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301
journal article EST
/
journal article ENG
Up-conversion enhancement in Er3+ / Yb3+ doped 1-D microcavity based on alternating aluminosilicate glass and titania sol-gel layers
Rojas Hernandez, Rocio Estefania
;
Santos, Luis F.
;
Almeida, Rui M.
Ceramics international
2020
/
p. 26273-26281
https://doi.org/10.1016/j.ceramint.2019.12.248
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journal article EST
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journal article ENG
302
journal article EST
/
journal article ENG
Value for money : a cost-effectiveness analysis of microplastic analytics in seawater
Meyers, Nelle
;
Kopke, Kathrin
;
Buhhalko, Natalja
;
Mattsson, Karin
;
Janssen, Colin R.
;
Everaert, Gert
;
De Witte, Bavo
Microplastics and nanoplastics
2024
/
art. 4
https://doi.org/10.1186/s43591-024-00081-x
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journal article EST
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journal article ENG
303
journal article EST
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journal article ENG
Wear behaviour and wear mechanisms of different hardmetal grades in comparison with polycrystalline diamond in a new impact-abrasion test
Konyashin, I.
;
Antonov, Maksim
;
Ries, B.
International journal of refractory metals and hard materials
2020
/
art. 105286
https://doi.org/10.1016/j.ijrmhm.2020.105286
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journal article ENG
304
journal article EST
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journal article ENG
Wear behaviour of doped WC–NI based hardmetals tested by four methods
Yung, Der-Liang
;
Antonov, Maksim
;
Veinthal, Renno
;
Hussainova, Irina
Wear
2016
/
p. 171-179 : ill
https://doi.org/10.1016/j.wear.2016.02.015
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journal article EST
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journal article ENG
305
journal article EST
/
journal article ENG
Wear performance of hierarchically structured alumina reinforced by hybrid graphene encapsulated alumina nanofibers
Hussainova, Irina
;
Baroninš, Janis
;
Drozdova, Maria
;
Antonov, Maksim
Wear
2016
/
p. 287-295 : ill
https://doi.org/10.1016/j.wear.2016.09.028
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306
journal article EST
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journal article ENG
Wetting and interfacial behaviour in the TiB2-NiCrBSiC system
Storozhenko, Maryna
;
Umanskyi, Oleksandr
;
Antonov, Maksim
Journal of alloys and compounds
2019
/
p. 15-22 : ill
https://doi.org/10.1016/j.jallcom.2018.11.102
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307
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journal article ENG
Young’s modulus of illitic clay in the temperature region of quartz transition
Hulan, Tomaš
;
Štubna, Igor
;
Kaljuvee, Tiit
;
Knapek, Michal
Journal of thermal analysis and calorimetry
2022
/
p. 7701-7707
https://doi.org/10.1007/s10973-021-11083-9
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Number of records 307, displaying
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keyword
160
1.
materials chemistry
2.
materials science
3.
chemistry and philosophy of science
4.
absorptive materials
5.
acoustic materials
6.
aerospace materials
7.
agglomeration (materials)
8.
amorphous materials
9.
Anode materials
10.
antibacterial materials
11.
Antimicrobial materials
12.
applications and performances of bioinspired materials
13.
bio-based materials
14.
bio‐based materials
15.
biocompatible materials
16.
biocomposite materials
17.
bitumen-based roofing materials
18.
boi ceramic materials
19.
bond strength (materials)
20.
building materials
21.
carbon based materials
22.
carbon materials
23.
carbon neutral building materials
24.
carbon-based materials
25.
cathode materials
26.
ceramic luminescent materials
27.
ceramic materials
28.
composite materials
29.
construction materials
30.
Critical Raw Materials
31.
dielectric materials
32.
dispersion strengthened materials
33.
earth-abundant materials
34.
EIT Raw Materials
35.
electroactive materials
36.
electron transporting materials
37.
ferromagnetic materials
38.
fill materials
39.
flow packaging materials
40.
fracture (materials)
41.
functional materials
42.
functionalized materials
43.
fusion-related materials
44.
gradient-structured materials
45.
granular materials
46.
Hard magnetic materials
47.
hazardous materials
48.
high-entropy materials
49.
historic building materials
50.
hybrid materials
51.
indoor finishing materials
52.
inorganic materials
53.
insulation materials
54.
insulation materials
55.
living materials
56.
local natural materials
57.
luminogenic materials
58.
macroporous materials
59.
magnetic materials
60.
magnetically ordered materials
61.
materials
62.
materials computational analysis
63.
materials design
64.
materials engineering
65.
materials mass origin
66.
materials reliability
67.
materials technology
68.
materials testing
69.
mechanics of materials
70.
mesoporous materials
71.
MIEC materials
72.
M–N–C catalyst materials
73.
monograin materials
74.
multi-phase materials
75.
nanostructured materials
76.
Natural materials
77.
nonwoven materials
78.
optical materials
79.
optically active materials
80.
organic materials
81.
oxide materials
82.
phase change materials (PCM)
83.
phase-change materials
84.
plasma facing materials
85.
plasma-facing materials
86.
porous carbon materials
87.
porous materials
88.
powder materials
89.
processing of bioinspired materials
90.
prosthesis materials
91.
Rare-earth-free luminescent materials
92.
raw materials
93.
recycled building materials
94.
road materials
95.
sensing materials
96.
simulations of bioinspired materials at all length scales
97.
smart materials
98.
smart materials with structural health monitoring capabilities
99.
soft magnetic composite materials
100.
soft magnetic materials
101.
soft robot materials and design
102.
solar energy materials
103.
soundproof materials
104.
structures and materials
105.
sustainable materials
106.
teaching materials
107.
transportation materials
108.
Two-dimensional materials
109.
ultrafine grained (UFG) materials
110.
Ultrafine-grained materials
111.
wear of materials
112.
wide bandgap materials
113.
virucidal materials
114.
wooden materials
115.
analytical chemistry
116.
analytical chemistry applications
117.
atmospheric chemistry
118.
bioinorganic chemistry
119.
biophysical chemistry
120.
carbonate chemistry
121.
chemistry
122.
chemistry concepts
123.
chemistry teaching
124.
click chemistry
125.
computational chemistry
126.
defect chemistry
127.
dual character of chemistry
128.
dynamic covalent chemistry
129.
environmental analytical chemistry
130.
environmental chemistry
131.
fatty acid/physical chemistry
132.
fjord chemistry
133.
flotation and surface chemistry processes
134.
flow chemistry
135.
Green analytical chemistry
136.
green chemistry
137.
green chemistry metrics
138.
host-guest chemistry
139.
HsC chemistry
140.
industrial chemistry
141.
Inorganic chemistry
142.
laws of chemistry
143.
lipids/chemistry
144.
organic chemistry
145.
phases chemistry
146.
physical chemistry
147.
polymer chemistry
148.
QD chemistry
149.
radical chemistry
150.
Reaxys Chemistry database information
151.
redox chemistry
152.
Rhizosphere chemistry
153.
sea-ice chemistry
154.
soil chemistry
155.
sol-gel chemistry
156.
Solid Fuel Chemistry
157.
solvent-free chemistry
158.
stream water chemistry
159.
supramolecular chemistry
160.
sustainable chemistry
subject term
4
1.
EIT Raw Materials
2.
Heidelberg Materials
3.
International Baltic conference on engineering materials and tribology (24 : 2015 : Tallinn)
4.
Neo Performance Materials (NPM) Narva magnetitehas
TalTech department
2
1.
Department of Materials and Environmental Technology
2.
Department of Chemistry and Biotechnology
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