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异化构式的没影与分工逻辑的地平
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作者 李亚熙 《广西大学学报(哲学社会科学版)》 CSSCI 2022年第2期50-56,共7页
马克思在进入经济学研究伊始便遭遇了“分工”范畴。最初马克思从人本主义异化构式出发,与恩格斯一样将分工理解为人的类本质活动抽象“分离”。此时,分工逻辑成为被人本主义异化逻辑压抑的沉默话语。在《布鲁塞尔笔记》与《曼彻斯特笔... 马克思在进入经济学研究伊始便遭遇了“分工”范畴。最初马克思从人本主义异化构式出发,与恩格斯一样将分工理解为人的类本质活动抽象“分离”。此时,分工逻辑成为被人本主义异化逻辑压抑的沉默话语。在《布鲁塞尔笔记》与《曼彻斯特笔记》中,随着经济学研究的深入,马克思逐渐开始关注分工基础之上的组织协作。分工逻辑开始在马克思的整体思想结构中深层布展。对于“分工”理解的变化背后体现的是马克思由主体性的劳动视域向客体物质生产视域的转变。在现代物质生产体系中,纯粹的直观自然物被排除在外,留存下来的是包含着既定劳动的物质材料。围绕“有用性”的生产逻辑,原先的静态自然秩序被打破,夹杂着自然与社会双重维度的物质资料以新的方式重构了人的“上手性”周遭世界。而机器体系的介入使得工厂体系转化为自动体系,马克思在《巴黎笔记》中确证的主体性劳动被还原为最抽象的注意与操练,人的主体性被机器体系擦除了。在由手艺向技艺过渡的历史演进中,马克思最终发现,生产者最为抽象的定在方式恰是由最为具体的社会关系现实锚定的,正是生产次序延伸成为现代意义的社会构序。所以,正是分工范畴彻底摧毁了马克思原初的异化构式,并生长成为《德意志意识形态》中的分工史论,从而开启了马克思进入广义历史唯物主义的理论入口。 展开更多
关键词 异化构式 分工逻辑 《布鲁塞尔笔记》 《曼彻斯特笔记》 《德意志意识形态》
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Azobenzene/graphene hybrid for high-density solar thermal storage by optimizing molecular structure 被引量:7
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作者 LI Man FENG YiYu +2 位作者 LIU EnZuo QIN ChengQun FENG Wei 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第9期1383-1390,共8页
A large capacity storing solar energy as latent heat in a close-cycle is essentially important for solar thermal fuels. This paper presents a solar thermal molecule model of a photo-isomerizable azobenzene(Azo) molecu... A large capacity storing solar energy as latent heat in a close-cycle is essentially important for solar thermal fuels. This paper presents a solar thermal molecule model of a photo-isomerizable azobenzene(Azo) molecule covalently bound to graphene. The storage capacity of the Azo depending on isomerization enthalpy(ΔH) is calculated based on density functional theory. The result indicates that the ΔH of Azo molecules on the graphene can be tuned by electronic interaction, steric hindrance and molecular hydrogen bonds(H-bonds). Azo with the withdrawing group on the ortho-position of the free benzene shows a relatively high ΔH due to resonance effect. Moreover, the H-bonds on the trans-isomer largely increase ΔH because they stabilize the trans-isomer at a low energy. 2-hydroxy-4-carboxyl-2′,6′,-dimethylamino-Azo/graphene shows the maximum ΔH up to 1.871 e V(107.14 Wh kg^(-1)), which is 125.4% higher than Azo without functional groups. The Azo/graphene model can be used for developing high-density solar thermal storage materials by controlling molecular interaction. 展开更多
关键词 solar thermal energy storage AZOBENZENE GRAPHENE hydrogen bonds density functional theory
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Car-Parinello molecular dynamics simulations of thionitroxide and S-nitrosothiol in the gas phase,methanol,and water——A theoretical study of S-nitrosylation
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作者 LIANG Juan CHENG ShangLi +2 位作者 HOU JunWei XU ZhenHao ZHAO Yi-Lei 《Science China Chemistry》 SCIE EI CAS 2012年第10期2081-2088,共8页
A dilemma about whether thionitroxide radical (RSNHO) or S-nitrosothiol (RSNO) is observed in protein S-nitrosylation has arisen recently. To illustrate the effect of chemical environment on these structures, this pap... A dilemma about whether thionitroxide radical (RSNHO) or S-nitrosothiol (RSNO) is observed in protein S-nitrosylation has arisen recently. To illustrate the effect of chemical environment on these structures, this paper presents quantum mechanical molecular dynamics of thionitroxide, and cis-and trans-S-nitrosothiols in the gas phase, methanol, and water. By using Car-Parrinello molecular dynamics (CPMD), we have observed that there is free rotation about the S-N bond at 300 K in thionitroxide, but no such rotation is observed for S-nitrosothiol. The C-S-N-O torsion angle distribution in thionitroxide is s-ignificantly dependent upon the surrounding environment, leading to either gauche-, cis-, or trans-conformation. In the case of S-nitrosothiol the C-S-N-O plane is twisted slightly by 5°-15° in the cis-isomer, while the periplanar structure is well-retained in the trans-isomer. The calculated results are in agreement with the X-ray crystallographic data of small molecular RSNO species. Interestingly, for both compounds, the CPMD simulations show that solvation can cause a decrease in the S-N bond length. Moreover, the oxygen atom of thionitroxide is found to be a good hydrogen-bond acceptor, forming an oxyanion-hole-like hydrogen bonding network. 展开更多
关键词 quantum mechanical molecular dynamics S-NITROSYLATION thionitroxide S-NITROSOTHIOL solvent effect
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