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Jonathan J P Peters

Explore the profile of Jonathan J P Peters including associated specialties, affiliations and a list of published articles. Areas
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Articles 22
Citations 168
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Recent Articles
11.
Dong W, Peters J, Rusu D, Staniforth M, Brunier A, Lloyd-Hughes J, et al.
Nano Lett . 2020 Jul; 20(8):6045-6050. PMID: 32643949
Ferroelectric-paraelectric superlattices show emerging new states, such as polar vortices, through the interplay and different energy scales of various thermodynamic constraints. By introducing magnetic coupling at BiFeO-LaSrMnO interfaces epitaxially grown...
12.
Bekaert J, Khestanova E, Hopkinson D, Birkbeck J, Clark N, Zhu M, et al.
Nano Lett . 2020 Apr; 20(5):3808-3818. PMID: 32310666
When approaching the atomically thin limit, defects and disorder play an increasingly important role in the properties of two-dimensional (2D) materials. While defects are generally thought to negatively affect superconductivity...
13.
Peters J, Bristowe N, Rusu D, Apachitei G, Beanland R, Alexe M, et al.
ACS Appl Mater Interfaces . 2020 Feb; 12(9):10657-10663. PMID: 32028760
The structural, electronic, and magnetic properties of interfaces between epitaxial LaSrMnO and PbTiO have been explored via atomic resolution transmission electron microscopy of a functional multiferroic tunnel junction. Measurements of...
14.
Yang M, Iqbal A, Peters J, Sanchez A, Alexe M
Nat Commun . 2019 Jun; 10(1):2791. PMID: 31243266
It has been recently shown that the strain gradient is able to separate the light-excited electron-hole pairs in semiconductors, but how it affects the photoelectric properties of the photo-active materials...
15.
Gott J, Beanland R, Fonseka H, Peters J, Zhang Y, Liu H, et al.
Nano Lett . 2019 Jun; 19(7):4574-4580. PMID: 31189065
The droplet consumption step in self-catalyzed III-V semiconductor nanowires can produce material that contains a high density of line defects. Interestingly, these defects are often associated with twin boundaries and...
16.
Luo Z, Peters J, Sanchez A, Alexe M
ACS Appl Mater Interfaces . 2019 Jun; 11(26):23313-23319. PMID: 31181153
Ferroelectric tunnel junction (FTJ) based memristors exhibiting continuous electric field controllable resistance states have been considered promising candidates for future high-density memories and advanced neuromorphic computational architectures. However, the use...
17.
Peters J, Sanchez A, Walker D, Whatmore R, Beanland R
Adv Mater . 2018 Dec; 31(5):e1806498. PMID: 30520174
Highly B-site ordered Pb ScTaO crystals are studied as a function of temperature via dielectric spectroscopy and in situ high-dynamic-range electron diffraction. The degree of ordering is examined on the...
18.
Hussein H, Maurer R, Amari H, Peters J, Meng L, Beanland R, et al.
ACS Nano . 2018 Jul; 12(7):7388-7396. PMID: 29969230
In electrodeposition the key challenge is to obtain better control over nanostructure morphology. Currently, a lack of understanding exists concerning the initial stages of nucleation and growth, which ultimately impact...
19.
Nguyen L, Komsa H, Khestanova E, Kashtiban R, Peters J, Lawlor S, et al.
ACS Nano . 2017 Feb; 11(3):2894-2904. PMID: 28195699
We have investigated the structure of atomic defects within monolayer NbSe encapsulated in graphene by combining atomic resolution transmission electron microscope imaging, density functional theory (DFT) calculations, and strain mapping...
20.
Peters J, Apachitei G, Beanland R, Alexe M, Sanchez A
Nat Commun . 2016 Nov; 7:13484. PMID: 27848970
Formation of domain walls in ferroelectrics is not energetically favourable in low-dimensional systems. Instead, vortex-type structures are formed that are driven by depolarization fields occurring in such systems. Consequently, polarization...