One-dimensional titanium dioxide nanomaterials: nanowires, nanorods, and nanobelts

X Wang, Z Li, J Shi, Y Yu - Chemical reviews, 2014 - ACS Publications
Titanium dioxide (TiO 2) is a widely used multifunctional ceramic material due to its excellent
stability and physical-chemical properties as well as its great accessibility and moderate …

Quantitative comparison of bright field and annular bright field imaging modes for characterization of oxygen octahedral tilts

YM Kim, SJ Pennycook, AY Borisevich - Ultramicroscopy, 2017 - Elsevier
Octahedral tilt behavior is increasingly recognized as an important contributing factor to the
physical behavior of perovskite oxide materials and especially their interfaces, necessitating …

Effect of Hf-doping on electrochemical performance of anatase TiO2 as an anode material for lithium storage

SV Gnedenkov, SL Sinebryukhov… - Royal Society …, 2018 - royalsocietypublishing.org
Hafnium-doped titania (Hf/Ti= 0.01; 0.03; 0.05) had been facilely synthesized via a template
sol–gel method on carbon fibre. Physico-chemical properties of the as-synthesized materials …

Investigating grain boundary structures and energetics of rutile with reactive molecular dynamics

PJ Shamberger, JL Wohlwend, AK Roy… - The Journal of …, 2016 - ACS Publications
Determining quantitative grain boundary (GB) energies as a function of microscopic
orientation parameters is essential in order to understand the population of boundaries …

Growth behavior and interface of (In+ Nb) co-doped rutile TiO2 films prepared on m-plane sapphire substrates

BC Li, SD Cheng, S Cheng, M Liu, L Lu, Y Dai, SB Mi - Thin Solid Films, 2021 - Elsevier
Abstract (In+ Nb) co-doped TiO 2 (TINO) films with a rutile structure have been prepared on
m-plane sapphire substrates using a pulsed laser deposition method. The film growth mode …

[HTML][HTML] Twinning-mediated anomalous alignment of rutile films revealed by synchrotron X-ray nanodiffraction

Y Lu, CY Chiang, Y Li, CS Ku, H Yan, E Huang, B Chen… - Iscience, 2021 - cell.com
Nanotwin structures in materials engender fascinating exotic properties. However, twinning
usually alter the crystal orientation, resulting in random orientation and limited …