Applied Physics Express

Basic Information

Brief Name: APPL PHYS EXPRESS
Impact Factor: 2.3
ISSN: 1882-0778
Research Field: PHYSICAL
h-index: 79
Self-citation Rate: 8.7%
Articles per Year: 311

SCI Index Status: Science Citation Index Expanded
Journal Website: https://iopscience.iop.org/journal/1882-0786
Journal Introduction:

Applied Physics Express (APEX) is a Letters journal devoted solely to rapid dissemination of up-to-date and concise reports on new findings in applied physics. The motto of APEX is high scientific quality and prompt publication. APEX is a sister journal of the Japanese Journal of Applied Physics (JJAP) and is published by IOP Publishing on behalf of the Japan Society of Applied Physics (JSAP) APEX publishes articles dealing with the applications of physical principles as well as articles concerning the understanding of physics with particular applications in mind. As a Letters journal, emphasis will be given to developing and emerging fields in applied physics. Examples of fields of current interest include: Semiconductors, dielectrics, and organic materials Photonics, quantum electronics, optics, and spectroscopy Spintronics, superconductivity, and strongly correlated materials Device physics including quantum information processing Physics-based circuits and systems Nanoscale science and technology Crystal growth, surfaces, interfaces, thin films, and bulk materials Plasmas, applied atomic and molecular physics, and applied nuclear physics Device processing, fabrication and measurement technologies, and instrumentation Cross-disciplinary areas such as bioelectronics/photonics, biosensing, environmental/energy technologies, and MEMS

CiteScore

CiteScore
4.8
SJR
0.487
SNIP
0.817
Subject Rank Percentile
EngineeringGeneral Engineering
77 / 307 74%

Journal Statistics

Monthly
Issues/Year
Submission to first decision before peer review 8 days Submission to first decision after peer review 14 days
Review Cycle
£1800/€2000/$2250
Article Processing Fee

Submission Information

Submission Website:

https://mc04.manuscriptcentral.com/apex-jsap

Related Articles

Palladium-catalysed direct synthesis of benzo[b]thiophenes from thioenols

Kiyofumi Inamoto, Yukari Arai, Kou Hiroya, Takayuki Doi

2008-09-24 Communication

DOI: 10.1039/B811362A

Post-assembly error-checking in subphthalocyanine based M3L2 metallosupramolecular capsules‡

Christian G. Claessens, M. Jesús Vicente-Arana, Tomás Torres

2008-11-04 Communication

DOI: 10.1039/B815898C

Polyfunctional benzylic zinc chlorides by the direct insertion of magnesium into benzylic chlorides in the presence of LiCl and ZnCl2

Albrecht Metzger, Fabian M. Piller, Paul Knochel

2008-10-01 Communication

DOI: 10.1039/B812396A

Formation of a stannylstannylenevia intramolecular carbene addition of a transient stannaacetylene (RSnCR′)

Katsuyuki Hirai, Hideo Tomioka, Kenkichi Sakamoto, Mitsuo Kira

2008-11-11 Communication

DOI: 10.1039/B814801E

Glycosylated asterisks are among the most potent low valency inducers of Concanavalin A aggregation

Mazen Sleiman, Annabelle Varrot, Jean-Manuel Raimundo, Marc Gingras, Peter G. Goekjian

2008-11-07 Communication

DOI: 10.1039/B814816C

Synthesis and structural characterisation of a soluble, metastable indium(i) halide complex, [InBr(tmeda)]

Cameron Jones, Andreas Stasch

2008-11-04 Communication

DOI: 10.1039/B814658F

A cavitand with a fluorous rim acts as an amine receptor

Richard J. Hooley, Per Restorp, Julius Rebek Jr

2008-11-06 Communication

DOI: 10.1039/B814069C

Sensitive liposomes encoded with oligonucleotideamphiphiles: a biocompatible switch

Gregory Giannone

2008-09-23 Communication

DOI: 10.1039/B812398E

Wet-chemical approach for the halogenation of hydrogenated boron-doped diamond electrodes

Manash R. Das, Vera G. Praig, Francois LeNormand, Musen Li, Rabah Boukherroub

2008-10-22 Communication

DOI: 10.1039/B810975C

Formation of dodecaphenylporphodimethenevia facile protonation of saddle-distorted dodecaphenylporphyrin

Takahiko Kojima, Kakeru Hanabusa, Kei Ohkubo, Motoo Shiro, Shunichi Fukuzumi

2008-11-05 Communication

DOI: 10.1039/B816063E

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