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Onion-like carbon (OLC), a typical 0D carbon material, appears as a spherical carbon nanoparticle with several concentric one-atom-thick shells, also considered as multi-shell fullerenes and exhibiting few sub-nanometer pores [63, 76, 134].
The X-Ray Diffraction investigation indicates that the obtained material appears as a mixture of few-layer graphene (FLG - 73.75%), multi-layer graphene (MLG - 22.38%) and a small chitosan contribution (3.87%).
Though the emission showed good performance the geometry was not optimised; the dense forest results in significant shielding of the CNTs from the applied electric field – the material appears as bulk - such that the full field enhancement factor of the CNTs was not realised in this instance.
Scale separation is assumed so that the homogenization theory can be applied: at the structural scale (macroscale) the material appears as homogeneous, while at the microscale it is characterized by a heterogeneous microstructure that affects the global behavior of the structure.
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The finished wall, which uses straw as a bonding material, appeared as if slightly eroded by a rainstorm.
It was found that the resistances of G2 titanium, transport wire and counter material appeared as ohmic impedance (R0).
The material appeared as variably-sized fragments of multi-layered eosinophilic, fibrillar material.
By TEM, this accumulated material appeared as electron dense regions spread around short, irregular and often disrupted axonemes whereas the basal body and transition zone appeared normal.
We observed that the unseparated starting material appeared as a smear initiating at ~90 100 kDa that gradually increased to large aggregates that did not enter the gel (Fig. 6b, left).
The newly injected material appeared as compact, 6E10 (Fig. 3b) and Congo red (not shown) positive deposits that were dispersed (Fig. 3c) and ultimately cleared (Fig. 3d) over time.
On the contrary, to add value to these residues by exploiting their chemical structure to obtain bio-products or bio-materials appears as a more interesting and sustainable approach.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com