Olubowale Olajumoke H, Biswas Shanta, Azom Golam, Prather Benjamin L, Owoso Samuel D, Rinee Khaleda C, Marroquin Karen, Gates Kaelin A, Chambers Matthew B, Xu Amy, Garno Jayne C
Chemistry Department, Louisiana State University, Baton Rouge, Louisiana 70803, United States.
ACS Omega. 2021 Sep 13;6(40):25860-25875. doi: 10.1021/acsomega.1c03829. eCollection 2021 Oct 12.
Information of the chemical, mechanical, and electrical properties of materials can be obtained using force volume mapping (FVM), a measurement mode of scanning probe microscopy (SPM). Protocols have been developed with FVM for a broad range of materials, including polymers, organic films, inorganic materials, and biological samples. Multiple force measurements are acquired with the FVM mode within a defined 3D volume of the sample to map interactions (i.e., chemical, electrical, or physical) between the probe and the sample. Forces of adhesion, elasticity, stiffness, deformation, chemical binding interactions, viscoelasticity, and electrical properties have all been mapped at the nanoscale with FVM. Subsequently, force maps can be correlated with features of topographic images for identifying certain chemical groups presented at a sample interface. The SPM tip can be coated to investigate-specific reactions; for example, biological interactions can be probed when the tip is coated with biomolecules such as for recognition of ligand-receptor pairs or antigen-antibody interactions. This review highlights the versatility and diverse measurement protocols that have emerged for studies applying FVM for the analysis of material properties at the nanoscale.
利用力体积映射(FVM),一种扫描探针显微镜(SPM)的测量模式,可以获取材料的化学、机械和电学性质信息。已经开发出了使用FVM针对包括聚合物、有机薄膜、无机材料和生物样品在内的多种材料的实验方案。在样品定义的三维体积内,通过FVM模式进行多次力测量,以绘制探针与样品之间的相互作用(即化学、电学或物理相互作用)。粘附力、弹性、刚度、变形、化学结合相互作用、粘弹性和电学性质等力都已通过FVM在纳米尺度上进行了映射。随后,力图可以与地形图像的特征相关联,以识别样品界面处存在的某些化学基团。SPM探针可以进行涂层处理以研究特定反应;例如,当探针涂覆有生物分子(如用于识别配体-受体对或抗原-抗体相互作用)时,可以探测生物相互作用。本综述强调了在纳米尺度上应用FVM分析材料性质的研究中出现的多功能性和多样的测量方案。