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'''Gopakumar Thiruvancheril''' is an [[India]]n Assistant Professor of [[molecular electronics]] from [[Indian Institutes of Technology]]. He is an author of certain [[peer-review]]ed articles two of which, as of 2013, were cited over 60 times and appeared in such journals [[Journal of Physical Chemistry B]] and [[Journal of Physical Chemistry C|C]], including others.<ref>{{cite web|url=https://scholar.google.com/citations?hl=en&user=Wm4GC8YAAAAJ&view_op=list_works&pagesize=100|title=Gopakumar Thiruvancheril|publisher=[[Google Scholar]]|accessdate=December 12, 2013}}</ref> | '''Gopakumar Thiruvancheril''' is an [[India]]n Assistant Professor of [[molecular electronics]] from [[Indian Institutes of Technology]]. He is an author of certain [[peer-review]]ed articles two of which, as of 2013, were cited over 60 times and appeared in such journals [[Journal of Physical Chemistry B]] and [[Journal of Physical Chemistry C|C]], including others.<ref>{{cite web|url=https://scholar.google.com/citations?hl=en&user=Wm4GC8YAAAAJ&view_op=list_works&pagesize=100|title=Gopakumar Thiruvancheril|publisher=[[Google Scholar]]|accessdate=December 12, 2013}}</ref> | ||
He completed his Ph.D. in Physics at TU Chemnitz. <ref>http://www.iitk.ac.in/new/thiruvancheril-g-gopakumar</ref> | He completed his Ph.D. in Physics at TU Chemnitz. <ref>{{Cite web|url=http://www.iitk.ac.in/new/thiruvancheril-g-gopakumar|title = Thiruvancheril G. Gopakumar}}</ref> | ||
==Selected publications== | ==Selected publications== | ||
*{{cite journal|title=Adsorption of palladium phthalocyanine on graphite STM and LEED study|author=TG Gopakumar, M Lackinger, M Hackert|author2=F Müller |author3=M Hietschold |journal=[[Journal of Physical Chemistry B]]|volume=108|issue=23|pages=7839–7843|year=2004}} | *{{cite journal|title=Adsorption of palladium phthalocyanine on graphite STM and LEED study|author=TG Gopakumar, M Lackinger, M Hackert|author2=F Müller |author3=M Hietschold |journal=[[Journal of Physical Chemistry B]]|volume=108|issue=23|pages=7839–7843|year=2004|doi=10.1021/jp037751i}} | ||
*{{cite journal|title=Tunneling voltage polarity dependent submolecular contrast of naphthalocyanine on graphite. A STM study of close-packed monolayers under ultrahigh-vacuum conditions|author=M Lackinger, T Müller, TG Gopakumar, F Müller|author2=M Hietschold |author3=GW Flynn |journal=Journal of Physical Chemistry B|volume=108|issue=7|pages=2279–2284|year=2004}} | *{{cite journal|title=Tunneling voltage polarity dependent submolecular contrast of naphthalocyanine on graphite. A STM study of close-packed monolayers under ultrahigh-vacuum conditions|author=M Lackinger, T Müller, TG Gopakumar, F Müller|author2=M Hietschold |author3=GW Flynn |journal=Journal of Physical Chemistry B|volume=108|issue=7|pages=2279–2284|year=2004|doi=10.1021/jp036698v}} | ||
*{{cite journal|title=Electron‐Induced Spin Crossover of Single Molecules in a Bilayer on Gold|author=TG Gopakumar, F Matino, H Naggert|author2=A Bannwarth |author3=F Tuczek |author4=R Berndt |publisher=[[Angewandte Chemie|Angewandte Chemie International Edition]]|volume=51|issue=25|pages=6262–6266|year=2012}} | *{{cite journal|title=Electron‐Induced Spin Crossover of Single Molecules in a Bilayer on Gold|author=TG Gopakumar, F Matino, H Naggert|author2=A Bannwarth |author3=F Tuczek |author4=R Berndt |publisher=[[Angewandte Chemie|Angewandte Chemie International Edition]]|volume=51|issue=25|pages=6262–6266|year=2012}} | ||
*{{cite journal|title=Molecular structures on crystalline metallic surfaces–From STM images to molecular electronics|author=M Hietschold, M Lackinger, S Griessl, WM Heckl|author2=TG Gopakumar |author3=GW Flynn |publisher=Microelectronic Engineering|volume=82|issue=3|pages=207–214|year=2005}} | *{{cite journal|title=Molecular structures on crystalline metallic surfaces–From STM images to molecular electronics|author=M Hietschold, M Lackinger, S Griessl, WM Heckl|author2=TG Gopakumar |author3=GW Flynn |publisher=Microelectronic Engineering|volume=82|issue=3|pages=207–214|year=2005}} | ||
*{{cite journal|title=Effect of chain length and the nature of the monolayer on the electrical behavior of hydrophobically organized gold clusters|author=NK Chaki, M Aslam, TG Gopakumar|author2=J Sharma |author3=R Pasricha |author4=IS Mulla |author5=K Vijayamohanan |journal=Journal of Physical Chemistry B|volume=107|issue=49|pages=13567–13574|year=2003}} | *{{cite journal|title=Effect of chain length and the nature of the monolayer on the electrical behavior of hydrophobically organized gold clusters|author=NK Chaki, M Aslam, TG Gopakumar|author2=J Sharma |author3=R Pasricha |author4=IS Mulla |author5=K Vijayamohanan |journal=Journal of Physical Chemistry B|volume=107|issue=49|pages=13567–13574|year=2003|doi=10.1021/jp035032y}} | ||
*{{cite journal|title=Scanning tunneling microscopy and scanning tunneling spectroscopy studies of planar and nonplanar naphthalocyanines on graphite (0001). Part 1: Effect of nonplanarity on the adlayer structure and voltage-induced flipping of nonplanar tin-naphthalocyanine|author1=TG Gopakumar |author2=F Müller |author3=M Hietschold |journal=Journal of Physical Chemistry B|volume=110|issue=12|pages=6051–6059|year=2006}} | *{{cite journal|title=Scanning tunneling microscopy and scanning tunneling spectroscopy studies of planar and nonplanar naphthalocyanines on graphite (0001). Part 1: Effect of nonplanarity on the adlayer structure and voltage-induced flipping of nonplanar tin-naphthalocyanine|author1=TG Gopakumar |author2=F Müller |author3=M Hietschold |journal=Journal of Physical Chemistry B|volume=110|issue=12|pages=6051–6059|year=2006|doi=10.1021/jp055533e |pmid=16553416 }} | ||
*{{cite journal|title=Influence of Solvophobic Effects on Self-Assembly of Trimesic Acid at the Liquid− Solid Interface|author=NTN Ha, TG Gopakumar|author2=R Gutzler |author3=M Lackinger |author4=H Tang |author5=M Hietschold |publisher= Journal of Physical Chemistry C|volume=114|issue=8|pages=3531–3536|year=2010}} | *{{cite journal|title=Influence of Solvophobic Effects on Self-Assembly of Trimesic Acid at the Liquid− Solid Interface|author=NTN Ha, TG Gopakumar|author2=R Gutzler |author3=M Lackinger |author4=H Tang |author5=M Hietschold |publisher= Journal of Physical Chemistry C|volume=114|issue=8|pages=3531–3536|year=2010}} | ||
*{{cite journal|title=Coverage-Driven Electronic Decoupling of Fe-Phthalocyanine from a Ag (111) Substrate|author=TG Gopakumar, T Brumme, J Kroger|author2=C Toher |author3=G Cuniberti |author4=R Berndt |publisher=Journal of Physical Chemistry C|volume=115|issue=24|pages=12173–12179|year=2011}} | *{{cite journal|title=Coverage-Driven Electronic Decoupling of Fe-Phthalocyanine from a Ag (111) Substrate|author=TG Gopakumar, T Brumme, J Kroger|author2=C Toher |author3=G Cuniberti |author4=R Berndt |publisher=Journal of Physical Chemistry C|volume=115|issue=24|pages=12173–12179|year=2011}} | ||
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*{{cite journal|title=Effect of chain length on the tunneling conductance of gold quantum dots at room temperature|author=NK Chaki, TG Gopakumar, T Maddanimath|author2=M Aslam |author3=K Vijayamohanan |publisher=[[Journal of Applied Physics]]|volume=94|issue=5|pages=3663–3665|year=2003}} | *{{cite journal|title=Effect of chain length on the tunneling conductance of gold quantum dots at room temperature|author=NK Chaki, TG Gopakumar, T Maddanimath|author2=M Aslam |author3=K Vijayamohanan |publisher=[[Journal of Applied Physics]]|volume=94|issue=5|pages=3663–3665|year=2003}} | ||
*{{cite journal|title=Exploring the F16CoPc/Ag (110) interface using scanning tunneling microscopy and spectroscopy. 2. Adsorption-induced charge transfer effect|author1=M Toader |author2=TG Gopakumar |author3=P Shukrynau |author4=M Hietschold |publisher=[[Journal of Physical Chemistry C]]|volume=114|issue=49|pages=21548–21554|year=2010}} | *{{cite journal|title=Exploring the F16CoPc/Ag (110) interface using scanning tunneling microscopy and spectroscopy. 2. Adsorption-induced charge transfer effect|author1=M Toader |author2=TG Gopakumar |author3=P Shukrynau |author4=M Hietschold |publisher=[[Journal of Physical Chemistry C]]|volume=114|issue=49|pages=21548–21554|year=2010}} | ||
*{{cite journal|title=Scanning Tunneling Microscopy and Scanning Tunneling Spectroscopy Studies of Planar and Nonplanar Naphthalocyanine on Graphite (0001). Part 2: Tip-Sample Distance-Dependent I-V Spectroscopy|author1=TG Gopakumar |author2=F Müller |author3=M Hietschold |journal=Journal of Physical Chemistry B|volume=110|issue=12|pages=6060–6065|year=2006}} | *{{cite journal|title=Scanning Tunneling Microscopy and Scanning Tunneling Spectroscopy Studies of Planar and Nonplanar Naphthalocyanine on Graphite (0001). Part 2: Tip-Sample Distance-Dependent I-V Spectroscopy|author1=TG Gopakumar |author2=F Müller |author3=M Hietschold |journal=Journal of Physical Chemistry B|volume=110|issue=12|pages=6060–6065|year=2006|doi=10.1021/jp055535z |pmid=16553417 }} | ||
*{{cite journal|title=Broken Symmetry of an Adsorbed Molecular Switch Determined by Scanning Tunneling Spectroscopy|author=TG Gopakumar, T Davran‐Candan, J Bahrenburg|author2=RJ Maurer |author3=F Temps |author4=K Reuter |publisher=Angewandte Chemie International Edition|volume=52|issue=42|pages=11007–11010|year=2013}} | *{{cite journal|title=Broken Symmetry of an Adsorbed Molecular Switch Determined by Scanning Tunneling Spectroscopy|author=TG Gopakumar, T Davran‐Candan, J Bahrenburg|author2=RJ Maurer |author3=F Temps |author4=K Reuter |publisher=Angewandte Chemie International Edition|volume=52|issue=42|pages=11007–11010|year=2013}} | ||
*{{cite journal|title=Surface Control of Alkyl Chain Conformations and Chiral Amplification in 2D|author=N Hauptmann, K Scheil, TG Gopakumar|author2=FL Otte |author3=C Schuett |author4=R Herges |author5=R Berndt |publisher=Journal of the American Chemical Society|year=2013}} | *{{cite journal|title=Surface Control of Alkyl Chain Conformations and Chiral Amplification in 2D|author=N Hauptmann, K Scheil, TG Gopakumar|author2=FL Otte |author3=C Schuett |author4=R Herges |author5=R Berndt |publisher=Journal of the American Chemical Society|year=2013}} |