High throughput investigation of an emergent and naturally abundant 2D material: Clinochlore
arXiv:2206.09943 · doi:10.1016/j.apsusc.2022.153959
Abstract
Phyllosilicate minerals, which form a class of naturally occurring layered materials (LMs), have been recently considered as a low-cost source of two-dimensional (2D) materials. Clinochlore [Mg5Al(AlSi3)O10(OH)8] is one of the most abundant phyllosilicate minerals in nature, exhibiting the capability to be mechanically exfoliated down to a few layers. An important characteristic clinochlore is the natural occurrence of defects and impurities which can strongly affect their optoelectronic properties, possibly in technologically interesting ways. In the present work, we carry out a thorough investigation of the clinochlore structure on both bulk and 2D exfoliated forms, discussing its optical features and the influence of the insertion of impurities on its macroscopic properties. Several experimental techniques are employed, followed by theoretical first-principles calculations considering several types of naturally-ocurring transition metal impurities in the mineral lattice and their effect on electronic and optical properties. We demonstrate the existence of requirements concerning surface quality and insulating properties of clinochlore that are mandatory for its suitable application in nanoelectronic devices. The results presented in this work provide important informations for clinochlore potential applications and establish a basis for further works that intend to optimize its properties to relevant 2D technological applications through defect engineering.
References in corpus (4)
- Electric Field Effect in Atomically Thin Carbon Films
- Mechanical properties of freely suspended atomically thin dielectric layers of mica
- Exploring the structural and optoelectronic properties of natural insulating phlogopite in van der Waals heterostructures
- High throughput investigation of an emergent and naturally abundant 2D material: Clinochlore
Cited by in corpus (8)
- High throughput investigation of an emergent and naturally abundant 2D material: Clinochlore
- Raman and Far Infrared Synchrotron Nanospectroscopy of Layered Crystalline Talc: Vibrational Properties, Interlayer Coupling and Symmetry Crossover
- Phyllosilicates as earth-abundant layered materials for electronics and optoelectronics: Prospects and challenges in their ultrathin limit
- Review on Infrared Nanospectroscopy of Natural 2D Phyllosilicates
- Shaping terahertz waves using anisotropic shear modes in a van der Waals mineral
- Investigation of the Nonlinear Optical Frequency Conversion in Ultrathin Franckeite Heterostructures
- Optimizing Aperture Geometry in THz-TDS for Accurate Spectroscopy of Quantum Materials
- Two-dimensional talc as a natural hyperbolic material