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Svilen Bobev

Showing results (81-90 of 104) with videos related to

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Inorganic Chemistry|June 6, 2012
Synthesis, crystal chemistry, and magnetic properties of RE7Li8Ge10 and RE11Li12Ge16 (RE = La-Nd, Sm): new members of the [REGe2](n)[RELi2Ge](m) homologous seriesSheng-Ping Guo, Tae-Soo You, Ya-Ho Jung, et al.
Inorganic Chemistry|September 24, 2020
One Structure, Two Elements-LuGe<sub>2</sub> Superconductor vs Ordinary Metallic Conductor LuSn<sub>2</sub>. A Case Study on How Site-Selective Germanium for Tin Atom Substitution Leads to Modulating of the Charge DistributionJiliang Zhang, Fazhu Ding, Jey-Jau Lee, et al.
Dalton Transactions (Cambridge, England : 2003)|July 7, 2017
On the structures of the rare-earth metal germanides from the series REAl<sub>1-x</sub>Ge<sub>3</sub> (RE = Nd, Sm, Gd, Tb, Dy, Ho; 0.6 < x < 0.9). A tale of vacancies at the Al sites and the concomitant structural modulationsJiliang Zhang, Yanyan Liu, Chan Hung Shek, et al.
Inorganic Chemistry|May 8, 2009
Magnesium substitutions in rare-earth metal germanides with the orthorhombic Gd5Si4-type structure. Synthesis, crystal chemistry, and magnetic properties of RE(5-x)Mg(x)Ge4 (RE = Gd-Tm, Lu, and Y)Paul H Tobash, Svilen Bobev, Joe D Thompson, et al.
Inorganic Chemistry|July 25, 2022
Synthesis of Type II Ge and Ge-Si Alloyed Clathrates Using Solid-State Electrochemical Oxidation of Zintl Phase PrecursorsAndrew Dopilka, Alexander Ovchinnikov, Amanda Childs, et al.
Inorganic Chemistry|November 21, 2014
Structural variability versus structural flexibility. A case study of Eu9Cd4+xSb9 and Ca9Mn4+xSb9 (x ≈ (1)/2)Xiao-Cun Liu, Zhen Wu, Sheng-Qing Xia, et al.
Dalton Transactions (Cambridge, England : 2003)|August 8, 2025
On the structure of heptalithium distannide: Li<sub>7</sub>Sn<sub>2</sub> or Li<sub>7-<i>x</i></sub>Sn<sub>2</sub> (0.3 < <i>x</i> < 0.5)Salina Rahman, Kowsik Ghosh, Alexander Ovchinnikov, et al.
ACS Applied Materials & Interfaces|October 27, 2018
Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al <sub>y</sub>Ge<sub>46- y</sub> Based Type I Germanium ClathratesAndrew Dopilka, Ran Zhao, J Mark Weller, et al.
Dalton Transactions (Cambridge, England : 2003)|May 24, 2023
Lithium metal atoms fill vacancies in the germanium network of a type-I clathrate: synthesis and structural characterization of Ba<sub>8</sub>Li<sub>5</sub>Ge<sub>41</sub>Kowsik Ghosh, Alexander Ovchinnikov, Michael Baitinger, et al.
Inorganic Chemistry|December 8, 2011
Synthesis, structure, chemical bonding, and magnetism of the series RELiGe2 (RE = La-Nd, Sm, Eu)Svilen Bobev, Tae-Soo You, Nian-Tzu Suen, et al.
Pageof 11

Showing results (81-90 of 104) with videos related to

Sort By:
Pageof 11
Inorganic Chemistry|June 6, 2012
Synthesis, crystal chemistry, and magnetic properties of RE7Li8Ge10 and RE11Li12Ge16 (RE = La-Nd, Sm): new members of the [REGe2](n)[RELi2Ge](m) homologous seriesSheng-Ping Guo, Tae-Soo You, Ya-Ho Jung, et al.
Inorganic Chemistry|September 24, 2020
One Structure, Two Elements-LuGe<sub>2</sub> Superconductor vs Ordinary Metallic Conductor LuSn<sub>2</sub>. A Case Study on How Site-Selective Germanium for Tin Atom Substitution Leads to Modulating of the Charge DistributionJiliang Zhang, Fazhu Ding, Jey-Jau Lee, et al.
Dalton Transactions (Cambridge, England : 2003)|July 7, 2017
On the structures of the rare-earth metal germanides from the series REAl<sub>1-x</sub>Ge<sub>3</sub> (RE = Nd, Sm, Gd, Tb, Dy, Ho; 0.6 < x < 0.9). A tale of vacancies at the Al sites and the concomitant structural modulationsJiliang Zhang, Yanyan Liu, Chan Hung Shek, et al.
Inorganic Chemistry|May 8, 2009
Magnesium substitutions in rare-earth metal germanides with the orthorhombic Gd5Si4-type structure. Synthesis, crystal chemistry, and magnetic properties of RE(5-x)Mg(x)Ge4 (RE = Gd-Tm, Lu, and Y)Paul H Tobash, Svilen Bobev, Joe D Thompson, et al.
Inorganic Chemistry|July 25, 2022
Synthesis of Type II Ge and Ge-Si Alloyed Clathrates Using Solid-State Electrochemical Oxidation of Zintl Phase PrecursorsAndrew Dopilka, Alexander Ovchinnikov, Amanda Childs, et al.
Inorganic Chemistry|November 21, 2014
Structural variability versus structural flexibility. A case study of Eu9Cd4+xSb9 and Ca9Mn4+xSb9 (x ≈ (1)/2)Xiao-Cun Liu, Zhen Wu, Sheng-Qing Xia, et al.
Dalton Transactions (Cambridge, England : 2003)|August 8, 2025
On the structure of heptalithium distannide: Li<sub>7</sub>Sn<sub>2</sub> or Li<sub>7-<i>x</i></sub>Sn<sub>2</sub> (0.3 < <i>x</i> < 0.5)Salina Rahman, Kowsik Ghosh, Alexander Ovchinnikov, et al.
ACS Applied Materials & Interfaces|October 27, 2018
Experimental and Computational Study of the Lithiation of Ba<sub>8</sub>Al <sub>y</sub>Ge<sub>46- y</sub> Based Type I Germanium ClathratesAndrew Dopilka, Ran Zhao, J Mark Weller, et al.
Dalton Transactions (Cambridge, England : 2003)|May 24, 2023
Lithium metal atoms fill vacancies in the germanium network of a type-I clathrate: synthesis and structural characterization of Ba<sub>8</sub>Li<sub>5</sub>Ge<sub>41</sub>Kowsik Ghosh, Alexander Ovchinnikov, Michael Baitinger, et al.
Inorganic Chemistry|December 8, 2011
Synthesis, structure, chemical bonding, and magnetism of the series RELiGe2 (RE = La-Nd, Sm, Eu)Svilen Bobev, Tae-Soo You, Nian-Tzu Suen, et al.
Pageof 11