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Angus I. Kirkland
Researcher at University of Oxford
Publications - 330
Citations - 11382
Angus I. Kirkland is an academic researcher from University of Oxford. The author has contributed to research in topics: High-resolution transmission electron microscopy & Scanning transmission electron microscopy. The author has an hindex of 52, co-authored 307 publications receiving 9194 citations. Previous affiliations of Angus I. Kirkland include Rutherford Appleton Laboratory & Franklin Institute.
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Journal ArticleDOI
General synthesis and definitive structural identification of MN4C4 single-atom catalysts with tunable electrocatalytic activities
Huilong Fei,Juncai Dong,Yexin Feng,Christopher S. Allen,Chengzhang Wan,Boris Volosskiy,Mufan Li,Zipeng Zhao,Yiliu Wang,Hongtao Sun,Pengfei An,Wenxing Chen,Zhiying Guo,Chain Lee,Dongliang Chen,Imran Shakir,Mingjie Liu,Tiandou Hu,Yadong Li,Angus I. Kirkland,Xiangfeng Duan,Yu Huang +21 more
TL;DR: In this paper, a general approach to a series of monodispersed atomic transition metals (for example, Fe, Co, Ni) embedded in nitrogen-doped graphene with a common MN4C4 moiety, identified by systematic X-ray absorption fine structure analyses and direct transmission electron microscopy imaging, was reported.
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A fundamental look at electrocatalytic sulfur reduction reaction
Lele Peng,Ziyang Wei,Chengzhang Wan,Jing Li,Zhuo Chen,Dan Zhu,Daniel Baumann,Haotian Liu,Christopher S. Allen,Xiang Xu,Angus I. Kirkland,Imran Shakir,Imran Shakir,Zeyad Almutairi,Sarah H. Tolbert,Bruce Dunn,Yu Huang,Philippe Sautet,Xiangfeng Duan +18 more
TL;DR: In this article, the fundamental kinetics of the electrocatalytic sulfur reduction reaction (SRR), a complex 16-electron conversion process in lithium-sulfur batteries, is investigated.
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Discrete Atom Imaging of One-Dimensional Crystals Formed Within Single-Walled Carbon Nanotubes
Rüdiger R. Meyer,Jeremy Sloan,Rafal E. Dunin-Borkowski,Angus I. Kirkland,Miles C. Novotny,Sam R. Bailey,John L. Hutchison,Malcolm L. H. Green +7 more
TL;DR: The complete crystallography of a one-dimensional crystal of potassium iodide encapsulated within a 1.6-nanometer-diameter single-walled carbon nanotube has been determined with high-resolution transmission electron microscopy.
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Dislocation-driven deformations in graphene.
Jamie H. Warner,Elena R. Margine,Masaki Mukai,Alex W. Robertson,Feliciano Giustino,Angus I. Kirkland +5 more
TL;DR: The dynamics of dislocation pairs in graphene are studied with single-atom sensitivity, and stepwise dislocation movement along the zig-zag lattice direction mediated either by a single bond rotation or through the loss of two carbon atoms is examined.
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Spatial control of defect creation in graphene at the nanoscale
Alex W. Robertson,Christopher S. Allen,Yimin A. Wu,Kuang He,Jaco Olivier,J.H. Neethling,Angus I. Kirkland,Jamie H. Warner +7 more
TL;DR: Control is shown over both the location and average complexity of defect formation in graphene by tailoring its exposure to a focussed electron beam and some of the created defects were stable, whereas others relaxed to simpler structures through bond rotations and surface adatom incorporation.