C F Pirri
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Explore the profile of C F Pirri including associated specialties, affiliations and a list of published articles.
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Articles
13
Citations
43
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Recent Articles
1.
Barberi J, Baruffaldi D, Napione L, Frascella F, Yamaguchi S, Pirri C, et al.
Langmuir
. 2024 Aug;
40(33):17301-17310.
PMID: 39106975
This paper deals with the combined effects of immune response and osseointegration because of the lack of comprehensive studies on this topic. An antibacterial Ti surface was considered because of...
2.
Antonicelli G, Ricci L, Tarraran L, Fraterrigo Garofalo S, Re A, Vasile N, et al.
Bioresour Technol
. 2023 Aug;
387:129689.
PMID: 37597573
CO:H-based gas fermentation with acetogenic Clostridium species are at an early stage of development. This work exploited the Adaptive Laboratory Evolution technique to improve the growth of C. carboxidivorans P7...
3.
Channab M, Pirri C, Angelini A
Nanomaterials (Basel)
. 2021 Jun;
11(6).
PMID: 34071754
In this work, we discuss the use of epsilon-near-zero (ENZ) metamaterials to efficiently couple light radiated by a dipolar source to an in-plane waveguide. We exploit both enhanced and directional...
4.
Lanzio V, Lorenzon M, Dhuey S, Pirri C, Lamberti A, Cabrini S
Nanotechnology
. 2021 Mar;
32(26).
PMID: 33725677
Neural probes arebrain-invasive devices that record and manipulate neural circuits using electricity, light, or drugs. The capability to shine distinct wavelengths and control their respective output locations for activation or...
5.
Spigarelli L, Vasile N, Pirri C, Canavese G
Sci Rep
. 2020 Nov;
10(1):19447.
PMID: 33173108
Acoustophoretic microfluidic devices are promising non-contact and high-throughput tools for particle manipulation. Although the effectiveness of this technique has been widely demonstrated for applications based on micrometer-sized particles, the manipulation...
6.
Conti D, Laurenti M, Porro S, Giovinazzo C, Bianco S, Fra V, et al.
Nanotechnology
. 2018 Dec;
30(6):065707.
PMID: 30523900
Resistive switching (RS) devices are considered as the most promising alternative to conventional random access memories. They interestingly offer effective properties in terms of device scalability, low power-consumption, fast read/write...
7.
Potrich C, Lunelli L, Cocuzza M, Marasso S, Pirri C, Pederzolli C
Talanta
. 2018 Oct;
193:44-50.
PMID: 30368296
Polydimethylsiloxane (PDMS) is a well-known biocompatible polymer employed for many applications in the biomedical field. In this study, the biocompatibility and versatility of PDMS was tested setting up a microdevice...
8.
Delmondo L, Munoz-Tabares J, Sacco A, Garino N, Massaglia G, Castellino M, et al.
Phys Chem Chem Phys
. 2017 Oct;
19(42):28781-28787.
PMID: 29048084
Manganese oxides (MnO) are considered as a promising catalyst alternative to platinum in fuel cell applications. In fact, a proper catalyst is needed in order to facilitate the oxygen reduction...
9.
Munoz-Tabares J, Bejtka K, Lamberti A, Garino N, Bianco S, Quaglio M, et al.
Nanoscale
. 2016 Mar;
8(12):6866-76.
PMID: 26955909
The use of TiO2 nanotube (NT) arrays as templates for hydrothermal conversion of one-dimensional barium titanate (BaTiO3) structures is considered a promising synthesis approach, even though the formation mechanisms are...
10.
Pasquardini L, Potrich C, Vaghi V, Lunelli L, Frascella F, Descrovi E, et al.
Talanta
. 2016 Feb;
150:699-704.
PMID: 26838461
The detection of low abundant biomarkers, such as circulating microRNAs, demands innovative detection methods with increased resolution, sensitivity and specificity. Here, a biofunctional surface was implemented for the selective capture...