<?xml version="1.0" encoding="UTF-8"?>
<?xml-stylesheet type="text/xsl" href="https://mattlawgroup.org/wp-sitemap.xsl" ?>
<urlset xmlns="http://www.sitemaps.org/schemas/sitemap/0.9"><url><loc>https://mattlawgroup.org/publication/uniform-supported-metal-nanocrystal-catalysts-prepared-by-slurry-freeze-drying/</loc><lastmod>2021-08-05T21:44:23+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/tridens-transport-in-defected-nanoparticle-solids/</loc><lastmod>2021-08-05T21:44:34+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/solution-processable-integrated-cmos-circuits-based-on-colloidal-cuinse2-quantum-dots/</loc><lastmod>2021-08-05T19:57:34+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/structural-characterization-of-a-polycrystalline-epitaxially-fused-colloidal-quantum-dot-superlattice-by-electron-tomography/</loc><lastmod>2021-12-15T22:43:13+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/efficient-plasmon-mediated-energy-funneling-to-the-surface-of-aupt-core-shell-nanocrystals/</loc><lastmod>2021-08-05T19:57:58+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/electronic-passivation-of-pbse-quantum-dot-solids-by-trimethylaluminum-vapor-dosing/</loc><lastmod>2021-08-05T19:58:38+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/collective-topo-epitaxy-in-the-self-assembly-of-a-3d-quantum-dot-superlattice/</loc><lastmod>2021-08-05T19:58:45+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/low-frequency-electronic-noise-in-superlattice-and-random-packed-thin-films-of-colloidal-quantum-dots/</loc><lastmod>2021-08-05T19:58:54+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/reversible-aggregation-of-covalently-cross-linked-gold-nanocrystals-by-linker-oxidation/</loc><lastmod>2021-08-05T19:59:06+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/dynamic-deformability/</loc><lastmod>2021-08-21T23:48:10+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/in-situ-tem-observation-of-neck-formation-during-oriented-attachment-of-pbse-nanocrystals/</loc><lastmod>2021-08-05T19:59:24+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/chemical-generation-of-hydroxyl-radical-for-oxidative-footprinting/</loc><lastmod>2021-08-05T19:59:32+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/in-situ-tem-study-of-the-degradation-of-pbse-nanocrystals-in-air/</loc><lastmod>2021-08-05T19:59:45+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/charge-transport-mechanisms-in-cuinsexs2-x-quantum-dot-films/</loc><lastmod>2021-08-05T20:02:35+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/on-the-use-of-photocurrent-imaging-to-determine-carrier-diffusion-lengths-in-nanostructured-thin-film-field-effect-transistors/</loc><lastmod>2021-08-05T20:02:53+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/structural-and-magnetic-properties-of-cobalt-iron-disulfide-coxfe1-xs2-nanocrystals/</loc><lastmod>2021-08-05T20:03:14+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/textured-nanoporous-mobivo4-photoanodes-with-high-charge-transport-and-charge-transfer-quantum-efficiencies-for-oxygen-evolution/</loc><lastmod>2021-08-05T19:56:56+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/atomistic-modeling-of-sulfur-vacancy-diffusion-near-iron-pyrite-surfaces/</loc><lastmod>2021-08-21T23:45:01+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/synthesis-of-catecholate-ligands-with-phosphonate-anchoring-groups/</loc><lastmod>2021-08-21T23:43:40+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/protein-footprinting-by-pyrite-shrink-wrap-laminate/</loc><lastmod>2021-04-07T19:03:30+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/generating-free-charges-by-carrier-multiplication-in-quantum-dots-for-highly-efficient-photovoltaics/</loc><lastmod>2021-08-05T20:04:51+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/carrier-transport-in-pbs-and-pbse-qd-films-measured-by-photoluminescence-quenching/</loc><lastmod>2021-08-05T20:06:25+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/an-inversion-layer-at-the-surface-of-n-type-iron-pyrite/</loc><lastmod>2021-08-05T20:07:32+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/phonons-do-not-assist-carrier-multiplication-in-pbse-quantum-dot-solids/</loc><lastmod>2021-08-05T20:08:01+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/activating-carrier-multiplication-in-pbse-quantum-dot-solids-by-infilling-with-atomic-layer-deposition/</loc><lastmod>2021-08-05T20:08:32+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/high-charge-carrier-mobility-enables-exploitation-of-carrier-multiplication-in-quantum-dot-films/</loc><lastmod>2021-08-05T20:09:00+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/gate-dependent-carrier-diffusion-length-in-lead-selenide-quantum-dot-field-effect-transistors/</loc><lastmod>2021-04-07T17:48:20+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/pbse-quantum-dot-field-effect-transistors-with-air-stable-electron-mobilities-above-7-cm2-v-1-s-1/</loc><lastmod>2021-08-05T20:09:35+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/iron-pyrite-thin-films-synthesized-from-an-feacac3-ink/</loc><lastmod>2021-08-21T23:46:00+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/pseudodielectric-function-and-critical-point-energies-of-iron-pyrite/</loc><lastmod>2021-04-07T19:05:52+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/increasing-the-band-gap-of-iron-pyrite-by-alloying-with-oxygen/</loc><lastmod>2021-08-05T20:11:03+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/atmospheric-pressure-chemical-vapor-deposition-of-iron-pyrite-thin-films/</loc><lastmod>2021-08-05T20:11:19+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/first-principles-studies-of-the-electronic-properties-of-native-and-substitutional-anionic-defects-in-bulk-iron-pyrite/</loc><lastmod>2021-04-07T17:48:26+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/the-effect-of-surface-stoichiometry-on-the-band-gap-of-the-pyrite-fes2100-surface/</loc><lastmod>2021-08-21T23:45:39+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/the-photothermal-stability-of-pbs-quantum-dot-solids/</loc><lastmod>2021-04-07T17:48:29+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/robust-functional-nanocrystal-solids-by-infilling-with-atomic-layer-deposition/</loc><lastmod>2021-08-21T23:49:07+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/colloidal-iron-pyrite-fes2-nanocrystal-inks-for-thin-film-photovoltaics/</loc><lastmod>2021-08-05T20:13:09+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/semiconductor-quantum-dots-and-quantum-dot-arrays-and-applications-of-multiple-exciton-generation-to-third-generation-photovoltaic-solar-cells/</loc><lastmod>2021-04-07T17:48:38+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/dependence-of-carrier-mobility-on-nanocrystal-size-and-ligand-length-in-pbse-nanocrystal-solids/</loc><lastmod>2021-08-05T20:13:36+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/p-type-pbse-and-pbs-quantum-dot-solids-prepared-with-short-chain-acids-and-diacids/</loc><lastmod>2021-04-07T17:48:45+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/variations-in-the-quantum-efficiency-of-multiple-exciton-generation-for-a-series-of-chemically-treated-pbse-nanocrystal-films/</loc><lastmod>2021-08-05T20:23:50+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/determining-the-internal-quantum-efficiency-of-pbse-nanocrystal-solar-cells-with-the-aid-of-an-optical-model/</loc><lastmod>2021-08-05T20:24:02+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/schottky-solar-cells-based-on-colloidal-nanocrystal-films/</loc><lastmod>2021-08-05T20:24:14+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/structural-optical-and-electrical-properties-of-pbse-nanocrystal-solids-treated-thermally-or-with-simple-amines/</loc><lastmod>2021-04-07T17:48:52+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/structural-optical-and-electrical-properties-of-self-assembled-films-of-pbse-nanocrystals-treated-with-12-ethanedithiol/</loc><lastmod>2021-04-07T17:48:56+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/multiple-exciton-generation-in-films-of-electronically-coupled-pbse-quantum-dots/</loc><lastmod>2021-08-05T20:24:56+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/zno-tio2-core-shell-nanorod-p3ht-solar-cells/</loc><lastmod>2021-08-05T20:25:20+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/multi-functional-nanowire-evanescent-wave-optical-sensors/</loc><lastmod>2021-08-05T20:25:48+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/chemical-sensing-with-nanowires-using-electrical-and-optical-detection/</loc><lastmod>2021-08-05T20:26:02+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/zno-al2o3-and-zno-tio2-core-shell-nanowire-dye-sensitized-solar-cells/</loc><lastmod>2021-08-05T20:26:38+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/solution-grown-zno-nanowires/</loc><lastmod>2021-08-05T20:27:03+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/semiconductor-nanowires-for-subwavelength-photonics-integration/</loc><lastmod>2021-08-05T20:27:19+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/general-route-to-vertical-zno-nanowire-arrays-using-textured-zno-seeds/</loc><lastmod>2021-08-05T20:27:34+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/thermally-driven-interfacial-dynamics-of-metal-oxide-bilayer-nanoribbons/</loc><lastmod>2021-08-05T20:28:00+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/nanowire-dye-sensitized-solar-cells/</loc><lastmod>2021-08-05T20:28:14+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/optical-routing-and-sensing-with-nanowire-assemblies/</loc><lastmod>2021-08-05T20:32:35+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/zno-nanowire-transistors/</loc><lastmod>2021-08-05T20:28:46+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/nanoribbon-waveguides-for-subwavelength-photonics-integration/</loc><lastmod>2021-08-05T20:29:02+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/semiconductor-nanowires-and-nanotubes/</loc><lastmod>2021-08-05T20:29:14+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/ultrafast-carrier-dynamics-in-single-zno-nanowire-and-nanoribbon-lasers/</loc><lastmod>2021-08-05T20:29:23+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/zno-nanoribbon-microcavity-lasers/</loc><lastmod>2021-08-05T20:29:33+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/low-temperature-wafer-scale-production-of-zno-nanowire-arrays/</loc><lastmod>2021-08-05T20:29:58+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/sno2-nanoribbons-as-no2-sensors-insights-from-first-principles-calculations/</loc><lastmod>2021-08-05T20:30:26+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/dendritic-nanowire-ultraviolet-laser-array/</loc><lastmod>2021-08-05T20:30:40+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/photochemical-sensing-of-no2-with-sno2-nanoribbon-nanosensors-at-room-temperature/</loc><lastmod>2021-08-05T20:31:02+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/functional-bimorph-composite-nanotapes/</loc><lastmod>2021-08-05T20:31:12+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/nanowire-ultraviolet-photodetectors-and-optical-switches/</loc><lastmod>2021-08-05T20:31:25+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/evaluation-of-nanostructured-%ce%b2-mn2v2o7-thin-films-as-photoanodes-for-photoelectrochemical-water-oxidation/</loc><lastmod>2021-11-05T04:09:41+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/2212/</loc><lastmod>2022-11-13T16:06:03+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/silica-shell-growth-on-vitreophobic-gold-nanoparticles-probed-by-plasmon-resonance-dynamics/</loc><lastmod>2022-11-10T16:33:01+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/2377/</loc><lastmod>2022-06-09T23:03:31+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/atomic-lattice-resolved-electron-tomography-of-a-3d-self-assembled-mesocrystal/</loc><lastmod>2023-03-10T19:22:24+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/high-mobility-hole-transport-in-single-grain-pbse-quantum-dot-superlattice-transistors/</loc><lastmod>2022-12-21T06:32:18+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/elimination-of-the-bias-stress-effect-in-ligand-free-quantum-dot-field-effect-transistors/</loc><lastmod>2023-07-28T14:47:27+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/a-general-solution-route-to-nanoporous-metal-oxide-films/</loc><lastmod>2026-01-28T01:35:39+00:00</lastmod></url><url><loc>https://mattlawgroup.org/publication/2915/</loc><lastmod>2026-01-28T01:38:07+00:00</lastmod></url></urlset>
