Chemical Changes in Layered Ferroelectric Semiconductors Induced by Helium Ion Beam.
Alexei BelianinovMatthew J BurchHolland E HysmithAnton V IevlevVighter IberiMichael A SusnerMichael A McGuirePeter MaksymovychMarius ChyasnavichyusStephen JesseOlga S OvchinnikovaPublished in: Scientific reports (2017)
Multi-material systems interfaced with 2D materials, or entirely new 3D heterostructures can lead to the next generation multi-functional device architectures. Physical and chemical control at the nanoscale is also necessary tailor these materials as functional structures approach physical limit. 2D transition metal thiophosphates (TPS), with a general formulae Cu1-xIn1+x/3P2S6, have shown ferroelectric polarization behavior with a T c above the room temperature, making them attractive candidates for designing both: chemical and physical properties. Our previous studies have demonstrated that ferroic order persists on the surface, and that spinoidal decomposition of ferroelectric and paraelectric phases occurs in non-stoichiometric Cu/In ratio formulations. Here, we discuss the chemical changes induced by helium ion irradiation. We explore the TPS compound library with varying Cu/In ratio, using Helium Ion Microscopy, Atomic Force Microscopy (AFM), and Time of Flight-Secondary Ion Mass Spectrometry (ToF-SIMS). We correlate physical nano- and micro- structures to the helium ion dose, as well as chemical signatures of copper, oxygen and sulfur. Our ToF-SIMS results show that He ion irradiation leads to oxygen penetration into the irradiated areas, and diffuses along the Cu-rich domains to the extent of the stopping distance of the helium ions.
Keyphrases
- atomic force microscopy
- mass spectrometry
- room temperature
- physical activity
- high resolution
- mental health
- high speed
- transition metal
- aqueous solution
- single molecule
- ms ms
- metal organic framework
- ionic liquid
- radiation therapy
- high throughput
- optical coherence tomography
- quantum dots
- simultaneous determination
- case control
- label free