Search Results - "Sear, Michael"
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Quantification of the Activator and Sensitizer Ion Distributions in NaYF4:Yb3+, Er3+ Upconverting Nanoparticles Via Depth‐Profiling with Tender X‐Ray Photoemission
Published in Small (Weinheim an der Bergstrasse, Germany) (01-07-2022)“…The spatial distribution and concentration of lanthanide activator and sensitizer dopant ions are of key importance for the luminescence color and efficiency…”
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Fluorination of the silicon-terminated (100) diamond surface using C60F48
Published in Diamond and related materials (01-06-2022)“…Fluorination of the silicon terminated (100) diamond surface under ultra-high vacuum using a molecular fluorine source (C60F48) is investigated with a…”
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A Versatile Approach to Electrochemical In Situ Ambient-Pressure X‑ray Photoelectron Spectroscopy: Application to a Complex Model Catalyst
Published in The journal of physical chemistry letters (01-12-2022)“…We present a new technique for investigating complex model electrocatalysts by means of electrochemical in situ ambient-pressure X-ray photoelectron…”
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4
Thermal Stability and Oxidation of Group IV Terminated (100) Diamond Surfaces
Published in Physica status solidi. A, Applications and materials science (21-11-2018)“…High resolution X‐ray photoelectron spectroscopy is used to explore the thermal stability of as‐prepared and oxidized silicon and germanium‐terminated (100)…”
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5
Formation of a silicon terminated (100) diamond surface
Published in Applied physics letters (11-05-2015)“…We report the preparation of an ordered silicon terminated diamond (100) surface with a two domain 3 × 1 reconstruction as determined by low energy electron…”
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Evidence for Primal sp2 Defects at the Diamond Surface: Candidates for Electron Trapping and Noise Sources
Published in Advanced materials interfaces (08-02-2019)“…Many advanced applications of diamond materials are now being limited by unknown surface defects, including in the fields of high power/frequency electronics…”
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7
P-type surface transfer doping of oxidised silicon terminated (100) diamond
Published in Applied physics letters (04-01-2017)“…High-resolution core-level photoemission was used to examine the interaction between the oxidised silicon-terminated diamond (100) surface and the molecular…”
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8
Quantification of the Activator and Sensitizer Ion Distributions in NaYF 4 :Yb 3+ , Er 3+ Upconverting Nanoparticles Via Depth‐Profiling with Tender X‐Ray Photoemission
Published in Small (Weinheim an der Bergstrasse, Germany) (01-07-2022)“…The spatial distribution and concentration of lanthanide activator and sensitizer dopant ions are of key importance for the luminescence color and efficiency…”
Get full text
Journal Article -
9
Zinc aluminium layered double hydroxides for the removal of iodine and iodide from aqueous solutions
Published in Desalination and water treatment (01-02-2012)“…129I is a radioactive isotope of iodine that is readily absorbed by the body. In this paper we investigated the potential of a 3:1 Zn/Al layered double…”
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10
Epitaxial Formation of SiC on (100) Diamond
Published in ACS applied electronic materials (28-07-2020)“…We demonstrate locally the coherent formation of silicon carbide (SiC) on diamond, a rare example of heteroepitaxy with a lattice mismatch that exceeds 20%…”
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11
Evidence for Primal sp 2 Defects at the Diamond Surface: Candidates for Electron Trapping and Noise Sources
Published in Advanced materials interfaces (01-02-2019)“…Many advanced applications of diamond materials are now being limited by unknown surface defects, including in the fields of high power/frequency electronics…”
Get full text
Journal Article -
12
Zinc aluminium layered double hydroxides for the removal of iodine and iodide from aqueous solutions
Published in Desalination and water treatment (01-02-2012)“…129I is a radioactive isotope of iodine that is readily absorbed by the body. In this paper we investigated the potential of a 3:1 Zn/Al layered double…”
Get full text
Journal Article -
13
Evidence for Primal sp2 Defects at the Diamond Surface: Candidates for Electron Trapping and Noise Sources
Published 09-07-2018“…Diamond materials are central to an increasing range of advanced technological demonstrations, from high power electronics, to nano-scale quantum bio-imaging…”
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