Many plant leaves found in nature are known to exhibit a characteristic of superhydrophobicity ('lotus leaf effect'). The present study proposes a mass-production method of highly hydrophobic surfaces by simply replicating the highly hydrophobic plant leaf surfaces in two steps: the first step of making a nickel mould via electroforming and the second step of replication via a UV-nanoimprint lithography. Making a nickel mould, either a plant leaf or its negative polymer replica is used as a mandrel in electroforming, and final products become positive or negative polymer replicas of a plant leaf, respectively. It is found that the nickel-mould making using the plant leaf as a mandrel is quite successful and the final products in t...
This work explores a facile way to fabricate superhydrophobic and antireflective polymer surfaces us...
In this paper, we report on the replication of surfaces of Lotus and Colocasia leaves onto thin poly...
This thesis deals with the fabrication of superhydrophobic and antireflective polymeric surfaces. In...
In this study, we have investigated the feasibility of reproducing the hydrophobic characteristics o...
The surfaces of plant leaves are rarely smooth and often possess a species-specific micro- and/or na...
We report two direct and easy ways of fabricating stable, superhydrophobic polymeric and carbon surf...
We report two direct and easy ways of fabricating stable, superhydrophobic polymeric and carbon surf...
We report two direct and easy ways of fabricating stable, superhydrophobic polymeric and carbon surf...
In this research, a low-cost template-based process has been developed to structure the surfaces of ...
In this research, a low-cost template-based process has been developed to structure the surfaces of ...
In nature, various plants and animals exhibit promising structurally-defined functionalities. Many d...
In nature, various plants and animals exhibit promising structurally-defined functionalities. Many d...
Abstract Gifted with unique optical and hydrophobic properties, the plant leaves have been recentl...
The fabrication of microstructured surfaces using biological templates was investigated with the aim...
The fabrication of microstructured surfaces using biological tem- plates was investigated with the a...
This work explores a facile way to fabricate superhydrophobic and antireflective polymer surfaces us...
In this paper, we report on the replication of surfaces of Lotus and Colocasia leaves onto thin poly...
This thesis deals with the fabrication of superhydrophobic and antireflective polymeric surfaces. In...
In this study, we have investigated the feasibility of reproducing the hydrophobic characteristics o...
The surfaces of plant leaves are rarely smooth and often possess a species-specific micro- and/or na...
We report two direct and easy ways of fabricating stable, superhydrophobic polymeric and carbon surf...
We report two direct and easy ways of fabricating stable, superhydrophobic polymeric and carbon surf...
We report two direct and easy ways of fabricating stable, superhydrophobic polymeric and carbon surf...
In this research, a low-cost template-based process has been developed to structure the surfaces of ...
In this research, a low-cost template-based process has been developed to structure the surfaces of ...
In nature, various plants and animals exhibit promising structurally-defined functionalities. Many d...
In nature, various plants and animals exhibit promising structurally-defined functionalities. Many d...
Abstract Gifted with unique optical and hydrophobic properties, the plant leaves have been recentl...
The fabrication of microstructured surfaces using biological templates was investigated with the aim...
The fabrication of microstructured surfaces using biological tem- plates was investigated with the a...
This work explores a facile way to fabricate superhydrophobic and antireflective polymer surfaces us...
In this paper, we report on the replication of surfaces of Lotus and Colocasia leaves onto thin poly...
This thesis deals with the fabrication of superhydrophobic and antireflective polymeric surfaces. In...