Hunter Sims
Vanderbilt University
36 Papers
48 Citations
Hunter Sims is an academic researcher from Vanderbilt University. The author has contributed to research in topics: Density functional theory & Magnetic structure. The author has an hindex of 12, co-authored 35 publications. Previous affiliations of Hunter Sims include Mint.com & University of Alabama.
Chat about Author
Papers
Synthesis and properties of free-standing monolayer amorphous carbon.
Chee Tat Toh,Hongji Zhang,Junhao Lin,Junhao Lin,A. S. Mayorov,Yun-Peng Wang,Yun-Peng Wang,Carlo M. Orofeo,Darim B. Ferry,Henrik Andersen,Nurbek Kakenov,Zenglong Guo,Irfan Haider Abidi,Hunter Sims,Kazu Suenaga,Kazu Suenaga,Sokrates T. Pantelides,Barbaros Özyilmaz +17 more
TL;DR: The synthesis of surprisingly stable, free-standing single layers of amorphous carbon and their analysis by atomic-resolution imaging could settle a debate about their atomic arrangement and offer unusual electronics applications.
271
Synthesis and properties of free-standing monolayer amorphous carbon
Chee Tat Toh,Hongji Zhang,Junhao Lin,Junhao Lin,A. S. Mayorov,Yun-Peng Wang,Yun-Peng Wang,Carlo M. Orofeo,Darim B. Ferry,Henrik Andersen,Nurbek Kakenov,Zenglong Guo,Irfan Haider Abidi,Hunter Sims,Kazu Suenaga,Kazu Suenaga,Sokrates T. Pantelides,Barbaros Özyilmaz +17 more
TL;DR: In this article, the structure of monolayer amorphous carbon has been determined by atomic-resolution imaging, which reveals the complete absence of long-range periodicity and a threefold-coordinated structure with a wide distribution of bond lengths, bond angles, and five-, six-, seven-and eight-member rings.
214
Chemical tuning of the optical band gap in spinel ferrites: CoFe2O4 vs NiFe2O4
B. S. Holinsworth,Dipanjan Mazumdar,Hunter Sims,Qi-C. Sun,M. K. Yurtisigi,Sanjoy K. Sarker,Arunava Gupta,W. H. Butler,Janice L. Musfeldt +8 more
TL;DR: In this paper, the optical properties of epitaxial CoFe2O4 thin films were measured and compared with complementary electronic structure calculations and similar studies on the Ni analog, showing that the indirect gap is ≈ 0.5ÕeV lower than the direct gap.
203
Mono-, few-, and multiple layers of copper antimony sulfide (CuSbS2): a ternary layered sulfide.
TL;DR: The monolayers of Copper antimony sulfide exhibit noticeably different properties from the multilayered or the bulk system, with a markedly increased band gap that is, however, compromised by the presence of localized surface states.
137
Synthesis of Co‐Doped MoS2 Monolayers with Enhanced Valley Splitting
Jiadong Zhou,Junhao Lin,Junhao Lin,Hunter Sims,Hunter Sims,Chongyun Jiang,Chongyun Jiang,Chunxiao Cong,Chunxiao Cong,John A. Brehm,John A. Brehm,Zhaowei Zhang,Lin Niu,Yu Chen,Yao Zhou,Yanlong Wang,Fucai Liu,Chao Zhu,Ting Yu,Kazu Suenaga,Rohan Mishra,Sokrates T. Pantelides,Sokrates T. Pantelides,Zhen-Gang Zhu,Weibo Gao,Zheng Liu,Zheng Liu,Wu Zhou +27 more
TL;DR: A new method to control the valley pseudospin via magnetic dopants in layered semiconducting materials is demonstrated, paving the way toward magneto-optical and spintronic devices.