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作 者:覃方红 邱江源 钟婧晗 吕勇 张美婷 肖碧源 黄在银 QIN Fang-hong;QIU Jiang-yuan;ZHONG Jing-han;LYU Yong;ZHANG Mei-ting;XIAO Bi-yuan;HUANG Zai-yin(College of Chemistry and Chemiscal Engineering,Guangxi University for Nationalities,Nanning 530008,China;Guangxi Colleges and Universities Key Laboratory of Food Safety andPharmaceutical Analytical Chemistry,Nanning 530008,China)
机构地区:[1]广西民族大学化学化工学院,广西南宁530008 [2]广西高校食品安全与药物分析化学重点实验室,广西南宁530008
出 处:《广西大学学报(自然科学版)》2019年第3期863-868,共6页Journal of Guangxi University(Natural Science Edition)
基 金:国家自然科学基金资助项目(21273050,21573048,21873022);广西民族大学研究生科研创新项目(gxun-chxzs2016120,gxun-chxzs2018062)
摘 要:为进一步丰富纳米热力学函数研究,采用微乳液法可控制备了纳米氯化银,利用X-射线衍射技术和场发射扫描电镜技术对其物相组成及形貌结构进行了表征。基于纳米溶解热力学理论,进一步得到了纳米AgCl的溶解热力学函数和表面热力学函数。计算了纳米AgCl的规定热力学函数,ΔfHθm为-115.35kJ/mol,ΔfGθm为-105.38kJ/mol,Sθm为121.89J/(mol·K)。纳米AgCl溶解吉布斯自由能随温度呈正相关,表面吉布斯自由能与温度呈负相关。In order to further enrich the nano-thermodynamic function,the nano-silver chloride was prepared by micro-emulsion method,and the composition and the morphology of the nano-silver chloride were characterized by the X-ray diffraction technique and the field-emission scanning electron microscope technique. Based on the nano-dissolution thermodynamic theory,the dissolution thermodynamic function and the surface thermodynamic function of the nano-AgCl were obtained. And then the thermodynamic functions of the nano-AgCl were calculated. The results showed that,the Δ f H θ m was -115.35 kJ/mol,Δ f G θ m was -105.38 kJ/mol, S θ m was 121.89 J/(mol·K). The free energy of Gibbs free energy was positively correlated with the temperature,and the free energy of surface Gibbs free energy was negatively correlated with the temperature.
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