J. Kim, M. Choi, Y. Lee, J. Heo, K. Y. Oang, K. Ichiyanagi, R. Fukaya, J. H. Lee, J. Park, I. Eom, S. H. Chun, S. Kim, M. Kim, T. Katayama, T. Togashi, S. Owada, M. Yabashi, S. J. Lee, S. Lee, C. W. Ahn, D-S. Ahn, J. Moon, S. Choi, J. Kim, T. Joo, J. Kim, S-i. Adachi, and H. Ihee, "Mapping the emergence of molecular vibrations mediating bond formation", Nature, 582, 520-524 (2020) (link)

25. T. W. Kim, S. J. Lee, J. Jo, J. G. Kim, H. Ki, C. W. Kim, K. Cho, J. Choi, J. H. Lee, M. Wulff, Y. M. Rhee, and H. Ihee, “Protein folding from heterogeneous unfolded state revealed by time-resolved X-ray solution scattering”, Proc. Natl. Acad. Sci. U.S.A. 117, 14996-15005 (2020) (link)

24. H. Kim, J. G. Kim, S. Muniyappan, T. W. Kim, S. J. Lee, and H. Ihee, “Effect of occluded ligand migration on the kinetics and structural dynamics of homodimeric hemoglobin”, J. Phys. Chem. B, 124, 1550-1556 (2020) (link)

23. T. W. Kim, S. Jun, Y. Ha, R. K. Yadav, A. Kumar, C-Y. Yoo, H-K. Lim, H. Kim, J. Kim, J-O. Baeg, and H. Ihee, “Ultrafast charge transfer coupled with lattice phonons in two-dimensional covalent organic frameworks”, Nature Commun. 10, 1873 (2019) (link)

22. D. Yadav, N. Singh, T. W. Kim, J. Y. Kim, N-J. Park, and J-O. Baeg, “Highly regioselective and sustainable solar click reaction: a new post-synthetic modified triazole organic polymer as a recyclable photocatalyst for regioselective azide–alkyne cycloaddition reaction”, Green Chem., 21, 2677-2685 (2019) (link)

21. E. H. Choi, D-S. Ahn, S. Park, C. Kim, C. W. Ahn, S. Kim, M. Choi, C. Yang, T. W. Kim, H. Ki, J. Choi, M. N. Pedersen, M. Wulff, J. Kim, and H. Ihee, “Structural dynamics of bismuth triiodide in solution triggered by photoinduced ligand-to-metal charge transfer”, J. Phys. Chem. Lett., 10, 1279-1285 (2019) (link)

20. Y. Kim, C. Yang, T. W. Kim, K. Thamilselvan, Y. Kim, and H. Ihee, “Regulation of protein structural changes by incorporation of a small-molecule linker”, Int. J. Mol. Sci., 19, 3714 (2018) (link)

19. C. Yang,§ T. W. Kim,§ Y. Kim, J. Choi, S. J. Lee, and H. Ihee, “Kinetics of the E46Q mutant of photoactive yellow protein investigated by transient grating spectroscopy”, Chem. Phys. Lett., 683, 262-267 (2017) (§Equal Contributions) (link)

18. K. H. Kim, J. G. Kim, K. Y. Oang, T. W. Kim, H. Ki, J. Jo, J. Kim, T. Sato, S. Nozawa, S-i. Adachi, and H. Ihee, “Femtosecond X-ray solution scattering reveals that bond formation mechanism of a gold trimer complex is independent of excitation wavelength”, Struct. Dyn., 3, 043209 (2016) (link)

17. J. G. Kim, S. Muniyappan, K. Y. Oang, T. W. Kim, C. Yang, K. H. Kim, J. Kim, and H. Ihee, “Cooperative protein structural dynamics of homodimeric hemoglobin linked to water cluster at subunit interface revealed by time-resolved X-ray solution scattering”, Struct. Dyn., 3, 023610 (2016) (link)

16. T. W. Kim, C. Yang, Y. Kim, J. G. Kim, J. Kim, Y. O. Jung, S. Jun, S. J. Lee, S. Park, I. Kosheleva, R. Henning, J. J. van Thor, and H. Ihee, “Combined probes reveal how global conformational changes is temporally and spatially linked to local structural perturbation in photoactive yellow protein”, Phys. Chem. Chem. Phys., 18, 8911-8919 (2016) (link)

15. J. G. Kim, K. H. Kim, K. Y. Oang, T. W. Kim, H. Ki, J. Jo, J. Kim, T. Sato, S. Nozawa, S-i. Adachi, and H. Ihee, “Rotational dephasing of gold complex probed by anisotropic femtosecond X-ray solution scattering at an XFEL”, J. Phys. B: At. Mol. Opt. Phys., 48, 244005 (2015) (link)

14. K. H. Kim, J. Kim, K. Y. Oang, J. H. Lee, D. Grolimund, C. J. Milne, T. J. Penfold, S. L. Johnson, A. Galler, T. W. Kim, J. G. Kim, D. Suh, J. Moon, J. Kim, K. Hong, L. Guerin, T. K. Kim, M. Wulff, C. Bressler, and H. Ihee, “Identifying a major intermediate species by combining time-resolved X-ray solution scattering and X-ray absorption spectroscopy”, Phys. Chem. Chem. Phys., 17, 23298-23302 (2015) (link)

13. J. G. Kim,§ T. W. Kim,§ J. Kim, and H. Ihee, “Protein structural dynamics revealed by time-resolved X-ray solution scattering”, Acc. Chem. Res., 48, 2200-2208 (2015) (§Equal Contributions) (link)

12. J. Y. Kim, V. Adinolfi, B. R. Sutherland, O. Voznyy, S. J. Kwon, T. W. Kim, J. Kim, H. Ihee, K. Kemp, M. Adachi, M. Yuan, I. Kramer, S. Hoogland, and E. H. Sargent, “Single-step fabrication of quantum funnels via centrifugal colloidal casting of nanoparticle films”, Nature Commun., 6, 7772 (2015) (link)

11. S. Jun, C. Yang, T. W. Kim, M. Isaji, H. Tamiaki, H. Ihee, and J. Kim, “Role of thermal excitation in ultrafast energy transfer in chlorosomes revealed by two-dimensional electronic spectroscopy”, Phys. Chem. Chem. Phys., 17, 17872-17879 (2015) (link)

10. K. H. Kim, J. G. Kim, S. Nozawa, T. Sato, K. Y. Oang, T. W. Kim, H. Ki, J. Jo, S. Park, C. Song, T. Sato, K. Ogawa, T. Togashi, K. Tono, M. Yabashi, T. Ishikawa, J. Kim, R. Ryoo, J. Kim, H. Ihee, and S-i. Adachi, “Direct observation of bond formation in solution with femtosecond X-ray scattering”, Nature, 518, 385-389 (2015) (link)

9. K. Y. Oang, K. H. Kim, J. Jo, Y. Kim, J. G. Kim, T. W. Kim, S. Jun, J. Kim, and H. Ihee, “Sub-100-ps structural dynamics of horse heart myoglobin probed by time-resolved X-ray solution scattering”, Chem. Phys., 442, 137-142 (2014) (link)

8. S. Jun, T. W. Kim, C. Yang, M. Isaji, H. Tamiaki, H. Ihee, and J. Kim, “Ultrafast energy transfer in Chlorosome probed by femtosecond pump-probe polarization anisotropy”, Bull. Kor. Chem. Soc., 35, 703-704 (2014) (link)

7. T. W. Kim, J. G. Kim, C. Yang, H. Ki, J. Jo, and H. Ihee, “Pump-probe X-ray solution scattering reveals accelerated folding of cytochrome c upon suppression of misligation”, Bull. Kor. Chem. Soc., 35, 697-698 (2014) (link)

6. K. Y. Oang, J. G. Kim, C. Yang, T. W. Kim, Y. Kim, K. H. Kim, J. Kim, and H. Ihee, “Conformational substates of Myoglobin intermediate resolved by picosecond X-ray solution scattering”, J. Phys. Chem. Lett., 5, 804-808 (2014) (link)

5. K. H. Kim, S. Muniyappan, K. Y. Oang, J. G. Kim, S. Nozawa, T. Sato, S-y. Koshihara, R. Henning, I. Kosheleva, H. Ki, Y. Kim, T. W. Kim, J. Kim, S-i. Adachi, and H. Ihee, “Direct observation of cooperative protein structural dynamics of homodimeric hemoglobin from 100 ps to 10 ms with pump-probe X-ray solution scattering”, J. Am. Chem. Soc., 134, 7001-7008 (2012) (link)

4. T. W. Kim, J. H. Lee, J. Choi, K. H. Kim, L. J. van Wilderen, L. Guerin, Y. Kim, Y. O. Jung, C. Yang, J. Kim, M. Wulff, J. J. van Thor, and H. Ihee, “Protein structural dynamics of photoactive yellow protein in solution revealed by pump-probe X-ray solution scattering”, J. Am. Chem. Soc., 134, 3145-3153 (2012) (link)

3. J. Kim, J. H. Lee, J. Kim, S. Jun, K. H. Kim, T. W. Kim, M. Wulff, and H. Ihee, “Structural dynamics of 1,2-diiodoethane in cyclohexane probed by picosecond X-ray liquidography”, J. Phys. Chem. A, 116, 2713-2722 (2011) (link)

2. J. Kim, K. H. Kim, J. G. Kim, T. W. Kim, Y. Kim, and H. Ihee, “Anisotropic picosecond X-ray solution scattering from photoselectively aligned protein molecules”, J. Phys. Chem. Lett., 2, 350-356 (2011) (link)

1. W. Y. Sohn, T. W. Kim, and J. S. Lee, “Structure and energetics of C60O: a theoretical study”, J. Phys. Chem. A, 114, 1939-1943 (2010) (link)


Conference Proceedings and Book Chapters 

4. "시간분해 X-선 분광학을 이용한 광화학 반응 연구", 김태우, 방사광 과학과 기술, 30-4, 15–18 (2023) (link)

3. T. W. Kim, S. J. Lee, J. Jo, J. G. Kim, H. Ki, C. W. Kim, K. Cho, J. Choi, J. H. Lee, M. Wulff, Y. M. Rhee, and H. Ihee, “Shedding light on protein folding dynamics with heterogeneous unfolded states”,  ESRF Highlights 2020, Chapter: Complex systems and biomedical sciences, A. Joly (ED.), ESRF publication group, 63-64 (2021) (link)

2. D. M. Tiede, T. W. Kim, E. Sprague-Klein, G. Kwon, A. B. F. Martinson, and K. L. Mulfort, “Tracking structures in solar fuels catalysis: In-situ X-ray structure characterization of interfacial water-splitting molecular and thin-film catalysts”, 236th ECS meeting abstracts (2019) (link)

1. T. W. Kim, J. H. Lee, J. Choi, K. H. Kim, L. J. van Wilderen, L. Guerin, Y. Kim, Y. O. Jung, C. Yang, J. Kim, M. Wulff, J. J. van Thor, and H. Ihee, “Unraveling the protein structural dynamics of photoactive yellow protein in solution using pump-probe X-ray solution scattering”, ESRF Highlights 2012, Chapter: Soft condensed matter, G. Adams (ED.), ESRF publication group, 65-66 (2013) (link)

For the additional information, see Tae Wu's page on Google Scholar or Researchgate.