Molecular mechanics (MM) calculations together with coupling methods bridging MM and finite crystal elasticity are employed to simulate the fracture of defected carbon nanotubes (CNTs) and to compare with the available experimental results. The modified second generation Brenner potential (MTB-G2) is adopted in the calculations. Our MM calculations show fair agreement with quantum mechanical (QM) benchmarks, and indicate that one- and two-atom vacancies reduce the fracture strength of CNTs by 20%-33% (whereas the QM calculations predict 14%-27%), but these fracture strengths are still much higher than the experimental data. We then demonstrate that this experimental and theoretical discrepancy can be attributed to the presence of large-scal...
During carbon nanotubes synthesis a large amount of “defected ” ones are generated. The purification...
AbstractIn the present paper we intend to explain the discrepancies between theoretical and experime...
The mechanical properties of the so-called 'super' carbon nanotubes (STs) are investigated using cla...
We present quantum mechanical calculations using density functional theory and semiempirical methods...
AbstractAn atomistic-based dynamic crack model for recreating execution of carbon nanotubes by consi...
The discovery of carbon nanotubes (CNTs) in 1991 has made big impacts to the current society. They h...
AbstractAn atomistic-based dynamic crack model for recreating execution of carbon nanotubes by consi...
The intense interest in carbon nanotubes (CNTs) in recent years owes in part to their extraordinary ...
AbstractCarbon nanotubes (CNTs) having pristine structure (i.e. structure without any defect) have v...
Carbon nanotubes are hexagonally configured carbon atoms in cylindrical structures. Exceptionally ig...
The utility of carbon nanotubes as the reinforcement agents in polymer and metal matrix composites h...
Presented herein is an investigation into the buckling behavior of single-walled carbon nanotubes (S...
wes n fi e 1 ly we present calculations exploring the effects of multiple holes on the modulus, frac...
A new experimental and post-analysis procedure to perform tensile-loading experiments on nanofibers,...
Nanotubes are useful for not only strengthening polymer based materials that are of widespread use i...
During carbon nanotubes synthesis a large amount of “defected ” ones are generated. The purification...
AbstractIn the present paper we intend to explain the discrepancies between theoretical and experime...
The mechanical properties of the so-called 'super' carbon nanotubes (STs) are investigated using cla...
We present quantum mechanical calculations using density functional theory and semiempirical methods...
AbstractAn atomistic-based dynamic crack model for recreating execution of carbon nanotubes by consi...
The discovery of carbon nanotubes (CNTs) in 1991 has made big impacts to the current society. They h...
AbstractAn atomistic-based dynamic crack model for recreating execution of carbon nanotubes by consi...
The intense interest in carbon nanotubes (CNTs) in recent years owes in part to their extraordinary ...
AbstractCarbon nanotubes (CNTs) having pristine structure (i.e. structure without any defect) have v...
Carbon nanotubes are hexagonally configured carbon atoms in cylindrical structures. Exceptionally ig...
The utility of carbon nanotubes as the reinforcement agents in polymer and metal matrix composites h...
Presented herein is an investigation into the buckling behavior of single-walled carbon nanotubes (S...
wes n fi e 1 ly we present calculations exploring the effects of multiple holes on the modulus, frac...
A new experimental and post-analysis procedure to perform tensile-loading experiments on nanofibers,...
Nanotubes are useful for not only strengthening polymer based materials that are of widespread use i...
During carbon nanotubes synthesis a large amount of “defected ” ones are generated. The purification...
AbstractIn the present paper we intend to explain the discrepancies between theoretical and experime...
The mechanical properties of the so-called 'super' carbon nanotubes (STs) are investigated using cla...