Sentence examples similar to backbone surface area from inspiring English sources

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Further freeze-drying of the colloidal mixture results in the SnO2 QDs@Ti3compositeosite with conductive Ti3C2Tx nanosheets as backbone, which displays a high specific surface area and abundant voids.

The monolithic backbone with a finite, albeit small surface area stemming from the micrometer-sized through-pores, however, shows permanent and desired porosity.

In addition, DNA can more effectively coat, separate, and solubilize CNTs than other surfactants because of the large surface area of its phosphate backbone, which interacts with water, and there are many bases in DNA that can bind to CNTs.

In addition, we employed a number of measures to characterize the structural and dynamical changes between the free and bound state of MSI-1, including the radius of gyration, the solvent accessible surface area (SASA), distance between backbone and/or side chain atoms of residues G35-L85 and W29-Q30, and Lipari and Szabo order parameters (Lipari and Szabo, 1982; Humphrey et al., 1996).

We have increased the surface area by using a porous composite electrode backbone made of (La0.8Sr0.2 0.95MnO3-δ/Ce0.9Gd0.1O1.95 (LSM/GDC).

To investigate detailed tertiary structure stability, each parameter of SASA values such as the whole surface area, polar region, non-polar region, and backbone of protein, was calculated.

Accessible surface area and intramolecular H-bond involvement of protein backbone amides are proposed as descriptors for characterizing binding pocket occurrence and evolution along MD trajectories.

The superior electrochemical properties are due to the 3D heterostructure, where the large specific surface area of rGO nanosheets serve as a conductive 2D backbone successfully offset structure limitation by the potential synergistic effect.

The overall root-mean-square deviation (rmsd) for the Cα carbon backbone for the two structures is 2.8 Å. StPurL is larger than TmPurLQS with a surface area of 41,000 Å, compared to 34,300 Å for the complex.

In contrast to the seed layer deposited by MS, the more uniform seed layer deposited by ALD resulted in ZnO branches with better crystallinity grown on the whole sidewall of the Si backbones, in addition to the stronger light absorption and higher photodegradation efficiency of MB for its larger surface area and higher surface curvature effect.

It was found that the ZnO/Si nanowire arrays presented a larger surface area with better crystalline and more uniform ZnO branches on the whole sidewall of Si backbones for the seed layer by atomic layer deposition, which gained a strong light absorption as high as 98% in the ultraviolet and visible range.

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