activity
20102023
most citedMicro-engineered CHNHPbI nanowire/graphene phototransistor for low intensity light detection at room temperature

166 citations · 559 across the 12 of their papers we have counts for

collaborators

12 papers

cond-mat.mes-hall202314 cited

Ultralong 100 ns Spin Relaxation Time in Graphite at Room Temperature

B. G. Márkus, M. Gmitra, B. Dóra +8

Graphite has been intensively studied, yet its electron spins dynamics remains an unresolved problem even 70 years after the first experiments. The central quantities, the longitud…

cond-mat.supr-con20165 cited

Upper critical field, pressure-dependent superconductivity and electronic anisotropy of SmFeAsTeOF

A Pisoni, S Katrych, P Szirmai +4

We present a detailed study of the electrical transport properties of a recently discovered iron-based superconductor: SmFeAsTeOF. We followed…

cond-mat.mes-hall201697 cited

Controlled growth of CHNHPbI nanowires in arrays of open nanofluidic channels

Massimo Spina, Eric Bonvin, Andrzej Sienkiewicz +3

Spatial positioning of nanocrystal building blocks on a solid surface is a prerequisite for assembling individual nanoparticles into functional devices. Here, we report on the grap…

cond-mat.mes-hall2016166 cited

Micro-engineered CHNHPbI nanowire/graphene phototransistor for low intensity light detection at room temperature

M. Spina, M. Lehmann, B. Náfrádi +6

Methylammonium lead iodide perovskite has revolutionized the field of third generation solid-state solar cells leading to simple solar cell structures1 and certified efficiencies u…

cond-mat.mes-hall201657 cited

Ultrasensitive 1D field-effect phototransistor: CHNHPbI nanowire sensitized individual carbon nanotube

M. Spina, B. Náfrádi, H. M. Tóháti +4

Field-effect phototransistors were fabricated based on individual carbon nanotubes (CNTs) sensitized by CHNHPbI nanowires (MAPbINW). These devices represent light r…

cond-mat.mtrl-sci2016141 cited

Optically switched magnetism in photovoltaic perovskite CHNH(Mn:Pb)I

B. Náfrádi, P. Szirmai, M. Spina +7

The demand for ever-increasing density of information storage and speed of manipulation boosts an intense search for new magnetic materials and novel ways of controlling the magnet…