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Lista de obras de Christian Falconi

3D Reconstruction of Quasi-1D Single-Crystal Nanostructures.

artículo científico publicado en 2015

An accurate and computationally efficient model for membrane-type circular-symmetric micro-hotplates.

artículo científico publicado en 2014

Chromium inhibition and size-selected Au nanocluster catalysis for the solution growth of low-density ZnO nanowires.

artículo científico publicado en 2015

Double-Framed Thin Elastomer Devices

artículo científico publicado en 2020

High-Density ZnO Nanowires as a Reversible Myogenic-Differentiation Switch.

artículo científico publicado en 2018

Lateral bending of tapered piezo-semiconductive nanostructures for ultra-sensitive mechanical force to voltage conversion

artículo científico publicado en 2013

Length measurement and spatial orientation reconstruction of single nanowires

artículo científico publicado en 2018

Nanomaterials and Nanodevices for Energy Applications

Piezo-semiconductive quasi-1D nanodevices with or without anti-symmetry

artículo científico publicado en 2012

Piezoelectric potential in vertically aligned nanowires for high output nanogenerators

artículo científico publicado en 2011

Real-time monitoring of the solution growth of ZnO nanorods arrays by quartz microbalances and in-situ temperature sensors

artículo científico publicado en 2014

Resistance of Feedback Amplifiers: A Novel Representation

Rewritable ghost floating gates by tunnelling triboelectrification for two-dimensional electronics.

artículo científico publicado en 2017

Solution-Grown Zn/Al Layered Double Hydroxide Nanoplatelets onto Al Thin Films: Fine Control of Position and Lateral Thickness

Towards high-performance, low-cost quartz sensors with high-density, well-separated, vertically aligned ZnO nanowires by low-temperature, seed-less, single-step, double-sided growth

artículo científico publicado en 2013

Twin-Wire Networks for Zero Interconnect, High-Density 4-Wire Electrical Characterizations of Materials

artículo científico publicado en 2022