نتایج جستجو برای: template growth

تعداد نتایج: 860620  

Journal: Journal of Nanoanalysis 2016
Abdolraouf Samadi-Maybodi Amir Vahid Mohammad Teymouri

In this contribution, an effective and soft method for removal of template from nanochannels of mesoporous silica (MCM-41) is proposed. This method is based on chemically-modified solvent extraction which enhanced by means of an auxiliary organic compound, i.e. benzene sulfonamide. Template removal was performed in soft condition, i.e. in the presence of diluted sulfuric acid and at ambient tem...

Journal: :Jurnal Keperawatan 2019

Journal: :نشریه دانشکده فنی 0
محمد رضایی پژند رضا خواجوی

curls and curves of a shell interweave its various strain modes and link them together. this interactional behavior has yet frustrated all attempts for the construction of shell templates, which needs for an individual element test in traditional approaches. such a test fails to work for shell elements and must be reconstructed. in this paper, it is tried to study shell interactional behavior a...

2009
Nobuhiko P. Kobayashi Sagi Mathai Xuema Li Andrew Lohn Takehiro Onishi Shih-Yuan Wang Stanley Williams

A new route to grow an ensemble of indium phosphide single-crystal semiconductor nanowires is described. Unlike conventional epitaxial growth of single-crystal semiconductor films, the proposed route for growing semiconductor nanowires does not require a single-crystal semiconductor substrate. In the proposed route, instead of using single-crystal semiconductor substrates that are characterized...

2011
István Zachar Anna Fedor Eörs Szathmáry

The simulation of complex biochemical systems, consisting of intertwined subsystems, is a challenging task in computational biology. The complex biochemical organization of the cell is effectively modeled by the minimal cell model called chemoton, proposed by Gánti. Since the chemoton is a system consisting of a large but fixed number of interacting molecular species, it can effectively be impl...

Journal: :Chemical communications 2010
Bryan Kaehr C Jeffrey Brinker

We report an approach to position gold nanoparticle catalysts for metal reduction asymmetrically on a biological template (E. coli) by exploiting the polarity of the bacterial cell envelope undergoing growth and division.

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