scholarly journals Nanoscience – from manipulation of atoms to human needs

2021 ◽  
Vol 68 (1) ◽  
pp. 84-88
Author(s):  
Š. Luby

Abstract Nanoscience and nanotechnology are an extrapolation from the field of microtechnology to the atomic level. The development is based on the 60-year-old message of R. Feynman, ‘There's plenty of room at the bottom’. His vision has fertilised at the turn of the millennium with the announcement of generously funded nanotechnology initiatives. The journey was paved by seven Nobel Prizes (1986–2016) for new microscopes, low-dimensional materials (fullerenes, graphene), theories and computer methods up to the building of molecular engines. However, the enthusiasm for this technically and IT-oriented ‘business as usual’ partly dissolves in the problems of a planet burdened by climate change, depletion of raw materials, new diseases and pandemics. It is a challenge for nanoscience to adapt to these goals. Therefore, after a brief recapitulation of the history and achievements of nanotechnology, the paper will focus on its new directions. Among them, nanomedicine and pharmacy are of the topmost interest. Moreover, in the interaction of the nanoworld with humans, cross-sectional topics such as nanoethics and nanotoxicology (hampered by commercial interests) must be placed at a higher level at the same time as addressing specific applications. The world counts on nanomedicine at first in areas where overcoming of physiological barriers is not so difficult. These are dentistry and dermatology. In pharmacy, promising is the administration of drugs by methods of a ‘Trojan horse’ – their introduction directly to a therapeutic target. We also provide examples of gas nanosensors for diagnostics. These topics will be processed in such a way as to highlight the importance of nanoscience for human health.

2003 ◽  
Vol 793 ◽  
Author(s):  
M. S. Dresselhaus ◽  
Y. M. Lin ◽  
M. R. Black ◽  
O. Rabin ◽  
G. Dresselhaus

ABSTRACTLow dimensionality provides opportunities to modify the properties of bulk materials dramatically and to control materials properties independently in a manner that is not possible for bulk materials. The special characteristics of low dimensional materials to enhance thermoelectric performance have already been demonstrated in quantum wells, quantum wires and quantum dots. The main focus of this review is a summary of advances made in the modeling of quantum dot superlattice nanowires. Several new research directions for low dimensional thermoelectricity or inspired by this research are briefly mentioned.


Sensors ◽  
2021 ◽  
Vol 21 (4) ◽  
pp. 1535
Author(s):  
Shiu-Ming Huang ◽  
Jai-Lung Hung ◽  
Mitch Chou ◽  
Chi-Yang Chen ◽  
Fang-Chen Liu ◽  
...  

Broadband photosensors have been widely studied in various kinds of materials. Experimental results have revealed strong wavelength-dependent photoresponses in all previous reports. This limits the potential application of broadband photosensors. Therefore, finding a wavelength-insensitive photosensor is imperative in this application. Photocurrent measurements were performed in Sb2Te3 flakes at various wavelengths ranging from visible to near IR light. The measured photocurrent change was insensitive to wavelengths from 300 to 1000 nm. The observed wavelength response deviation was lower than that in all previous reports. Our results show that the corresponding energies of these photocurrent peaks are consistent with the energy difference of the density of state peaks between conduction and valence bands. This suggests that the observed photocurrent originates from these band structure peak transitions under light illumination. Contrary to the most common explanation that observed broadband photocurrent carrier is mainly from the surface state in low-dimensional materials, our experimental result suggests that bulk state band structure is the main source of the observed photocurrent and dominates the broadband photocurrent.


2019 ◽  
Vol 3 (3) ◽  
Author(s):  
Peter Mahler Larsen ◽  
Mohnish Pandey ◽  
Mikkel Strange ◽  
Karsten Wedel Jacobsen

Nanoscale ◽  
2021 ◽  
Author(s):  
Ivan Marri ◽  
Stefano Ossicini

An important challenge in the field of renewable energy is the development of novel nanostructured solar cell devices which implement low-dimensional materials to overcome the limits of traditional photovoltaic systems....


Nanoscale ◽  
2021 ◽  
Author(s):  
Z.Q. Zheng ◽  
Yuchen Zhou ◽  
Wei Gao ◽  
Li Zhang ◽  
Mengmeng Yang ◽  
...  

Heterojunctions based on low-dimensional materials can combine the superiorities of each composition and realize novel properties. Herein, a mixed-dimensional heterojunction comprising multilayer WS2, CdS microwire and few-layer WS2 has been...


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