» Authors » Simon Ringer

Simon Ringer

Explore the profile of Simon Ringer including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 14
Citations 84
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Ghasemian M, Zavabeti A, Mousavi M, Murdoch B, Christofferson A, Meftahi N, et al.
Adv Mater . 2021 Sep; 33(43):e2104793. PMID: 34510605
The introduction of trace impurities within the doping processes of semiconductors is still a technological challenge for the electronics industries. By taking advantage of the selective enrichment of liquid metal...
2.
Xin T, Zhao Y, Mahjoub R, Jiang J, Yadav A, Nomoto K, et al.
Sci Adv . 2021 Jun; 7(23). PMID: 34078600
Strengthening of magnesium (Mg) is known to occur through dislocation accumulation, grain refinement, deformation twinning, and texture control or dislocation pinning by solute atoms or nano-sized precipitates. These modes generate...
3.
DeMott R, Collins P, Kong C, Liao X, Ringer S, Primig S
Ultramicroscopy . 2020 Aug; 218:113073. PMID: 32736318
Titanium alloys exhibit complex, multi-phase microstructures which form during liquid-solid and solid-solid phase transformations. These phase transformations govern the microstructural evolution and are potentially more complex during additive manufacturing due...
4.
Tang S, Xin T, Xu W, Miskovic D, Sha G, Quadir Z, et al.
Nat Commun . 2019 Mar; 10(1):1003. PMID: 30824695
Body-centred cubic magnesium-lithium-aluminium-base alloys are the lightest of all the structural alloys, with recently developed alloy compositions showing a unique multi-dimensional property profile. By hitherto unrecognised mechanisms, such alloys also...
5.
Qu J, Du S, Burgess T, Wang C, Cui X, Gao Q, et al.
Adv Mater . 2017 Jun; 29(31). PMID: 28628253
III-V ternary InGaAs nanowires have great potential for electronic and optoelectronic device applications; however, the 3D structure and chemistry at the atomic-scale inside the nanowires remain unclear, which hinders tailoring...
6.
Qu J, Choi W, Mohseni P, Li X, Zhang Y, Chen H, et al.
ACS Appl Mater Interfaces . 2016 Sep; 8(39):26244-26250. PMID: 27633044
Intentional and unintentional doping in semiconductor nanowires undoubtedly have significant impact on the device performance. However, spatially resolved precise determination of dopant concentration is challenging due to insufficient sensitivity and...
7.
Qu J, Wong D, Du S, Yang L, Ringer S, Zheng R
Ultramicroscopy . 2015 Jun; 159 Pt 2:427-31. PMID: 26119926
Semiconductor nanowires have been intensively explored for applications in electronics, photonics, energy conversion and storage. A fundamental and quantitative understanding of growth-structure-property relationships is central to applications where nanowires exhibit...
8.
Xiang Y, Chitry V, Liddicoat P, Felfer P, Cairney J, Ringer S, et al.
J Am Chem Soc . 2013 May; 135(19):7114-7. PMID: 23634891
We show that long-chain 1-alcohols can be produced with high selectivities using heterogeneous CO hydrogenation catalysis. This breakthrough is achieved through the targeted design of "CoCuMn" nanosized core-shell particles using...
9.
Felfer P, Ceguerra A, Ringer S, Cairney J
Ultramicroscopy . 2013 Apr; 132:100-6. PMID: 23623291
In this paper we present new methods for feature analysis in atom probe tomography data that have useful applications in materials characterisation. The analysis works on the principle of Voronoi...
10.
Zhou C, Liu Z, Du X, Mitchell D, Mai Y, Yan Y, et al.
Nanoscale Res Lett . 2012 Mar; 7:165. PMID: 22385930
Core/shell nanostructured carbon materials with carbon nanofiber (CNF) as the core and a nitrogen (N)-doped graphitic layer as the shell were synthesized by pyrolysis of CNF/polyaniline (CNF/PANI) composites prepared by...