Micro- and nanoscale tubular structures can be formed by strain-induced self-rolled-up nanomembranes. Precision engineering of the shape and dimension determines the performance of devices based on this platform for electronic, optical, and biological applications. A transient quasi-static finite element method (FEM) with moving boundary conditions is proposed as a general approach to design diverse types of three-dimensional (3D) rolled-up geometries. This method captures the dynamic release process of membranes through etching driven by mismatch strain and accurately predicts the final dimensions of rolled-up structures. Guided by the FEM modeling, experimental demonstration using silicon nitride membranes was achieved with unprecedented ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Inspired by nature, it is envisaged that a nanorough surface exhibits bactericidal properties by rup...
This work aims to demonstrate the feasibility of a novel approach for the development of 3D self-ass...
ABSTRACT: Micro- and nanoscale tubular structures can be formed by strain-induced self-rolled-up nan...
Semiconductor nanomembranes are single-crystal sheets with thickness ranging from 5 to 500nm. They a...
ABSTRACT Semiconductor micro- and nanotubes can be formed by strain-induced self-rolling of membrane...
Future advances in materials will be aided by improved dimensional control in fabrication of 3D hier...
This thesis considers the viability of nanomembrane handling and stacking approaches to enable the f...
Research on nanomembranes and graphene sheets represents the "third wave" of work on nanomaterials, ...
Title: Theoretical studies of rolled-up and wrinkled nanomembranes Author: Mgr. Peter Cendula Depart...
International audienceThe mechanic properties of cell membranes control many biological processes. T...
Surface micromachined membranes such as RF-MEMS switches are widely adopted in the field of telecomm...
We use micropatterning and strain engineering to encapsulate single living mammalian cells into tran...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Inspired by nature, it is envisaged that a nanorough surface exhibits bactericidal properties by rup...
This work aims to demonstrate the feasibility of a novel approach for the development of 3D self-ass...
ABSTRACT: Micro- and nanoscale tubular structures can be formed by strain-induced self-rolled-up nan...
Semiconductor nanomembranes are single-crystal sheets with thickness ranging from 5 to 500nm. They a...
ABSTRACT Semiconductor micro- and nanotubes can be formed by strain-induced self-rolling of membrane...
Future advances in materials will be aided by improved dimensional control in fabrication of 3D hier...
This thesis considers the viability of nanomembrane handling and stacking approaches to enable the f...
Research on nanomembranes and graphene sheets represents the "third wave" of work on nanomaterials, ...
Title: Theoretical studies of rolled-up and wrinkled nanomembranes Author: Mgr. Peter Cendula Depart...
International audienceThe mechanic properties of cell membranes control many biological processes. T...
Surface micromachined membranes such as RF-MEMS switches are widely adopted in the field of telecomm...
We use micropatterning and strain engineering to encapsulate single living mammalian cells into tran...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Inspired by nature, it is envisaged that a nanorough surface exhibits bactericidal properties by rup...
This work aims to demonstrate the feasibility of a novel approach for the development of 3D self-ass...