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by
Zhang, Jun, author.
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I. A Covalent/Computational Approach for Sensing Chirality II. Oxidative Functionalization of the
by
Mazaheri, Leila, author.
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Self-organization and light-induced chirality in azo-glass material / Mazaheri, Leila, author.
by
Polavarapu, Prasad L., editor.
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Chirality.
by
Bhandari, Shiva S., author.
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tube diameter and chirality. The insulating nature of boron nitride nanotubes (BNNTs) has hindered
by
Maddox, Sean Michael, author.
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Atropisomerism represents a form of chirality that is often swept under the rug in medicinal
by
Hou, Zhentao, author.
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lifetimes of both KDE and S1 states for chirality-enriched SWCNT samples using time-correlated single photon
by
Hao, Bo, author.
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induce chirality. These chiral polymers wrap around the nanometer-sized (~3 nm) bimetallic nanoclusters
by
Anike, Jude Chinonso, author. (orcid)0000-0002-1129-5815
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properties that depends on the type of CNT (i.e. the number of walls), the chirality, purity etc. It is
by
Abendroth, John Michael, author.
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studies to elucidate the roles of spin and chirality in biology and in charge transfer at metal
by
Elkin, Pavel Konstantinovich, author. (orcid)0000-0002-3446-4589
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complete transfer of chirality, providing the corresponding 2,2-disubstituted indolines in an
by
Kung, Hsianghsi, author.
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orbitals into orders breaking either chirality or time reversal symmetry [Kung et al., Phys. Rev. Lett. 117
by
Sparrow, Ephraim M.
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Excerpt:
-- 3.4.3 Chirality and Diameter Effect -- 3.4.4 Defect and Vacancy -- 4. EXPERIMENTAL METHODS -- 4.1

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