Peyton D Murray
Overview
Explore the profile of Peyton D Murray including associated specialties, affiliations and a list of published articles.
Author names and details appear as published. Due to indexing inconsistencies, multiple individuals may share a name, and a single author may have variations. MedLuna displays this data as publicly available, without modification or verification
Snapshot
Snapshot
Articles
6
Citations
27
Followers
0
Related Specialties
Related Specialties
Top 10 Co-Authors
Top 10 Co-Authors
Published In
Published In
Affiliations
Affiliations
Soon will be listed here.
Recent Articles
1.
Gilbert D, Grutter A, Murray P, Chopdekar R, Kane A, Ionin A, et al.
Phys Rev Mater
. 2024 Nov;
2(10).
PMID: 39534697
Control of materials through custom design of ionic distributions represents a powerful new approach to develop future technologies ranging from spintronic logic and memory devices to energy storage. Perovskites have...
2.
Murray P, Jensen C, Quintana A, Zhang J, Zhang X, Grutter A, et al.
ACS Appl Mater Interfaces
. 2021 Aug;
13(32):38916-38922.
PMID: 34347431
Electrically induced ionic motion offers a new way to realize voltage-controlled magnetism, opening the door to a new generation of logic, sensor, and data storage technologies. Here, we demonstrate an...
3.
Gilbert D, Murray P, de Rojas J, Dumas R, Davies J, Liu K
Sci Rep
. 2021 Feb;
11(1):4018.
PMID: 33597639
The first order reversal curve (FORC) method is a magnetometry based technique used to capture nanoscale magnetic phase separation and interactions with macroscopic measurements using minor hysteresis loop analysis. This...
4.
Burks E, Gilbert D, Murray P, Flores C, Felter T, Charnvanichborikarn S, et al.
Nano Lett
. 2020 Dec;
21(1):716-722.
PMID: 33301687
Free-standing, interconnected metallic nanowire networks with densities as low as 40 mg/cm have been achieved over centimeter-scale areas, using electrodeposition into polycarbonate membranes that have been ion-tracked at multiple angles....
5.
Murray P, Gilbert D, Grutter A, Kirby B, Hernandez-Maldonado D, Varela M, et al.
ACS Appl Mater Interfaces
. 2019 Dec;
12(4):4741-4748.
PMID: 31880904
Solid-state ionic approaches for modifying ion distributions in getter/oxide heterostructures offer exciting potentials to control material properties. Here, we report a simple, scalable approach allowing for manipulation of the superconducting...
6.
Quintana A, Menendez E, Liedke M, Butterling M, Wagner A, Sireus V, et al.
ACS Nano
. 2018 Sep;
12(10):10291-10300.
PMID: 30256610
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However, technologically, this effect is facing important challenges: mechanical failure in strain-mediated piezoelectric/magnetostrictive devices, dearth of room-temperature multiferroics, or stringent thickness...