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Papers

68. Nickel fluoride (NiF2)/porous carbon nanocomposite synthesized via ammonium fluoride (NH4F) treatment for lithium-ion battery            cathode applications

      J. Oh,† E. Lim,† J. Chun,* C. Jo* 

      J. Power Sources, vol. 521, pp.230935 (2022)

67. State of health monitoring by gas generation patterns in commercial 18650 lithium-ion batteries

      J. Kim, B. Gerelt-Od, E. Shin, H. Kang, N. Kim, C. Jo*, H. Son*, S. Yoon* 

      J. Electroanal. Chem., (2021)

66. Reliable protocols for calculating the specific energy and energy density of Li-ion batteries

      Y. Son,* H. Cha, C. Jo, A. S. Groombridge, T. Lee, A. Boies, J. Cho,* M. De Volder,* 

      Mater. Today Energy, vol. 21. pp. 100838 (2021)

65. The mechanical and electrochemical properties of direct-spun carbon nanotube mat-polyaniline composites

      W. Tan, C. Jo, J. Stallard, M. De Volder, N. A. Fleck*

      J. Energy Storage, vol. 41. pp. 102757 (2021)

64. Biomass-derived P,N self-doped hard carbon as bifunctional oxygen electrocatalyst and anode material for seawater batteries

      J. Kim,† J. Park,† J. Lee, W.-G. Lim, C. Jo,* J. Lee*

      Adv. Funct. Mater., vol. 31. pp. 2010882 (2021)

63. Biopolymer-based functional separator for stable Li metal battery with additive-free commercial electrolyte

      J. Jeong, J. Lee, J. Kim, J. Chun. D. G. Kang, S. M. Han, C. Jo,* J. Lee*

      J. Mater. Chem. A, vol. 9. pp. 7774-7781 (2021)

62.  Synthesis of sodium cobalt fluoride/reduced graphene oxide (NaCoF3/rGO) nanocomposites and their electrochemical properties   

       as the cathode of Li-ion batteries

      J. Oh,† J. Jang,† E Lim,* C. Jo,* J. Chun*

      Materials, vol. 14. pp. 547 (2021)

61. In situ Raman investigation of resting thermal effects on gas emission in charged commercial 18650 lithium ion batteries

      B. Gerelt-Od,† J. Kim,† E. Shin, H. Kang, N. Kim, C. Jo, H. Son,*, S. Yoon*

      J. Ind. Eng. Chem., vol. 96, pp. 339-344 (2021) 

60. Recent advances in the synthesis of mesoporous materials and their application in lithium-ion batteries and hybrid supercapacitors

      E. Lim,† J. Chun,† C. Jo,* J. Hwang*

      Korean J. Chem. Eng., vol. 38, pp. 227-247 (2021)

59. A review on recent approaches for designing SEI layer on sodium metal anodes

      J. Lee,† J. Kim,† S. Kim, C. Jo,* J. Lee*

      Mater. Adv., vol. 1, pp. 3143-3166 (2020)

58. A review of functional separators for lithium metal battery applications

      J. Jang,† J. Oh,† H. Jeong,† W. Kang,† C. Jo*

      Materials, vol. 13, pp. 4625 (2020), (Selected as 'Editor's Choice Paper')

57. High energy density anodes using hybrid Li intercalation and plating mechanisms on natural graphite  

      Y. Son, T. Lee, B. Wen, J. Ma, C. Jo, Y.-G. Cho, A. Boies, J. Cho,* M. De Volder*

      Energy. Envinron. Sci., vol. 13, pp. 3723-3731 (2020)

56. Bicontinuous phase separation of lithium-ion battery electrodes for ultrahigh areal loading  

      J. T. Lee, C. Jo, M. De Volder*

      Proc. Natl. Acd. Sci. U. S. A., vol. 117, pp. 21155-21161 (2020)

55. Photo-Rechargeable Zinc-Ion Capacitor using 2D Graphitic Carbon Nitride 

      B. D. Boruah, A. Mathieson, B. Wen, C. Jo, F. Deschler, M. De Volder*

      Nano Lett., vol 20, pp. 5967-5974 (2020)

54. Mesoporous carbon host material for stable lithium metal anode

      J. Jeong, J. Chun, W.-G. Lim, W. B. Kim, C. Jo*, J. Lee*

      Nanoscale, vol 12, pp. 11818-11824 (2020)

53. Morphological Control of Nanostructured V2O5 by Deep Eutectic Solvents

      S. Datta, C. Jo, M. De Volder*, L. Torrente-Murciano*

      ACS Appl. Mater. Interfaces, vol. 12, pp. 18803-18812 (2020)

52. Simultaneous suppression of shuttle effect and lithium dendrite growh by lightweight bifunctional separator for Li-S batteries 

      S. Kim,† W.-G. Lim,† A. Cho,† J. Jeong, C. Jo, D. Kang, S. M. Han, J. W. Han, J. Lee*
      ACS Appl. Energy Mater. vol. 3, pp. 2643-2652 (2020) 

51. A small-strain niobium nitride anode with ordered mesopores for ultra-stable potassium-ion batteries 

      J. Lee,† S. Kim,† J.-H. Park,† C. Jo, J. Chun, Y.-E. Sung*, J. Lee*
      J. Mater. Chem. A, vol. 8, pp. 3119-3127 (2020)

50. Plasma production of nanomaterials for energy storage: continuous gas-phase synthesis of metal oxide CNT materials via a 

      microwave plasma 

      B. Graves, S. Engelke, C. Jo, H. G. Baldovi, J. D. L. Verpilliere, M. De Volder, A. Boies*
      Nanoscale, vol. 12, pp. 5196-5208 (2020) 

49. Continuous flow synthesis of carbon coated iron silicide secondary particles for Li-ion batteries 

      C. Jo*, A. Groombridge, J. D. L. Verpilliere, J. T. Lee, Y. Son, H.-L. Liang, A. Boies, M. De Volder*
      ACS Nano, vol. 14, pp. 698-707 (2020) 

48. Amorphous tin oxide nanohelix structures based electrode for highly reversible Na-ion batteries

      I.Y. Choi,† C. Jo,† W.-G. Lim, J.-C. Han, B.-G. Chae, C. G. Park, J. Lee*, J. K. Kim*

      ACS Nano, vol. 13, pp. 6513-6521 (2019) 

47. Carbon dioxide to solid carbon at the surface of iron nanoparticles: hollow nanocarbons for sodium ion battery anode application 

      C. Jo,† Y. Mun,† E. Lim, S. Kim, J.S. Lee, J. Lee*

      J. CO2 Util., vol. 34, pp. 588-595 (2019)

46. A comprehensive review of materials with catalytic effects in Li-S batteries: Enhanced redox kinetics

      W.-G. Lim, S. Kim, C. Jo, J. Lee*

      Angew. Chem. Int. Ed., vol.58, pp. 2-14 (2019)

45. Self-assembly of hybrid nanorods for enhanced volumetric performance of nanoparticles in Li-ion batteries

      M. H. Modarres, S. Engelke, C. Jo, D. Seveno, M. D. Volder*

      Nano Lett., vol. 19, pp. 228-234 (2019) 

44. Approaching ultrastable high-rate Li-S batteries through hierarchically porous titanium nitride synthesized by multiscale phase 

      separation

      W.-G. Lim, C. Jo, A. Cho, J. Hwang, S. Kim, J.W. Han, J. Lee*

      Adv. Mater., vol. 31, pp. 1806547 (2019) (Featured as Front Cover Image, Jan. 15, 2019)

43. Programmed nanoparticle loaded nanoparticle for deep penetrating three-dimensional cancer therapy

      J. Kim,† C. Jo,† W.-G. Lim, S. Jung, Y. M. Lee, J. Lim, H. Lee, J. Lee*, W. J. Kim* 

      Adv. Mater., vol. 30, pp. 1707557 (2018) 

42. Multiscale phase separations for hierarchically ordered macro/mesostructured metal oxides

      C. Jo, J. Hwang, W.-G. Lim, J. Lim, K. Hur, J. Lee*

      Adv. Mater., vol. 30, pp. 1703829 (2018) 

41. Mesoporous tungsten oxynitride as electrocatalyst for promoting redox reactions of vanadium redox couple and performance of

      vanadium redox flow battery

      W. Lee,† C. Jo,† S. Youk, H. Y. shin, J. Lee*, Y. Chung*, Y. Kwon*

      Appl. Surf. Sci., vol. 429, pp. 187-195 (2018) 

40. Synergistic effect of molecular-type electrocatalysts with ultrahigh pore volume carbon microspheres for lithium-sulfur batteries

      W.-G. Lim, Y. Mun, A. Cho, C. Jo, S. Lee, J. W. Han, J. Lee* 

      ACS Nano, vol. 12, pp. 6013-6022 (2018) 

39. Simple modification with amine-and hydroxyl-group rich biopolymer on ordered mesoporous carbon/sulfur composite for lithium-

      sulfur batteries

      W.-G. Lim, C. Jo, J. Lee*, D. S. Hwang*

      Korean J. Chem. Eng., vol. 35, pp. 579-586 (2018) 

38. Ordered mesoporous titanium nitride as a promising carbon-free cathode for aprotic lithium-oxygen batteries

      B. G. Kim,† C. Jo,† J. Shin, Y. Mun, J. Lee*, J. W. Choi*

      ACS Nano, vol. 11, pp. 1736-1746 (2017) (Selected as “Science Highlights” of Pohang Accelerator Laboratory) 

37. Tracking the confinement effect of highly dispersive carbon in a tungsten oxide/carbon nanocomposite: Conversion anode materials

      in lithium ion batteries

      C. Jo,† W.-G. Lim,† A. H. Dao, S. Kim, S. Kim, S. Yoon*, J. Lee* 

      J. Mater. Chem. A, vol. 5, pp. 24782-24789 (2017)

36. Enzyme-driven hasselback-like DNA-based inorganic superstructures

      J. S. Lee, H. Kim, C. Jo, J. Jeong, J. Ko, S. Han, M. S. Lee, H.-Y. Lee, J. W. Han, J. Lee, J. B. Lee* 

      Adv. Funct. Mater., vol. 27, pp. 1704213 (2017) (Featured as Front Cover Image, Dec. 1, 2017)

35. Rational design of Li3VO4@carbon core-shell nanoparticles as new Li-ion hybrid supercapacotr anode materials

      E. Lim, W.-G. Lim, C. Jo, J. Chun, M.-H. Kim, K. C. Roh, J. Lee*

      J. Mater. Chem. A, vol. 5, pp. 20969-20977 (2017) 

34. General synthesis of N-doped macroporous graphene-encapsulated mesoporous metal oxides and their application as new anode

      materials for sodium-ion hybrid supercapacitor

      M. S. Kim,† E. Lim,† S. Kim, C. Jo, J. Chun, J. Lee*

      Adv. Funct. Mater., vol. 27, pp. 1603921 (2017) 

33. Solvothermal synthesis of sodium cobalt fluoride (NaCoF3) nanoparticle clusters

      J. Chun*, C. Jo, E. Lim. K. C. Roh, J. Lee*

      Mater. Lett., vol. 207, pp. 89-92 (2017) 

32. Facile conversion of activated carbon to battery anode material using microwave graphitization

      T. Kim,† C. Jo,† W.-G. Lim, J. Lee, J. Lee*, K.-H. Lee*

      Carbon, vol. 104, pp. 106-111 (2016)

31. Mini review of designed mesoporous materials for energy-storage applications: from electric double-layer capacitors to hybrid

      supercapacitors

      E. Lim,† C. Jo,† J. Lee*

      Nanoscale, vol. 8, pp. 7827-7833 (2016)

30. MoO2 nanocrystals interconnected on mesocellular carbon foam as a powerful catalyst for vanadium redox flow battery

      H. T. T. Pham,† C. Jo,† J. Lee*, Y. Kwon*

      RSC Adv., vol. 6, pp. 17574-17582 (2016)

29. Ammonium fluoride-mediated synthesis of anhydrous metal fluoride/mesoporous carbon nanocomposites for high performance

      lithium-ion battery cathodes

      J. Chun, C. Jo, S. Sahgong, M. G. Kim, E. Lim, D. H. Kim, J. Hwang, E. Kang, K. A. Ryu, Y. S. Jung, Y. Kim*, J. Lee*

      ACS Appl. Mater. Interfaces, vol. 8, pp. 35180-35190 (2016)

28. High-performance sodium-ion hybrid supercapacitor based on Nb2O5@carbon core-shell nanoparticles and reduced graphene

      oxide nanocomposite

      E. Lim, C. Jo, M. S. Kim, M.-H. Kim, J. Chun, H. Kim, J. Park, K. C. Roh, K. Kang, S. Yoon, J. Lee*

      Adv. Funct. Mater., vol. 26, pp. 3711-3719 (2016) (Featured as Front Cover Image, Jun. 7, 2016) 

27. Mesoporous Ge/GeO2/Carbon lithium-ion battery anodes with high capacity and high reversibility

      J. Hwang,† C. Jo,† M. G. Kim, J. Chun, E. Lim, S. Kim, S. Jeong, Y. Kim*, J. Lee*

      ACS Nano, vol. 9, pp. 5299-5309 (2015) 

26. Structural effect on electrochemical performance of ordered porous carbon electrodes for Na-ion batteries

      C. Jo, Y. Park, J. Jeong, K. T. Lee*, J. Lee*

      ACS Appl. Mater. Interfaces, vol. 7, pp. 11748-11754 (2015) 

25. Ultrafast synthesis of MoS2 or WS2-reduced graphene oxide composites via hybrid microwave annealing for anode materials of

      lithium ion batteries

      D. H. Youn,† C. Jo,† J. Y. Kim, J. Lee*, J. S. Lee*

      J. Power Sources, vol 295, pp. 228-234 (2015) 

24. Facile Synthesis of Nb2O5@carbon core-shell nanocrystals with controlled crystalline structure for high-power anodes in hybrid

      supercapacitors

      E. Lim, C. Jo, H. Kim, M.-H. Kim, Y. Mun, J. Chun, Y. Ye, J. Hwang, K.-S. Ha, K. C. Roh, K. Kang, S. Yoon*, J. Lee*

      ACS Nano, vol. 9, pp. 7497-7505 (2015) 

23. Ordered-mesoporous Nb2O5/carbon composite as a sodium insertion material

      H. Kim,† E. Lim,† C. Jo, G. Yoon, J. Hwang, S. Jeong, J. Lee*, K. Kang*

      Nano Energy, vol. 16, pp. 62-70 (2015) 

22. Effect of mesoporous structured cathode materials on charging potentials and rate capability of lithium-oxygen batteries

      J. Park, J. Jeong, S. Lee, C. Jo, J. Lee*

      ChemSusChem, vol. 8, pp. 3146-3152 (2015) 

21. Reversibility of lithium-ion-air batteries using lithium intercalation compounds as anodes

      J. Chun,† H. Kim,† C. Jo, E. Lim, J. Lee*, Y. Kim*

      ChemPlusChem, vol. 80, pp. 349-353 (2015) 

20. Advanced hybrid supercapacitor based on a mesoporous niobium pentoxide/carbon as high-performance anode

      E. Lim,† H. Kim,† C. Jo,† J. Chun, K. Ku, S. Kim, H. I. Lee, I.-S. Nam, S. Yoon*, K. Kang*, J. Lee*

      ACS Nano, vol. 8, pp. 8968-8978 (2014) 

19. Block copolymer directed ordered mesostructured TiNb2O7 multimetallic oxide constructed of nanocrystals as high power Li-ion

      battery anodes

      C. Jo, Y. Kim, J. Hwang, J. Shim, J. Chun, J. Lee*

      Chem. Mater., vol. 26, pp. 3508-3514 (2014) 

18. Simple fabrication of flexible electrodes with high metal-oxide content: electrospun reduced tungsten oxide/carbon nanofibers for

      lithium ion battery applications

      J. Lee,† C. Jo,† B. Park, W. Hwang, H. I. Lee, S. Yoon, J. Lee*

      Nanoscale, vol. 6, pp. 10147-10155 (2014)

17. Reverse micelle synthesis of colloidal nickel-manganese layered double hydroxide nanosheets and their pseudocapacitive

      properties

      H. Sim,† C. Jo,† T. Yu, E. Lim, S. Yoon, J. H. Lee, J. Yoo, J. Lee*, B. Lim*

      Chem. Eur. J., vol. 20, pp. 14880-14884 (2014) 

16. Improvement of desolvation and resilience of alginate binders for Si-based anodes in a lithium ion battery by calcium-mediated

      cross-linking

      J. Yoon,† D. X. Oh,† C. Jo,† J. Lee*, D. S. Hwang*

      Phys. Chem. Chem. Phys., vol. 16, pp. 25628-25635 (2014) 

15. Direct access to hierarchically porous inorganic oxide materials with three-dimensionally interconnected networks

      J. Hwang, C. Jo, K. Hur, J. Lim, S. Kim, J. Lee*

      J. Am. Chem. Soc., vol. 136, pp. 16066-16072 (2014)

14. Synthesis of hierarchical linearly assembled graphitic carbon nanoparticles via catalytic graphitization in SBA-15

      J. Kim*, J. Lee, Y. Choi, C. Jo

      Carbon, vol. 75, pp. 95-103 (2014) 

13. TiO2 nanodisks designed for Li-ion batteries: a novel strategy for obtaining an ultrathin and high surface area anode material at the

      ice interface

      G. Kim,† C. Jo,† W. Kim, J. Chun, S. Yoon, J. Lee*, W. Choi*

      Energy Environ. Sci., vol. 6, pp. 2932-2938 (2013) 

12. Block-copolymer-assisted one-pot synthesis of ordered mesoporous WO3-x/carbon nanocomposites as high-rate-performance

      electrodes for pseudocapacitor

      C. Jo, J. Hwang, H. Song, A. H. Dao, Y.-T. Kim, S. H. Lee, S. W. Hong, S. Yoon*, J. Lee*

      Adv. Funct. Mater., vol. 23, pp. 3747-3754 (2013) (Featured as Front Cover Image, Aug. 12, 2013) 

11. Functional mesoporous materials for energy applications: solar cells, fuel cells, and batteries

      Y. Ye,† C. Jo,† I. Jeong,† J. Lee*

      Nanoscale, vol. 5, pp. 4584-4605 (2013) (Feature article, Featured as Inside Back Cover, Jun. 07, 2013)

10. One-pot synthesis of tin-embedded carbon/silica nanocomposites for anode materials in lithium-ion batteries

      J. Hwang, S. H. Woo, J. Shim, C. Jo, K. T. Lee*, J. Lee*

      ACS Nano, vol. 7, pp. 1036-1044 (2013) 

9.   Simple synthesis of hierarchically structured partially graphitized carbon by emulsion/block-copolymer co-template method for     

      high power supercapacitor

      Y. Mun, C. Jo, T. Hyeon, J. Lee, K.-S. Ha, K.-W. Jun, S.-H. Lee, S.-W. Hong, H. I. Lee, S. Yoon, J. Lee*  

      Carbon, vol. 64, pp. 391-402 (2013) 

8.   Ordered mesoporous tungsten suboxide counter electrode for highly efficient iodine-free electrolyte-based dye-sensitized solar

      cells

      I. Jeong, C. Jo, A. Anthonysamy, J.-M. Kim, E. Kang, J. Hwang, E. Ramasamy, S.-W. Rhee, J. K. Kim, K.-S. Ha, K.-W. Jun, J. Lee* 

      ChemSusChem, vol. 6, pp. 299-307 (2013) 

7.   An ordered nanocomposite of organic radical polymer and mesocellular carbon foam as cathode material in lithium ion batteries 

      Y. Kim, C. Jo, J. Lee, C. W. Lee, S. Yoon*

      J. Mater. Chem., vol. 22, pp. 1453-1458 (2012) 

6.   Soft-template simple synthesis of ordered mesoporous titanium nitride-carbon nanocomposite for high performance dye-sensitized

      solar cell counter electrodes 

      E. Ramasamy,† C. Jo,† A. Anthonysamy, I. Jeong, J. K. Kim, J. Lee*

      Chem. Mater., vol. 24, pp. 1575-1582 (2012) 

5.   Development of novel mesoporous C-TiO2-SnO2 nanocomposites and their application to anode materials in lithium ion secondary

      batteries

      Y. Zhou, C. Jo, J. Lee, C. W. Lee, G. Qao, S. Yoon*

      Microporous Mesoporous Mater., vol. 151, pp. 172-179 (2012) 

4.   Nano-graphite functionalized mesocellular carbon foam with enhanced intra-penetrating electrical percolation networks for high

      performance electrochemical energy storage electrode materials 

      C. Jo,† S. An,† Y. Kim, S. Yoon*, J. Lee*  

      Phys. Chem. Chem. Phys., vol. 14, pp. 5695-5704 (2012) 

3.   Investigation of pseudocapacitive charge-storage behavior in highly conductive ordered mesoporous tungsten oxide electrodes

      C. Jo, I. Hwang, J. Lee*, C. W. Lee, S. Yoon*

      J. Phys. Chem. C, vol. 115, pp. 11880-11886 (2011) 

2.   Development of a high-performance anode for lithium ion batteries using novel ordered mesoporous tungsten oxide materials with

      high electrical conductivity

      S. Yoon*, C. Jo, S. Y. Noh, C. W. Lee, J. H. Song, J. Lee*

      Phys. Chem. Chem. Phys., vol. 13, pp. 11060-11066 (2011) 

1.   A novel mesoporous carbon-silica-titania nanocomposite as a high performance anode material in lithium ion batteries

      Y. Zhou, Y. Kim, C. Jo, J. Lee, C. W. Lee, S. Yoon*

      Chem. Commun., vol. 47, pp. 4944-4946 (2011)

Patents

10. Catalyst point, positive electrode active material containing same, and lithium-sulfur secondary battery

      D. W. Lee, J. Lee, W.-G. Lim, K. N. Sohn, D. K. Yang and C. Jo,

      Korean patent field: 10-2017-0069524 (May. 6, 2017), patent number: 10-2183658 (Nov. 26, 2020), US20200295354A1

9.   Method for manufacturing mesoporous silica nanoparticles and silica nanoparticles manufactured by the same

      C. Jo and J. Lee,

      Korean patent field: 10-2017-0098037 (Aug. 2, 2017), patent number: 10-1987366 (Jun. 3, 2019)

8.   Hierarchically porous inorganic oxide, method for preparing the same, and lithium-ion battery comprising the same

      C. Jo and J. Lee

      Korean patent field: 10-2017-0144572 (Nov. 1, 2017), patent number: 10-1905702 (Sept. 1, 2018)

7.   Ordered porous titanium nitride, method for preparing the same, and lithium-air battery comprising the same

      C. Jo, B. G. Kim, J. Lee and J. W. Choi

      Korean patent field: 10-2016-0098057 (Aug. 1, 2016), patent number: 10-1844969 (Mar. 28, 2018)

6.   Method of manufacturing hollow-type carbon nanoparticles, and method of manufacturing anode for sodium secondary battery

      using the same

      C. Jo, Y. Mun and J. Lee

      Korean patent field: 10-2016-0114957 (Sept. 7, 2016), patent number: 10-1797390 (Nov. 7, 2017)

5.   Titanium-niobium mesoporous oxide and manufacturing method thereof

      C. Jo and J. Lee

      Korean patent filled: 10-2015-0019217 (Feb. 9, 2015), patent number: 10-1738228 (May 15, 2017)

4.   Core-shell nanoparticles for anode active material and method for preparing the same

      E. Lim, C. Jo and J. Lee

      Korean patent filled: 10-2015-0138996 (Oct. 2, 2015), patent number: 10-1723545 (Mar. 30, 2017)

3.   Mesoporous anode active material and method for preparing the same

      C. Jo, J. Hwang and J. Lee

      Korean patent filled: 10-2015-0028472 (Feb. 27, 2015), patent number: 10-1717575 (Mar. 13, 2017)

2.   Mesoporous metal oxide, method for preparing the same and hybrid supercapacitor comparing the same

      E. Lim, C. Jo, H. Kim, K. Kang and J. Lee

      Korean patent field: 10-2014-0138532 (Oct. 14, 2014), patent number: 10-1578873 (Dec. 14, 2015)

1.   Ordered mesoporous tungsten oxide/carbon nanocomposite and manufacturing methods thereof

      C. Jo and J. Lee

      Korean patent filled: 10-2013-0079488 (Jul. 8, 2013), patent number: 10-1568999 (Nov. 9, 2015)

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