The Progress on Magnetic Material Thin Films Prepared Using Polymer-Assisted Deposition

利用聚合物辅助沉积法制备磁性材料薄膜的研究进展

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Abstract

Polymer-assisted deposition (PAD) has been widely used in the preparation of high-quality oxides and sulfides for basic research and applications. Specifically, diverse PAD-prepared magnetic material thin films such as ZnO, Ga(2)O(3), SrRuO(3), LaCoO(3), LaMnO(3), Y(3)Fe(5)O(12), MoS(2), MoSe(2), and ReS(2) thin films have been grown, in which thickness-dependent, strain-modulated, doping-mediated, and/or morphology-dependent room-temperature ferromagnetism (RTFM) have been explored. Inspired by the discovery of intrinsic low-temperature FM in two-dimensional (2D) systems prepared using mechanical exfoliation, the search for more convenient methods to prepare 2D ferromagnetic materials with high-temperature FM has seen explosive growth, but with little success. Fortunately, the very recent synthesis of 2D NiO by PAD has shed light on this challenge. Based on these abovementioned developments, the difficulties of PAD when preparing a-few-nanometer single-crystalline materials and the opportunities in PAD for novel materials such as chiral magnetic soliton material Cr(1/3)NbS(2) are discussed.

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