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Base T, Bastl Z, Londesborough MGS, Machacek J. A comparison of boron hydride- and hydrocarbon-based thiol derivatives assembled on gold surfaces. NSTI Nanotechnology Conference and Trade Show. 2008;1. Available at:
Base T, Machacek J, Hajkova Z, et al. Thermal isomerizations of monothiolated carboranes (HS)C2B10H11 and the solid-state investigation of 9-(HS)-1,2-C2B10H11 and 9-(HS)-1,7-C2B10H11. Journal of Organometallic Chemistry. 2015. Available at:
Base T, Bastl Z, Plzak Z, et al. Carborane Thiol-modified Gold Surfaces. A Study and Comparison of Modified Cluster and Flat Surfaces. 12th International Meeting on Boron Chemistry (IMEBORON-XII). 2005. imeboron_xii_2005_t_base_talk.pdf (2.19 MB) imeboron_xii_2005_t_base_abstract.pdf (184.38 KB)
Base T, Bastl Z, Havranek V, et al. Carboranedithiols: Building Blocks for Self-Assembled Monolayers on Copper Surfaces. Langmuir. 2012;28. Available at:
Base T. Carboranethiol-modified surfaces of gold colloids and films. Faculty of Chemical Technology, Institute of Inorganic Chemistry. 2007;Ph.D.:60. 2007_tomasbase_phdthesis.pdf (1.91 MB)
Base T, Bastl Z, Havranek V, et al. Carborane-thiol-silver interactions. A comparative study of the molecular protection of silver surfaces. Surface and Coatings Technology. 2010;204. Available at:
Base T, Cisarova I, Stepnicka P. Acid-catalyzed self-alkylation of FcCH(2)NHPh. Solid-state structures of FcCH(2)NHPh and (FcCH(2))2NPh. Inorganic Chemistry Communications. 2002;5(1). Available at:
Base T, Londesborough MGS. Chemie podivnych tvaru aneb Vylet do rise hydridu boru (in Czech). Vesmir. 2008;87:748-749. Available at: base_londesborough_vesmir_2008-11_vol87_pp748-749.pdf (175.89 KB)
Base T, Bastl Z, Slouf M, et al. Gold Micrometer Crystals Modified with Carboranethiol Derivatives. J. Phys. Chem. C. 2008;112(37). Available at:
Base T, Holub J, Fanfrlik J, et al. Icosahedral Carbaboranes with Peripheral Hydrogen– Chalcogenide Groups: Structures from Gas Electron Diffraction and Chemical Shielding in Solution. Chemistry A European Journal. 2019;25(9):2313-2321. Available at:
Base T, Bastl Z, Havranek V, Machacek J, Malina V. Carboranethiols: Building Blocks for Self-Assembled Monolayers on Copper Surfaces, or a Novel Class of Etchants?. European Materials Research Society, Spring Meeting. 2012. e-mrs_springmeeting_2012_t_base_poster.pdf (646.88 KB) e-mrs_springeeting_2012_t_base_abstract.pdf (16.55 KB)
Base T. Ve znamení boru. Funkcionalizace kovových povrchů. Scientific American (Czech edition). 2016;květen_2016:34-43. Available at:
Base T, Bastl Z, Plzak Z, et al. Carboranethiol-Modified Gold Surfaces. A Study and Comparison of Modified Cluster and Flat Surfaces. Langmuir. 2005;21(17). Available at:
Base T. Klastrové molekuly na površích substrátů (in Czech only). Scientific American (Czech edition). 2017;květen_2017:34-35. Available at: base_scientificamerican_2017_spec-sekce_uach_5-2017_web.pdf (394.57 KB)
Boldog I, Reiss G, Domasevitch KV, Base T, Braese S. When does a supramolecular synthon fail? Comparison of bridgehead-functionalized adamantanes: the tri- and tetra- amides and amine hydrochlorides. Crystal Growth & Design. 2019. Available at:
Boldog I, Bereciartua PJ, Bulanek R, et al. 10-vertex closo-carborane: a unique ligand platform for porous coordination polymers. CrystEngComm. 2016;18(12):2036-2040. Available at:!divAbstract.
Bould J, Machacek J, Londesborough MGS, et al. Decaborane Thiols as Building Blocks for Self-Assembled Monolayers on Metal Surfaces. Inorganic Chemistry. 2012;51.
Bould J, Base T, Londesborough MGS, et al. Reversible Capture of Small Molecules On Bimetallaborane Clusters: Synthesis, Structural Characterization, and Photophysical Aspects. Inorganic Chemistry. 2011;50. Available at: