Publications
2026
Lee, J. W.; Kim, G. H.; Jeong, S. Y.; Jeon, J. H.; Kwon, H.; Kim, Y. S.; Jung, B.; See, S.; Rohde, J.-U.*; Hong, S. Y.* Spectroscopic evidence of a reduced alkenylnickel intermediate in catalytic Markovnikov-selective alkyne hydroboration.
ACS Catal. 2026, 16, 7551.[link]

Jeong, J. H.; Kim, D. H.; Kim, G. H.; Sim, G.; Rohde, J.-W.; Jung, B.*; See, S.*; Hong, S. Y.* Nickel-catalyzed twofold conjunctive coupling via philicity-alternating radical relay.
Adv. Sci. 2026, 13, e21442. [link]
Kang, J. W.; Kim, D. G.; Park, S. H.; Hong, S. Y.; Kim, K. T.* Sequence-defined polysulfates via S(VI)-Fluoride exchange iterative exponential growth (SuFEx IEG).
Angew. Chem. Int. Ed. 2026, 65, e25487. [link]
2025
Kim, G. H.; Jeon, J. H.; Jung, B.; Rohde, J.-U.*; Hong, S. Y.* Regioselective transformations of unsaturated systems catalyzed by low-valent nickel: cycloaddition, hydrosilylation, and dicarbofunctionalization.
Synlett 2025, 36, 1889. [link]
Kim, M. P.; Sahoo, M. K.; Chun, J. H.*; Hong, S. Y.* The first decade of SuFEx chemistry: advancements in SuFEx polymerization, non-canonical SuFEx reactions, and SuFEx radiochemistry. (selected as a cover image)
Synthesis 2025, 57, 1551. [link]
2024
Jeon, J. H.; Kim, G. H.; Lee, H. S.; Kim, D. H.; Lee, S.; Choe, W.; Jung, B.*; Rohde, J.-U.*; Hong, S. Y.* Chemo- and regioselective nickel-catalyzed reductive 1,4-alkylarylation of 1,3-enynes through an L2NiAr intermediate.
ACS Catal. 2024, 14, 8996. [link]

Kim, M. P.; Kayal, S.; Hwang, C.; Bae, J.; Kim, H.; Hwang, D. G.; Jeon, M. H.; Seo, J. K.; Ahn, D.; Lee, W.; Seo, S.; Chun, J.-H.*; Yu, Y.*; Hong, S. Y.* Iterative SuFEx approach for sequence-regulated oligosulfates and its extension to periodic copolymers.
Nat. Commun. 2024, 15, 3381. [link]

Lee, C.; Lee, D.; Hong, S. Y.; Jung, B.*; Seo, S.* Recent advances in earth-abundant transition metal-catalyzed dihydrosilylation of terminal alkynes.
Front. Chem. 2024, 12, 1411140. [link]
Sahoo, M. K.; Lee, J. W.; Lee, S.; Choe, W.; Jung, B.*; Kwak, J.*; Hong, S. Y.* Isolation and reactivity of arylnickel(II) complexes in nickel-catalyzed borylation of aryl fluorosulfates.
JACS Au 2024, 4, 1646–1653. [link]

Lee, C.; Jeon, J. H.; Lee, S.; Choe, W.; Kwak, S.; Seo, S.*; Hong, S. Y.*; Jung, B.* “Nickel-catalyzed mono-and dihydrosilylation of aliphatic alkynes in aqueous and aerobic conditions”
ACS Catal. 2024, 14, 5077–5087. [link]

Kim, S.; Jeon, J. H.; Park, K.; Kweon, S. H., Hyun, J.-H., Song, C.; Lee, D.; Song, G.; Yu, S.-H.; Lee, T. K.; Kwak, S. K.*; Lee, K. T.*; Hong, S. Y.*; N.-S. Choi.* Electrolyte design for high-voltage lithium-metal batteries with synthetic sulfonamide-based solvent and electrochemically active additives.
Adv. Mater. 2024, 36, 2401515. [link]
2023
Wie, M.; Kim, K. W.; Groehler IV, A. S.; Heo, S.; Whoo, J.; Son, K. ; Lee, E. A; Ra, J.S.; Hong, S. Y.; Sharer, O. D.; Choi, J. H.; Myung, K* Alkylation of nucleobases by 2-chloro-N,N-diethylethanamine hydrochloride (CDEAH) sensitizes PARP1-deficient tumors.
NAR CANCER 2023, 5, zcad042. [link]
Kim, M. P.; Cho, H.; Kayal, S.; Jeon, M. H.; Seo, J. K.; Son, J.; Jeong, J.; Hong, S. Y.*; Chun, J.-H.* Direct 18F-fluorosulfurylation of phenols and amines using an [18F]FSO2+ transfer agent generated in situ.
J. Org. Chem. 2023, 88, 6263. [link]
[Moon, H.; Nam, H.; Kim, M. P.; Lee, S. M.†; Kim, H.; Jeon, M. H.; Lee, Y.-S.; Kim, K.; Chun, J.-H. Kwak, S. K.*; Hong, S. Y.*; Choi, N.S.* Elastic Interfacial layer enabled the high-temperature performance of lithium-ion batteries via utilization of synthetic fluorosulfate additive.
Adv. Funct. Mater. 2023, 33, 2303029. [link]
Park, S. Y.; Park, S.; Lim, H. Y..; Yoon, M.; Choi, J.-H.; Kwan, S. K.; Hong, S. Y.; Choi, N.-S. Ni-ion-chelating strategy for mitigating the deterioration Li-ion batteries with nickel-rich cathodes.
Adv. Sci. 2023, 10, 2205918. [link]
2022
Lee, J. B.; Kim, G. H.; Jeon, J. H.; Jeong, S. Y.; Lee, S.; Park, J.; Lee, D.; Kwon, Y.; Seo, J. K.; Chun, J.-H.; Kang, S. J.; Choe, W.; Rohde, J.-U.*; Hong, S. Y.* Rapid access to polycyclic N-heteroarenes from unactivated, simple azines via a base-promoted Minisci-type annulation.
Nat. Commun. 2022, 13, 2421. [link]
Oh, J.; Lee, H. S.; Kim, M. P.; Lee, Y.-G.; Hong, S. Y.; Kim, K. M. A trade-off-free fluorosulfate-based flame-retardant electrolyte additive for high-energy lithium batteries.
J. Mater. Chem. A 2022, 10, 21933–21940. [link]
Sin, D. O.; Kim, H.; Jung, S.; Byun, S.; Choi, J.; Kim, M. P.; Kim, J. Y.; Kang, S. H.; Park, Y.-S.; Hong, S. Y.; Cho, M.; Lee, Y.-G.; Cho, K.; Lee, Y. M. Electrolyte-free graphite electrode with enhanced interfacial conduction using Li+-conductive binder for high-performance all-solid-state batteries.
Energy Storage Mater. 2022, 49, 481–492. [link]
Rhlee, J. H.; Saikat, M.; Lee, J. W.; Lee, H. S.; Bakhtiyorzoda, I. A.; Lee, S.; Park, J.; Kang, S. J.; Kim, Y. S.; Seo, J. K.; Myung, K.; Choe, W.; Hong, S. Y.* Synthesis of α,β-unsaturated ketones through nickel-catalysed aldehyde-free hydroacylation of alkynes.
Commun. Chem. 2022, 5, 13. [link]
Ryu, J. H.; Park, J.; Park, J.; Mun, J.; Im, E.; Lee, H.; Hong, S. Y.; An, K.; Lee, G.; Kim, Y.; Jo, P. S.; Kang, S. J. Carbothermal shock-induced bifunctional Pt-Co alloy electrocatalysts for high-performance seawater batteries.
Energy Storage Mater. 2022, 45, 282–290. [link]
2021
Cho, I. Y.; Kim, W. G.; Jeon, J. H.; Lee, J. W.; Seo, J. K.; Seo, J.*; Hong, S. Y.* Nickelocene as an air- and moisture-tolerant precatalyst in the regioselective synthesis of multi-substituted pyridines.
J. Org. Chem. 2021, 86, 9328–9343. [link]
Jeon, M. H.†; Kwon, Y.-D.†; Kim, M. P.; Torres, G. B.; Seo, J. K.; Son, J.; Ryu, Y. H.; Hong, S. Y.*; Chun, J.-H.* Late-stage 18F/19F isotope exchange for the synthesis of 18F-labeled sulfamoyl fluorides.
Org. Lett. 2021, 23, 2766–2771. [link]
[54] Park, S.; Jeong, S. Y.; Lee, T. K.; Park, M. W.; Lim, H. Y.; Sung, J.; Cho, J.; Kwak, S. K.*; Hong, S. Y.*; Choi, N.-S.* Replacing conventional battery electrolyte additives with dioxolone derivatives for high-energy-density lithium-ion batteries.
Nat. Commun. 2021, 12, 838. [link]
2020
Kwon, Y.-D.; Jeon, M. H.; Park, N. K.; Seo, J. K.; Son, J.; Ryu, Y. H.; Hong, S. Y.*; Chun, J. H.* Synthesis of 18F-labeled aryl fluorosulfates via nucleophilic radiofluorination.
Org. Lett. 2020, 22, 5511–5516. [link]

Kim, W. G.; Baek, S.-Y.; Jeong, S. Y.; Nam, D.; Jeon, J. H.; Choe, W.; Baik, M.-H.*; Hong, S. Y.* Chemo- and regioselective click reactions through nickel-catalyzed azide–alkyne cycloaddition.
Org. Biomol. Chem. 2020, 18, 3374–3381. [link]
Lee, S.; Cho, I. Y.; Kim, D.; Park, N. K.; Park, J.; Kim, Y.; Kang, S. J.; Kim, Y.*; Hong, S. Y.* Redox-active functional electrolyte for high-performance seawater batteries.
ChemSusChem 2020, 13, 2220–2224. [link]
2019
Lee, J. B.; Jeon, M. H.; Seo, J. K.; von Helden, G.; Rohde, J.-U.; Zhao, B. S.*; Seo, J.*; Hong, S. Y.* Annulative π-extension of unactivated benzene derivatives through nondirected C–H arylation.
Org. Lett. 2019, 21, 7004–7008. [link]

Maiti, S.; Kim, J.; Park, J.-H.; Nam, D.; Lee, J. B.; Kim, Y.-J.; Kee, J.-M.; Seo, J. K.; Myung, K.; Rohde, J.-U.; Choe, W.; Kwon, O.-H.*; Hong, S. Y.* Chemoselective trifluoroethylation reactions of quinazolinones and identification of photostability.
J. Org. Chem. 2019, 84, 6737–6751. [link]

Kim S.-H.; Lee, H. H.; Kim, J.-M.; Hong, S. Y.*; Lee, S.-Y.* Heteromat-framed metal-organic coordination polymer anode for high-performance lithium-ion batteries.
Energy Storage Mater. 2019, 19, 130–136 [link]
2018
Lee, Y. H.; Shin, D.-S.; Kim, D. Y.; Nam, D.; Choe, W.; Hong, S. Y.*; Oh, J. H.* Organic phototransistors based on self-assembled microwires of n-type distyrylbenzene derivative.
Asian J. Org. Chem. 2018, 7, 2302–2308. [link]
Kim, K.; Kim, Y.; Park, S.; Yang, H. J.; Park, S. J.; Shin, K.; Woo, J.-J.; Kim, S.; Hong, S. Y.*; Choi, N.-S.* Dual-function ethyl 4,4,4-trifluorobutyrate additive for high-performance Ni-rich cathodes and stable graphite anodes.
J. Power Sources 2018, 396, 276–287. [link]
Shin, D.-S.; Park, M.; Ryu, J.; Hwang, I.; Seo, J. K.; Seo, K.*; Cho, J.*; Hong, S. Y.* Nonaqueous arylated quinone catholytes for lithium-organic flow batteries.
J. Mater. Chem. A 2018, 6, 14761–14768. [link]
Lee, H. H.; Lee, J. B.; Park, Y.; Park, K. H.; Okyay, M. S.; Shin, D.-S.; Kim, S.; Park, J.; Park, N.; An, B.-K.; Jung, Y. S.; Lee, H.-W.*; Lee, K. T.*; Hong, S. Y.* Coordination polymers for high-capacity Li-ion batteries: metal-dependent solid-state reversibility.
ACS Appl. Mater. Interfaces 2018, 10, 22110–22118. [link]
Han, J. G.; Lee, J. B.; Cha, A.; Lee, T.; Cho, W.; Chae, S.; Kang, S. J.; Kwak, S. K.; Cho, J.*; Hong, S. Y.*; Choi, N.-S.* Unsymmetrical fluorinated malonatoborate as an amphoteric additive for high-energy-density lithium-ion batteries.
Energy Environ. Sci. 2018, 11, 1552–1562. [link]
Lee, H. H.; Nam, D.; Kim, C.-K.; Kim, K.; Lee, Y.; Ahn, Y. J.; Lee, J. B.; Choe, W.*; Choi, N.-S.*; Hong, S. Y.* Molecular engineered safer organic battery through the incorporation of flame retarding organophosphonate moiety.
ACS Appl. Mater. Interfaces 2018, 10, 10096–10101. [link]
2017
Kim, C.-K.; Kim, K.; Shin, K.; Woo, J.-J.; Kim, S.; Hong, S. Y.; Choi, N.-S.* Synergistic effect of partially fluorinated ether and fluoroethylene carbonate for high-voltage lithium-ion batteries with rapid chargeability and dischargeability.
ACS Appl. Mater. Interfaces 2017, 9, 44161–44172. [link]
Lee, J. B.; Kang, M. E.; Kim, J.; Lee, C. Y.; Kee, J.-M.; Myung, K.; Park, J.-U.*; Hong, S. Y.* Direct diversification of unmasked quinazolin-4(3H)-ones through orthogonal reactivity modulation.
Chem. Commun. 2017, 53, 10394–10397. [link]
Kim, W. G.; Kang, M. E.; Lee, J. B.; Jeon, M. H.; Lee, S.; Lee, J.; Choi, B.; Cal, P. M. S. D.; Kang, S.; Kee, J.-M.; Bernardes, G. J. L.; Rohde, J.-U.; Choe, W.; Hong, S. Y.* Nickel-catalyzed azide–alkyne cycloaddition to access 1,5-disubstituted 1,2,3-triazoles in air and water.
J. Am. Chem. Soc. 2017, 139, 12121-12124. [link]

(Selected as one of the Most Read Articles: Sep. 2017)
Highlighted in Organic Chemistry Portal [link]
[38] Mathew, B. P.; Yang, H. J.; Kim, J.; Lee, J. B.; Kim, Y.-T.; Lee, S.; Lee, C. Y.; Choe, W.; Myung, K.; Park, J.-U.*; Hong, S. Y.* An annulative synthetic strategy for building triphenylene frameworks via multiple C–H activations.
Angew. Chem., Int. Ed. 2017, 56, 5007–5011. [link]
Kim, K.; Park, I.; Ha, S.-Y.; Kim, Y.; Woo, M.-H.; Jeong, M.-H.; Shin, W. C.; Ue, M.; Hong, S. Y.; Choi, N.-S* Understanding the thermal instability of fluoroethylene carbonate in LiPF6-based electrolytes for lithium ion batteries.
Electrochim. Acta 2017, 225, 358–368. [link]
Yang, H. J.; Mathew, B. P.; Oh, D. G.; Myung, K.; Kwak, J. H.*; Hong, S. Y.* Efficient copper catalysts for C–H bond arylation under microwave heating: direct access to multi-substituted pivanilides.
Catal. Commun. 2017, 90, 83–86. [link]
Han, J.-G.; Park, I.; Cha, J.; Park, S.; Park, S.; Myeong, S.; Cho, W.; Kim, S.-S.; Hong, S. Y.; Cho, J.; Choi, N.-S.* Interfacial architectures derived by lithium difluoro(bisoxalato)phosphate for Li-rich cathodes with superior cycling stability and rate capability.
ChemElectroChem 2017, 4, 56–65. [link]
2016
Jeon, M. H.; Mathew, B. P.; Kuram, M. R.; Kim, W. G.; Myung, K.; Hong, S. Y.* A palladium and gold catalytic system enables direct access to O- and S-linked non-natural glyco-conjugates.
Org. Biomol. Chem. 2016, 14, 11518–11524. [link]
Kim, W. G.; Choi, B.; Yang, H.-J.; Han, J.-A.; Jung, H.; Cho, H.; Kang, S.*; Hong, S. Y.* Covalent conjugation of small-molecule adjuvants to nanoparticles induces robust cytotoxic T cell responses via DC activation
Bioconjugate Chem. 2016, 27, 2007–2013. [link]
Zhang, Y.; Fox, J. T.; Park, Y.-U.; Elliott, G.; Rai, G.; Cai, M.; Sakamuru, S.; Huang, R.; Xia, M.; Lee, K.; Jeon, M. H.; Mathew, B. P.; Park, H. D.; Edelmann, W.; Park, C. Y.; Hong, S. Y.; Maloney, D.; Myung, K.* A novel chemotherapeutic agent to treat tumors with DNA mismatch repair deficiencies.
Cancer Res. 2016, 76, 4183–4191. [link]
Kim, C.-K.; Shin, D.-S.; Kim, K.-E.; Shin, K.; Woo, J.-J.; Kim, S.; Hong, S. Y.*; Choi, N.-S.* Fluorinated hyperbranched cyclotriphosphazene simultaneously enhances safety and electrochemical performance of high-voltage lithium-ion batteries.
ChemElectroChem 2016, 3, 913–921. [link]
Mathew, B. P.; Yang, H. J.; Jeon, H.; Lee, J. H.; Kim, J. C.; Shin, T. J.; Myung, K.; Kwak, S. K.*; Kwak, J. H.*; Hong, S. Y.* C–H bond arylation of anilines inside copper-exchanged zeolites.
J. Mol. Catal. A: Chem. 2016, 417, 64–70. [link]
Kuram, M. R.; Kim, W. G.; Myung, K.; Hong, S. Y.* Copper-catalyzed direct synthesis of 1,2,4-oxadiazoles from amides and organic nitriles via oxidative N–O bond formation.
Eur. J. Org. Chem. 2016, 438–442. [link]
Song, Y.-M.; Kim, C.-K.; Kim, K.-E.; Hong, S. Y.*; Choi N.-S.* Exploiting chemically and electrochemically reactive phosphite derivatives for high-voltage spinel LiNi0.5Mn1.5O4 cathodes.
J. Power Sources 2016, 302, 22–30. [link]
2015
Park, M.; Shin, D.-S.; Ryu, J.; Choi, M.; Park, N.; Hong, S. Y.*; Cho, J.* Organic catholyte-containing flexible rechargeable lithium batteries.
Adv. Mater. 2015, 27, 5141–5146. [link]
Lee, H. H.; Park, Y.; Kim, S. H.; Yeon, S.-H.; Kwak, S. K.; Lee, K. T.*; Hong, S. Y.* Mechanistic studies of transition metal-terephthalate coordination complexes upon electrochemical lithiation and delithiation.
Adv. Funct. Mater. 2015, 25, 4859–4866. [link]
Kim, J. H.; Lee, M.-S.; Jeon, S.; Kim, K.; Hong S. Y.*; Park, J.-U.* Highly transparent and stretchable field-effect transistor sensors using graphene-nanowire hybrid nanostructures.
Adv. Mater. 2015, 27, 3292–3297 [link]
Woo, S. H.; Yadgarov, L.; Rosentsveig, R.; Tenne, R.; Hong, S. Y.* Fullerene-like Re-doped MoS2 nanoparticles as an intercalation host with fast kinetics for sodium ion batteries.
Isr. J. Chem. 2015, 55, 599–603. [link]
Seo, B.; Jeong, H. Y.; Hong, S. Y.; Zak, A.; Joo, S. H.* Impact of a conductive core in tungsten sulfide-based nanostructure on the hydrogen evolution reaction.
Chem. Commun. 2015, 51, 8334–8337. [link]
2014
Kwon, M.-S.; Choi, A.; Park, Y.; Cheon, J. Y.; Kang, H.; Jo, Y.; Kim, Y.; Hong, S. Y.; Joo, S. H.; Yang, C.*; Lee, K. T.* Synthesis of ordered mesoporous phenanthrenequinone-carbon via pi- interaction-dependent vapor pressure for rechargeable batteries.
Sci. Rep. 2014, 4, 7404. [link]
Lee, H. H.; Park, Y.; Shin, K.-H.; Lee, K. T.*; Hong, S. Y.* Abnormal excess capacity of conjugated dicarboxylates in lithium-ion batteries.
ACS Appl. Mater. Interfaces 2014, 6, 19118–19126. [link]
Kang, Y. J.; Yang, H. J.; Jeon, S.; Kang, Y.-S.; Do, Y. K.; Hong, S. Y.*; Kang, S.* Polyvalent display of monosaccharides on ferritin protein cage nanoparticles for the recognition and binding of cell-surface lectins.
Macromol. Biosci. 2014, 14, 619–625. [link]
Min, J.; Moon, H.; Yang, H. J.; Shin, H.-H.; Hong, S. Y.; Kang, S.* Development of P22 viral capsid nanocomposite as anti-cancer drug, bortezomib (BTZ), delivery nanoplatforms.
Macromol. Biosci. 2014, 14, 557–564. [link]
Han, J.-A; Kang, Y. J.; Shin, C.; Ra, J.-S.; Shin, H.-H.; Hong, S. Y.; Do, Y. K.*; Kang, S.* Ferritin protein cage nanoparticles as versatile antigen delivery nanoplatforms for dendritic cell (DC)-based vaccine development.
Nanomedicine: Nanotechnology, Biology and Medicine 2014, 10, 561–569. [link]
2013
Woo, S. H.; Lim, H.-W.; Jeon, S.; Travis, J. J.; George, S. M.; Lee, S.-H.; Jo, Y. N.; Song, J. H.; Jung, Y. S.; Hong, S. Y.; Choi, N.-S.; Lee, K. T.* Ion-exchangeable functional binders and separator for high temperature performance of Li1.1Mn1.86Mg0.04O4 spinal electrodes in lithium ion batteries.
J. Electrochem. Soc. 2013, 160, A2234–2243. [link]
Moon, H.; Kim, W. G.; Lim, S.; Kang, Y. J.; Shin, H.-H.; Ko, H.; Hong, S. Y.; Kang, S.* Fabrication of uniform layer-by-layer assemblies with complementary protein cage nanobuilding blocks via simple His-tag/metal recognition.
J. Mater. Chem. B 2013, 1, 4504–4510. [link]
Hong, S. Y.; Kim, Y.; Park, Y.; Choi, A.; Choi, N.-S.; Lee, K. T.* Charge carrier in rechargeable batteries: Na ions vs. Li ions.
Energy Environ. Sci. 2013, 6, 2067–2081. [link]
Shao, L.; Zhang, B.; Zhang, W.; Hong, S. Y.; Schlogl, R.; Su, D. S.* The role of palladium dynamics in the surface catalysis of coupling reactions.
Angew. Chem., Int. Ed. 2013, 52, 2114–2117. [link]
2012
Kwon, C.; Kang, Y. J.; Jeon, S.; Jung, S.; Hong, S. Y.*; Kang, S* Development of protein-cage-based delivery nanoplatforms by polyvalently displaying β-cyclodextrins on the surface of ferritins through copper(I)-catalyzed azide/alkyne cycloaddition.
Macromol. Biosci. 2012, 12, 1452–1458. [link]
Park, Y.; Shin, D.-S.; Woo, S. H.; Choi, N. S.; Shin, K. H.; Oh, S. M.; Lee, K. T.*; Hong, S. Y.* Sodium terephthalate as an organic anode material for sodium ion batteries.
Adv. Mater. 2012, 24, 3562–3567. [link]
2011
Lee, S. S.; Hong, S. Y.; Errey, J. C.; Izumi, A.; Davies, G. J.; Davis, B. G.* Mechanistic evidence for a front-side, SNi-type reaction in a retaining glycosyltransferase.
Nature Chem. Biol. 2011, 7, 631–638. [link]

2010–2003
Bernardes, G. J. L.; Kikkeri, R.; Maglinao, M.; Laurino, P.; Collot, M.; Hong, S. Y.; Lepenies, B.; Seeberger, P. H.* Design, synthesis and biological evaluation of carbohydrate-functionalized cyclodextrins and liposomes for hepatocyte-specific targeting.
Org. Biomol. Chem. 2010, 8, 4987–4996. [link]
Hong, S. Y.; Kreizman, R.; Rosentsveig, R.; Zak, A.; Sloan, J.; Enyashin, A. N.; Seifert, G.; Green, M. L. H.; Tenne, R.* One- and two-dimensional inorganic crystals inside inorganic nanotubes.
Eur. J. Inorg. Chem. 2010, 4233–4243. [link]
Hong, S. Y.; Tobias, G.*; Al-Jamal, K. T.; Ballesteros, B.; Ali-Boucetta, H.; Lozano-Perez, S.; Nellist, P. D.; Sim, R. B.; Mather, S. J.; Green, M. L. H.; Kostarelos, K.*; Davis, B. G.* Filled and glycosylated carbon nanotubes for in vivo radioemitter localization and imaging.
Nature Mater. 2010, 9, 485–490. [link]
Hong, S. Y.; Popovitz-Biro, R.; Tobias, G.; Ballesteros, B.; Davis, B. G.; Green, M. L. H.; Tenne, R.* Synthesis and characterization of WS2 inorganic nanotubes with encapsulated/intercalated CsI.
Nano Res. 2010, 3, 170–173. [link]
Kreizman, R.‡ ; Hong, S. Y.‡ ; Sloan, J.; Popovitz-Biro, R.; Albu-Yaron, A.; Ballesteros, B.; Tobias, G.; Davis, B. G.; Green, M. L. H.; Tenne, R.* Core-shell PbI2@WS2 inorganic nanotubes from capillary filling. (‡Equal contribution)
Angew. Chem., Int. Ed. 2009, 48, 1230–1233. [link]
Shao, L.; Tobias, G.; Salzmann, C. G.; Ballesteros, B.; Hong, S. Y.; Crossley, A.; Davis, B. G.; Green, M. L. H.* Removal of amorphous carbon for the efficient sidewall functionalisation of single-walled carbon nanotubes.
Chem. Commun. 2007, 5090–5092. [link]
Hong, S. Y.; Tobias, G.; Ballesteros, B.; El Oualid, F.; Errey, J. C.; Doores, K. J.; Kirkland, A. I.; Nellist, P. D.; Green, M. L. H.; Davis, B. G.* Atomic-scale detection of organic molecules coupled to single-walled carbon nanotubes.
J. Am. Chem. Soc. 2007, 129, 10966–10967. [link]
Enyashin, A. N.; Gemming, S.; Bar-Sadan, M.; Popovitz-Biro, R.; Hong, S. Y.; Prior, Y.; Tenne, R.; Seifert, G.* Structure and stability of molybdenum sulfide fullerenes.
Angew. Chem., Int. Ed. 2007, 46, 623–627. [link]
Bar-Sadan, M.; Enyashin, A. N.; Gemming, S.; Popovitz-Biro, R.; Hong, S. Y.; Prior, Y.; Tenne, R. Seifert, G.* Structure and stability of molybdenum sulfide fullerenes.
J. Phys. Chem. B 2006, 110, 25399–25410. [link]
Hong, S. Y.; Popovitz-Biro, R.; Prior, Y.; Tenne, R.* Synthesis of SnS2/SnS fullerene-like nanoparticles: a superlattice with polyhedral shape.
J. Am. Chem. Soc. 2003, 125, 10470–10474. [link]


