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邵雍哲学的体用论 被引量:5
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作者 李震 《哲学研究》 CSSCI 北大核心 2020年第9期59-68,共10页
邵雍哲学的成就之一在于建构了复杂而系统的体用论。这一理论有严整的结构。一方面,关于事物内部的关系,邵雍以体四用三的形式,界定了事物之整体及其自身当中之为形质性与活动性的因素,表达了对于用与不用的理解;另一方面,关于事物之间... 邵雍哲学的成就之一在于建构了复杂而系统的体用论。这一理论有严整的结构。一方面,关于事物内部的关系,邵雍以体四用三的形式,界定了事物之整体及其自身当中之为形质性与活动性的因素,表达了对于用与不用的理解;另一方面,关于事物之间的关系,邵雍则以体用对待的形式,从动静、主从、高下、先后等角度说明了体用的复杂含义与事物的多重样态。邵雍的体用论以物为对象,以物理为内容,体现了其观物的哲学宗旨。不同于本体大用的模式,邵雍的理论接续了王弼以来中国哲学固有的体用论的传统,展示了理学初期理论建构的一种方向与可能。 展开更多
关键词 邵雍 体四用三 用对待 物理
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Low-field-induced spin-glass behavior and controllable anisotropy in nanoparticle assemblies at a liquid-air interface
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作者 Xiaoqi Liao Seda Ulusoy +7 位作者 Rui Huang Erik Wetterskog Klas Gunnarsson Yu Wang Huawei Liang Yu-Jia Zeng German Salazar-Alvarez Peter Svedlindh 《Science China Materials》 SCIE EI CAS CSCD 2022年第1期193-200,共8页
Stacking nanoscale-building blocks into onedimensional(1D)assemblies with collective physical properties is a frontier in designing materials.However,the formation of 1D arrays using weak magnetic fields and an in-dep... Stacking nanoscale-building blocks into onedimensional(1D)assemblies with collective physical properties is a frontier in designing materials.However,the formation of 1D arrays using weak magnetic fields and an in-depth understanding of their magnetic properties remain challenging.Here,low-dimensional assemblies of iron oxide nanocubes with a disordered arrangement are fabricated at the diethylene-glycol/air interface in the presence of assembly fields(0/1/3/5/30/50 mT).Ring-shaped assemblies gradually transform as the assembly field increases from 0 to 50 mT,first to a porous network consisting of elongated assemblies and then to an aligned array of filaments,in which the aligned filaments are formed when the assembly field is≥3 mT and duration t>14 min.Spin-glass characteristics and static(dynamic)anisotropy factors~2(3)are achieved by tuning the strength of the assembly field.In the presence of a relatively weak assembly field,the interplay between dipolar interactions and disorder with respect to magnetic easy axis alignment leads to spin-glass characteristics.The alignment of the magnetic easy axes and the strength of the dipolar interactions increase with increasing assembly field,resulting in the disappearance of spin-glass characteristics and enhancement of the magnetic anisotropy.This study presents a strategy for obtaining magnetic assemblies with spin-glass behavior and controllable anisotropy while shedding light on the magnetic interactions of low-dimensional assemblies. 展开更多
关键词 magnetic nanoparticles ASSEMBLY ANISOTROPY spin glass
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