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Materials Science and Environmental Engineering
Tampere University
Faculty of Engineering and Natural Sciences
Website
https://www.tuni.fi/en/about-us/materials-science-and-environmental-engineering
Overview
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Network
Profiles
(179)
Research output
(3824)
Datasets
(1)
Activities
(5384)
Prizes
(73)
Press/Media
(17)
Research Infrastructures
(12)
Research output
Research output per year
1980
2008
2009
2010
2011
2012
2013
2014
2015
2016
2017
2018
2019
2020
2021
2022
2023
2463
Article
596
Conference contribution
187
Doctoral thesis
136
Abstract
442
More
130
Chapter
81
Patent
79
Commissioned report
69
Review Article
23
Poster
16
Anthology
12
Book
5
Letter
4
Comment/debate
4
Special issue
3
Editorial
3
Other contribution
3
Preprint
2
Other conference contribution
2
Meeting Abstract
1
Conference article
1
Data article
1
Literature review
1
Short survey
1
Digital or Visual Products
1
Discussion paper
Research output per year
Research output per year
3 results
Publication Year, Title
(descending)
Publication Year, Title
(ascending)
Title
Type
Filter
Preprint
Search results
2022
Experimental investigations on wire arc additively manufactured thin and thick walls made on duplex stainless steel
Queguineur, A.
,
Asadi, R.
,
Ostolaza, M.
,
Hørdum Valente, E.
,
Karthik Nadimpalli, V.
,
Mohanty, G.
,
Hascoët, J-Y.
&
Flores Ituarte, I.
,
Nov 2022
, (Submitted).
Research output
:
Working paper
›
Preprint
›
Scientific
File
thick walls
100%
thin walls
90%
stainless steels
60%
arcs
56%
wire
50%
Iterative immunostaining combined with expansion microscopy and image processing reveals nanoscopic network organization of nuclear lamina
Mäntylä, E.
,
Montonen, T.
,
Azzari, L.
,
Mattola, S.
,
Hannula, M.
,
Vihinen-Ranta, M.
,
Hyttinen, J.
,
Vippola, M.
,
Foi, A.
,
Nymark, S.
&
Ihalainen, T.
,
28 Sept 2022
, (Submitted)
28 p.
Research output
:
Working paper
›
Preprint
›
Scientific
Nuclear Lamina
100%
Microscopy
56%
Lamins
19%
Lighting
14%
Indirect Fluorescent Antibody Technique
14%
Light-induced nanoscale deformation in azobenzene thin film triggers rapid intracellular Ca2+ increase via mechanosensitive cation channels
Peussa, H.
,
Fedele, C.
,
Tran, H.
,
Fadjukov, J.
,
Mäntylä, E.
,
Priimägi, A.
,
Nymark, S.
&
Ihalainen, T. O.
,
28 Sept 2022
, (Submitted)
28 p.
Research output
:
Working paper
›
Preprint
›
Scientific
azobenzene
100%
Cations
58%
Light
40%
Biophysics
26%
Interphase
22%