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The Effect of Zr-Doping and Crystallite Size on the Mechanical ...

The Effect of Zr-Doping and Crystallite Size on the Mechanical ...

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Summary<br />

Experimental Methods <str<strong>on</strong>g>of</str<strong>on</strong>g> this Study<br />

<str<strong>on</strong>g>The</str<strong>on</strong>g> compressi<strong>on</strong> behavior <str<strong>on</strong>g>of</str<strong>on</strong>g> anatase <str<strong>on</strong>g>and</str<strong>on</strong>g> rutile was studied for TiO2 <str<strong>on</strong>g>and</str<strong>on</strong>g><br />

Ti0.9<str<strong>on</strong>g>Zr</str<strong>on</strong>g>0.1O2 starting materials with crystallite size in <strong>the</strong> micro- <str<strong>on</strong>g>and</str<strong>on</strong>g> also nanometer<br />

range. Compressi<strong>on</strong> experiments were carried out in <strong>the</strong> diam<strong>on</strong>d anvil cell <str<strong>on</strong>g>and</str<strong>on</strong>g> samples<br />

were characterized by in-situ X-ray diffracti<strong>on</strong>, X-ray absorpti<strong>on</strong> <str<strong>on</strong>g>and</str<strong>on</strong>g> Raman<br />

spectroscopic measurements. A sol-gel route was developed for <strong>the</strong> syn<strong>the</strong>sis <str<strong>on</strong>g>of</str<strong>on</strong>g> starting<br />

materials Tix:<str<strong>on</strong>g>Zr</str<strong>on</strong>g>1-xO2 with x=0.00, 0.10, 0.25, 0.33, 0.50, 0.67, 0.75, 0.90 <str<strong>on</strong>g>and</str<strong>on</strong>g> 1.0.<br />

Product <str<strong>on</strong>g>of</str<strong>on</strong>g> <strong>the</strong> syn<strong>the</strong>sis with x=0.90 <str<strong>on</strong>g>and</str<strong>on</strong>g> 1.0 was nanaoscale anatase, which was<br />

annealed at 1000°C to microscale rutile. In hydro<strong>the</strong>rmal experiments, nanoscale<br />

anatase Ti0.9<str<strong>on</strong>g>Zr</str<strong>on</strong>g>0.1O2 was used as starting material for <strong>the</strong> syn<strong>the</strong>sis <str<strong>on</strong>g>of</str<strong>on</strong>g> microscale <str<strong>on</strong>g>Zr</str<strong>on</strong>g>doped<br />

anatase.<br />

Compressi<strong>on</strong> Behavior <str<strong>on</strong>g>of</str<strong>on</strong>g> Anatase<br />

Experiments show that anatase becomes less compressible when <strong>the</strong> crystallite<br />

size is decreased to <strong>the</strong> nanometer scale <str<strong>on</strong>g>and</str<strong>on</strong>g> when <strong>the</strong> material is <str<strong>on</strong>g>Zr</str<strong>on</strong>g>-doped. Sec<strong>on</strong>d<br />

order EoS fits (K0’=4) resulted in a bulk modulus <str<strong>on</strong>g>of</str<strong>on</strong>g> microscale anatase <str<strong>on</strong>g>of</str<strong>on</strong>g> K0=178(1)<br />

GPa [1] <str<strong>on</strong>g>and</str<strong>on</strong>g> K0=179(2) GPa [2]. <str<strong>on</strong>g>The</str<strong>on</strong>g> nanoscale counterpart shows much higher values<br />

<str<strong>on</strong>g>of</str<strong>on</strong>g> K0=237(3) GPa [3] <str<strong>on</strong>g>and</str<strong>on</strong>g> K0=243(3) GPa [4]. In this study, it was found that<br />

microscale anatase Ti0.90<str<strong>on</strong>g>Zr</str<strong>on</strong>g>0.10O2 has K0=195(38) GPa, which is comparable to undoped<br />

material. Largest values were found for nanoscale anatase Ti0.90<str<strong>on</strong>g>Zr</str<strong>on</strong>g>0.10O2 with K0=258(8)<br />

GPa. <str<strong>on</strong>g>Zr</str<strong>on</strong>g>-doping thus reduces <strong>the</strong> compressibility <str<strong>on</strong>g>of</str<strong>on</strong>g> nanoanatase, even though <str<strong>on</strong>g>Zr</str<strong>on</strong>g>O2<br />

polymorphs are more compressible than <strong>the</strong> corresp<strong>on</strong>ding TiO2 forms.<br />

For <strong>the</strong> <str<strong>on</strong>g>Zr</str<strong>on</strong>g>-doped nanoanatase, XRD analysis showed a significant change in<br />

compressi<strong>on</strong> behavior at pressures >4 GPa, suggested as a c<strong>on</strong>sequence <str<strong>on</strong>g>of</str<strong>on</strong>g> deviatoric<br />

stresses during experimental compressi<strong>on</strong> <str<strong>on</strong>g>of</str<strong>on</strong>g> <strong>the</strong> nanoscale material. Computati<strong>on</strong>s <strong>on</strong><br />

supercells with different distances <str<strong>on</strong>g>of</str<strong>on</strong>g> neighboring <str<strong>on</strong>g>Zr</str<strong>on</strong>g>-atoms suggested cluster formati<strong>on</strong><br />

<str<strong>on</strong>g>of</str<strong>on</strong>g> <str<strong>on</strong>g>Zr</str<strong>on</strong>g> in <strong>the</strong> (Ti,<str<strong>on</strong>g>Zr</str<strong>on</strong>g>)O2 anatase. <str<strong>on</strong>g>The</str<strong>on</strong>g> resulting structural distorti<strong>on</strong>s can fur<strong>the</strong>r augment<br />

<strong>the</strong> change in compressi<strong>on</strong> behavior.<br />

9

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