Department of Nanoengineering, University of California, San Diego, La Jolla, California 92093, USA; email:
Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California 92093, USA; email:
Annu Rev Anal Chem (Palo Alto Calif). 2021 Jul 27;14(1):489-514. doi: 10.1146/annurev-anchem-091420-092928.
Surface chemistry affects the physiochemical properties of nanoparticles in a variety of ways. Therefore, there is great interest in understanding how nanoparticle surfaces evolve under different environmental conditions of pH and temperature. Here, we discuss the use of vibrational spectroscopy as a tool that allows for in situ observations of oxide nanoparticle surfaces and their evolution due to different surface processes. We highlight oxide nanoparticle surface chemistry, either engineered anthropogenic or naturally occurring geochemical nanoparticles, in complex media, with a focus on the impact of () pH on adsorption, intermolecular interactions, and conformational changes; () surface coatings and coadsorbates on protein adsorption kinetics and protein conformation; () surface adsorption on the temperature dependence of protein structure phase changes; and () the use of two-dimensional correlation spectroscopy to analyze spectroscopic results for complex systems. An outlook of the field and remaining challenges is also presented.
表面化学以各种方式影响纳米粒子的物理化学性质。因此,人们非常感兴趣的是了解纳米粒子表面在不同的 pH 值和温度环境条件下如何演变。在这里,我们讨论了振动光谱作为一种工具的使用,该工具允许原位观察氧化物纳米粒子表面及其由于不同表面过程而发生的演变。我们重点介绍了复杂介质中工程人为或天然地球化学纳米粒子的氧化物纳米粒子表面化学,重点讨论了 () pH 值对吸附、分子间相互作用和构象变化的影响;() 表面涂层和共吸附物对蛋白质吸附动力学和蛋白质构象的影响;() 表面吸附对蛋白质结构相变温度依赖性的影响;以及 () 使用二维相关光谱分析复杂体系的光谱结果。还介绍了该领域的展望和存在的挑战。