2</sub> 粒子,實現(xiàn)了粒子間溶劑介導(dǎo)力的高分辨率(約20fN )測量,并研究了纖維素溶液(質(zhì)量濃度 1% )的流變學(xué)特性(如儲能模量和黏度)。結(jié)果表明,掃描光鑷系統(tǒng)能夠精確測量粒子間的相互作用力,并能準(zhǔn)確表征復(fù)雜流體的動態(tài)響應(yīng)。結(jié)合多周期平均技術(shù)和實時追蹤方法,該系統(tǒng)的信噪比顯著提升,可適用于微納米尺度下的動態(tài)分析。研究展示了掃描光鑷技術(shù)在膠體科學(xué)、生物物理和材料科學(xué)中的廣泛應(yīng)用前景,為微納米尺度下的力測量和流變學(xué)研究提供了新的工具和方法。-龍源期刊網(wǎng)" />

特黄三级爱爱视频|国产1区2区强奸|舌L子伦熟妇aV|日韩美腿激情一区|6月丁香综合久久|一级毛片免费试看|在线黄色电影免费|国产主播自拍一区|99精品热爱视频|亚洲黄色先锋一区

基于掃描光鑷技術(shù)的多粒子力測量與流變學(xué)分析

  • 打印
  • 收藏
收藏成功


打開文本圖片集

中圖分類號:O439文獻標(biāo)志碼:A

Abstract: This study introduces a method for multiparticle force measurement and rheological analysis using a high-precision optical tweezers system, aiming to address the challenge of simultaneouscharacterization ofinteraction forcesand medium viscoelasticityatthe micro/nanoscale. Experiments utilizing the Aresis Tweez 30o scanning optical tweezers system achieved trapping and manipulation of 2.5-μm -diameter SiO2 particles, enabling high-resolution measurement of solvent-mediated interparticle forces (approximately 20fN )andinvestigationof cellulose solution rheology ( 1% mass concentration), including storage modulus and viscosity. The results demonstrated that the scanning optical tweezers system could accurately measure interparticle interaction forces and characterize the dynamic response of complex fluids. By combining multicycle averaging techniques and real-time tracking methods, the signal-to-noise ratio of the system was significantly enhanced, rendering it suitable for dynamic analysis at the micro/nanoscale. This research highlights the broad application potential of scanning optical tweezers technology in colloid science,biophysics,and materials science,providing a novel methodology for micro/nanoscale force and rheology studies.

Keywords: scanning optical tweezers technology; multi-particle manipulation; solvent-mediated force; microrheology; cellulose solution

引言

1實驗系統(tǒng)與樣品

光鑷技術(shù)由 Ashkin等[1于1986年首次提出,已成為微納米尺度下操控和測量微小粒子的重要工具。(剩余8320字)

monitor