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Fengqiu Fan

Publications and source records attributed to Fengqiu Fan.

3 recordsLinked to original sources

Site-selective patterning using surfactant-based resists.

Patterned SAMs of alkanethiols on gold or silver are explored as resists for electrodeposition and exhibit surprisingly rich behavior depending on the overpotential and the length of the alkane chain. At small overpotentials, SAMs are positive resists with deposition only in the surfactant-free regions. At larger overpotentials, SAMs are negative resists with preferential deposition in the SAM-modified regions. Tunable surfactant-based resists are potentially versatile tools to dictate the deposition of materials and are demonstrated as a means of creating complex, three-dimensional structures.

Journal Article↗

Size-selective deposition and sorting of lyophilic colloidal particles on surfaces of patterned wettability.

A highly parallelizable means of positioning or sorting particles in a size-selective manner into arrays is demonstrated based on the placement of particle suspensions on surfaces of patterned wettability and the subsequent evaporation of the suspending solvent. The method relies on creating lyophilic features of dimensions similar to or greater than those of the particles to be arrayed and smaller than those of the particles to be excluded. As the contact line recedes, it fills lyophilic features, creating discrete fluid elements that mimic the underlying lyophilic pattern. The fluid elements have aspect ratios dictated by the contact angle. By adjusting the size of the lyophilic features, the heights of the fluid elements can be adjusted to sequester or exclude particles based on their diameter. The principal interest of this work is its broad applicability. No prior understanding of the particle properties is needed except for the size of the particle and its ability to be suspended in a solvent.

Letter↗

Assembly of colloidal particles by evaporation on surfaces with patterned hydrophobicity.

Drops containing suspended particles are placed on surfaces of patterned wettability created using soft lithography; the drop diameter is large compared to the dimensions of the patterns on the substrate. As the three-phase contact line of the drop recedes, spontaneous dewetting of the hydrophobic domains and flow into the hydrophilic domains create discrete fluid elements with peripheries that can mimic the underlying surface topography. Suspended particles are carried with the fluid into the wetted regions and deposit there as the discrete fluid domains evaporate. If particle volume fractions are sufficiently high, the entire wetted domain can be covered with colloidal crystals. At lower volume fractions, flow within the evaporating fluid element can direct the deposition of colloidal particles at the peripheries of the domains. High-resolution arrays of particles were obtained with a variety of features depending upon the relative size of the wetting regions to the particles. When the wetting region is larger than the particles, three-dimensional and two-dimensional arrays of ordered particles mimicking the shape of the wetting pattern form, depending on the particle volume fraction. For lower volume fractions, one-dimensional (1-D) arrays along the wet/non-wet boundaries form. When the particle size is similar to the height of fluid on the wetted domain, zero-dimensional distributions of single particles centered in the wet regions can form for wetted squares or 1-D distributions (stripes) form along the axis of striped domains. Finally, when the wetting region is smaller than the particle size, the particles do not deposit within the features but are drawn backward with the receding drop. These results indicate that evaporation on surfaces of patterned wetting provides a highly parallelizable means of tailoring the geometry of particle distributions to create patterned media.

Journal Article↗