Vlad Stolojan
Cited by
Cited by
Density, fraction, and cross-sectional structure of amorphous carbon films determined by x-ray reflectivity and electron energy-loss spectroscopy
AC Ferrari, A Libassi, BK Tanner, V Stolojan, J Yuan, LM Brown, SE Rodil, ...
Physical Review B 62 (16), 11089, 2000
Stress reduction and bond stability during thermal annealing of tetrahedral amorphous carbon
AC Ferrari, B Kleinsorge, NA Morrison, A Hart, V Stolojan, J Robertson
Journal of applied physics 85 (10), 7191-7197, 1999
Large-area synthesis of carbon nanofibres at room temperature
BO Boskovic, V Stolojan, RUA Khan, S Haq, SRP Silva
Nature materials 1 (3), 165-168, 2002
Density, sp3 content and internal layering of DLC films by X-ray reflectivity and electron energy loss spectroscopy
A LiBassi, AC Ferrari, V Stolojan, BK Tanner, J Robertson, LM Brown
Diamond and Related Materials 9 (3-6), 771-776, 2000
Hybrid carbon nanotube networks as efficient hole extraction layers for organic photovoltaics
GDMR Dabera, KDGI Jayawardena, MRR Prabhath, I Yahya, YY Tan, ...
ACS nano 7 (1), 556-565, 2013
Nanostructured copper phthalocyanine-sensitized multiwall carbon nanotube films
RA Hatton, NP Blanchard, V Stolojan, AJ Miller, SRP Silva
Langmuir 23 (11), 6424-6430, 2007
Determination of bonding in amorphous carbons by electron energy loss spectroscopy, Raman scattering and X-ray reflectivity
AC Ferrari, B Kleinsorge, G Adamopoulos, J Robertson, WI Milne, ...
Journal of non-crystalline solids 266, 765-768, 2000
Thermal expansion coefficient of hydrogenated amorphous carbon
FC Marques, RG Lacerda, A Champi, V Stolojan, DC Cox, SRP Silva
Applied Physics Letters 83 (15), 3099-3101, 2003
Multi-functional carbon fibre composites using carbon nanotubes as an alternative to polymer sizing
TR Pozegic, JV Anguita, I Hamerton, KDGI Jayawardena, JS Chen, ...
Scientific reports 6 (1), 37334, 2016
Structural and optoelectronic properties of C 60 rods obtained via a rapid synthesis route
Y Jin, RJ Curry, J Sloan, RA Hatton, LC Chong, N Blanchard, V Stolojan, ...
Journal of Materials Chemistry 16 (37), 3715-3720, 2006
Highly stretchable, directionally oriented carbon nanotube/PDMS conductive films with enhanced sensitivity as wearable strain sensors
MO Tas, MA Baker, MG Masteghin, J Bentz, K Boxshall, V Stolojan
ACS Applied Materials & Interfaces 11 (43), 39560-39573, 2019
The Relationship between Reaction Temperature and Carbon Deposition on Nickel Catalysts Based on Al2O3, ZrO2 or SiO2 Supports during the Biogas Dry …
ND Charisiou, SL Douvartzides, GI Siakavelas, L Tzounis, V Sebastian, ...
Catalysts 9 (8), 676, 2019
Confined crystals of the smallest phase-change material
CE Giusca, V Stolojan, J Sloan, F Börrnert, H Shiozawa, K Sader, ...
Nano letters 13 (9), 4020-4027, 2013
Ultrahigh Performance C60 Nanorod Large Area Flexible Photoconductor Devices via Ultralow Organic and Inorganic Photodoping
R Saran, V Stolojan, RJ Curry
Scientific reports 4 (1), 5041, 2014
Growth of carbon nanotubes at temperatures compatible with integrated circuit technologies
GY Chen, B Jensen, V Stolojan, SRP Silva
Carbon 49 (1), 280-285, 2011
Observation of van der Waals Driven Self‐Assembly of MoSI Nanowires into a Low‐Symmetry Structure Using Aberration‐Corrected Electron Microscopy
V Nicolosi, PD Nellist, S Sanvito, EC Cosgriff, S Krishnamurthy, WJ Blau, ...
Advanced Materials 19 (4), 543-547, 2007
High-rate low-temperature growth of vertically aligned carbon nanotubes
NG Shang, YY Tan, V Stolojan, P Papakonstantinou, SRP Silva
Nanotechnology 21 (50), 505604, 2010
Photo-thermal chemical vapor deposition growth of graphene
YY Tan, K Jayawardena, A Adikaari, LW Tan, JV Anguita, SJ Henley, ...
Carbon 50 (2), 668-673, 2012
The Inner Shell Influence on the Electronic Structure of Double‐Walled Carbon Nanotubes
Y Tison, CE Giusca, V Stolojan, Y Hayashi, SRP Silva
Advanced Materials 20 (1), 189-194, 2008
Chemico-physical characterisation and in vivo biocompatibility assessment of DLC-coated coronary stents
M Castellino, V Stolojan, A Virga, M Rovere, K Cabiale, MR Galloni, ...
Analytical and bioanalytical chemistry 405, 321-329, 2013
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