|
Home
|
E-Submission/Review
|
Sitemap
|
Editorial Office
|
목적 및 범위
Aims and Scope
저널 정보
About the Journal
편집위원회
Editorial Board
Open Access
편집국
Editorial Office
논문투고안내
Instructions for Authors
연구윤리규정
Research and Publication Ethics
필수 점검 사항
Checklist
논문투고사이트
E-Submission
저작권이양동의서
Copyright Transfer Agreement
발간호 검색
All issues
출판전 논문
Online First
현재 발행 호
Current Issue
많이 읽힌 논문
Most Read Articles
많이 인용된 논문
Most Cited Articles
개별 논문 검색
Korean J. Met. Mater.
Search
저자 색인
Author Index
Korean Journal of Metals and Materials
Search
> Browse Articles > Search
S
y
n
t
h
e
s
i
s
o
f
P
o
r
o
u
s
S
i
l
i
c
a
P
a
r
t
i
c
l
e
s
f
o
r
t
h
e
A
d
s
o
r
p
t
i
o
n
o
f
O
r
g
a
n
i
c
D
y
e
i
n
A
q
u
e
o
u
s
M
e
d
i
u
m
Y
o
u
n
g
-
S
a
n
g
C
h
o
,
S
o
l
J
e
o
n
g
,
S
o
y
o
u
n
g
N
a
m
Korean J. Met. Mater.
2020;58(5):304-318. Published online 2020 Apr 20
DOI:
https://doi.org/10.3365/KJMM.2020.58.5.304
Abstract
This study investigated the removal of the organic dye like methylene blue using porous particles in a batch adsorption process. Porous silica microparticles were synthesized with macropores or meso-macropores and used as adsorbent particles. The hierarchically porous structures with additional mesopores were found to be more effective adsorbent than simple.....
More
Cited By 3
P
a
t
t
e
r
n
F
o
r
m
a
t
i
o
n
o
f
H
i
g
h
l
y
O
r
d
e
r
e
d
S
u
b
-
2
0
n
m
P
t
C
r
o
s
s
-
B
a
r
o
n
N
i
T
h
i
n
F
i
l
m
Ni 박막 위 20 nm급 고정렬 Pt 크로스-바 구조물의 형성 방법
T
a
e
W
a
n
P
a
r
k
,
H
y
u
n
s
u
n
g
J
u
n
g
,
Y
o
u
n
g
-
R
a
e
C
h
o
,
J
u
n
g
W
o
o
L
e
e
,
W
o
o
n
I
k
P
a
r
k
박태완, 정현성, 조영래, 이정우, 박운익
Korean J. Met. Mater.
2018;56(12):910-914. Published online 2018 Dec 5
DOI:
https://doi.org/10.3365/KJMM.2018.56.12.910
Abstract
Since catalyst technology is one of the promising technologies to improve the working performance of next generation energy and electronic devices, many efforts have been made to develop various catalysts with high efficiency at a low cost. However, there are remaining challenges to be resolved in order to use the.....
More
Cited By 3
R
a
p
i
d
S
i
n
t
e
r
i
n
g
o
f
N
a
n
o
c
r
y
s
t
a
l
l
i
n
e
S
i
C
-
G
r
a
p
h
e
n
e
C
o
m
p
o
s
i
t
e
s
나노구조 SiC-Graphene 복합재료 급속소결
I
n
-
J
i
n
S
h
o
n
손인진
Korean J. Met. Mater.
2016;54(12):893-898. Published online 2016 Dec 5
DOI:
https://doi.org/10.3365/KJMM.2016.54.12.893
Abstract
The low mechanical properties of SiC limit its wide application despite many attractive properties. To improve the mechanical properties, a second phase has been generally added to make a nanostructured composite. In this respect, graphene was evaluated as the reinforcing agent of SiC. SiC-graphene composites were sintered within 2 min.....
More
Cited By 3
C
a
t
a
l
y
t
i
c
A
c
t
i
v
i
t
y
a
n
d
S
u
r
f
a
c
e
C
h
a
r
a
c
t
e
r
i
s
t
i
c
s
o
f
W
O
<
s
u
b
>
3
<
/
s
u
b
>
-
d
o
p
e
d
M
n
O
<
s
u
b
>
x
<
/
s
u
b
>
-
T
i
O
<
s
u
b
>
2
<
/
s
u
b
>
C
a
t
a
l
y
s
t
s
f
o
r
L
o
w
-
t
e
m
p
e
r
a
t
u
r
e
S
e
l
e
c
t
i
v
e
C
a
t
a
l
y
t
i
c
R
e
d
u
c
t
i
o
n
o
f
N
O
<
s
u
b
>
x
<
/
s
u
b
>
w
i
t
h
N
H
<
s
u
b
>
3
<
/
s
u
b
>
B
y
e
o
n
g
k
i
l
S
h
i
n
,
H
e
e
s
o
o
L
e
e
,
H
y
u
n
P
a
r
k
Korean J. Met. Mater.
2016;54(10):787-792. Published online 2016 Oct 5
DOI:
https://doi.org/10.3365/KJMM.2016.54.10.787
Abstract
The effect of added WO
3
on the catalytic activity and surface characteristics of the MnO
x
-TiO
2
system was investigated for the low-temperature selective catalytic reduction of NO
x
with NH
3
. Based on physio-chemical characterizations, the specific surface areas of the WO
3
-MnO
x
-TiO
2
catalysts increased from 76.12 m
2
/g to 90.29 m
2
/g as the WO
3
...
More
Cited By 1
Materials Analysis & Characterization
T
r
a
n
s
m
i
s
s
i
o
n
E
l
e
c
t
r
o
n
M
i
c
r
o
s
c
o
p
i
c
A
n
a
l
y
s
i
s
o
f
M
i
c
r
o
-
T
w
i
n
미세쌍정의 투과전자현미경 해석
K
u
n
K
u
l
R
y
o
o
,
M
i
-
y
o
u
n
g
H
a
,
K
a
n
g
D
e
u
k
L
e
e
류근걸, 하미영, 이강득
Korean J. Met. Mater.
2016;54(9):711-715. Published online 2016 Sep 5
DOI:
https://doi.org/10.3365/KJMM.2016.54.9.711
Abstract
Micro-twinning has been investigated in some state-of-the-art materials by transmission electron microscopy, but such characterizations have not been clear so far. Micro-twins must be characterized by identifying their spots in the electron diffraction pattern, which is very unique compared to normal defects such as dislocations or stacking.....
More
Cited By 2
1
|
Journal Impact Factor 1.2