electronic supplementary information electrochemical

1 Electronic Supplementary Information

1/16 1 Electronic Supplementary Information 2 3 Hydrogenation of oxalic acid using light-assisted water electrolysis 4 for the production of an alcoholic compound 5 6 Sho Kitanoa, Miho Yamauchia*, Shinichi Hataa, Ryota Watanabea, Masaaki Sadakiyoa 7 aInternational Institute for Carbon-Neutral Energy Research (WPI-I2CNER),

Electronic Supplementary Information for

Electronic Supplementary Information for: Nitrogenase bioelectrocatalysis: heterogeneous ammonia and hydrogen production by MoFe protein by Ross D. Milton, Sofiene Abdellaoui, Nimesh Khadka, Dennis R. Dean, Dnal Leech, Lance C. Seefeldt and Shelley D. Minteer

Electrochemical Energy Technology

Why subscribe and read Electrochemical Energy Technology is aiming to become a premier source of knowledge and a widely recognized platform of exchange for scientists of different disciplines and backgrounds (e.g. chemists, physicists, materials scientists, chemical and electrical engineers). This journal covers all aspects of electrochemical energy storage and conversion in primary and

Electronic Supplementary Information for: Electrochemical,

1 Electronic Supplementary Information for: Electrochemical, Spectroscopic and 1O2 Sensitization Characteristics of Synthetically Accessible Linear Tetrapyrrole Complexes of Palladium and Platinum Andrea M. Potocny, Allen J. Pistner, Glenn P. A. Yap, and

Electrochemical Oxidative [4+2] Annulation for the

Herein, we developed electrochemical oxidative [4+2] annulation reactions of heterobiaryl compounds with alkynes or alkenes, leading to the formation of several polycyclic heteroaromatic compounds. This electrosynthetic methodology serves for the straightforward π‐extension of

Electrochemical Oxidative [4+2] Annulation for the

Herein, we developed electrochemical oxidative [4+2] annulation reactions of heterobiaryl compounds with alkynes or alkenes, leading to the formation of several polycyclic heteroaromatic compounds. This electrosynthetic methodology serves for the straightforward π‐extension of

Electrochemical Energy Technology

Why subscribe and read Electrochemical Energy Technology is aiming to become a premier source of knowledge and a widely recognized platform of exchange for scientists of different disciplines and backgrounds (e.g. chemists, physicists, materials scientists, chemical and electrical engineers). This journal covers all aspects of electrochemical energy storage and conversion in primary and

Supplementary Information Revised

Electronic Supplementary Information for: Electrochemical Supercapacitors based on a novel Graphene/conjugated polymer composite system Nanjundan Ashok Kumar,*ab# Hyun Jung Choi,b Andreas Bund,c Jong-Beom Baekb and Yeon Tae Jeonga* aDivision of Image Science and Engineering,

Lifetime limitations in organic electronic devices due to

Lifetime limitations in organic electronic devices due to metal electrochemical migration - Volume 7 Issue 3 - Robert Abbel, Linda van de Peppel, Gerwin Kirchner, Jasper J. Michels, Pim Groen We use cookies to distinguish you from other users and to provide you

Electronic Supplementary Information Esi Available For

1 Electronic Supplementary Material (ESI) for Nanoscale. Tailoring optical properties of atomically-thin WS2 via ion irradiation Linan Maa, Yang Tana*, Mahdi Ghorbani-Aslb, Roman Boettgerb, Silvan Kretschmerb, Shengqiang Zhoub, Zongyu Huangc, Arkady V. Krasheninnikovb,d, Feng Chena aSchool of Physics, State Key Laboratory of Crystal Materials, Shandong University,

Morphological behaviour, electronic bond formation

2018/11/1Moreover, the improvement of electronic conductivity and rapid ion transport occur due to intimate combination between V 2 O 5 and PANI which enhances the electrochemical performances. However, further increment of V 2 O 5 ratio results in aggregation of nanorods with each other that causes a reduction of the effective surface area and reduce the specific capacitance.

Electronic Supplementary Information

Electronic Supplementary Information Experiment for testing the cleanliness of bare Au electrode. The cleanliness of bare Au electrode was checked by cyclic voltammetry in a well-known procedure,1 in which bare Au electrode was delivered to cycle voltammetric scan.

Electronic Supplementary Information (ESI) Supplementary Information

1 Electronic Supplementary Information (ESI) Supplementary Information Multi-functionalities of natural polysaccharide for enhancing electrochemical performance of macroporous Si anodes Chanhoon Kim, a Jun Yeong Jang, a Nam-Soon Choi,* and Soojin Park*

(PDF) Redox sensing of anions in pure aqueous

A small but measurable shift (210 mV) of the Fc 0/+ system was observed in the presence of HSO 4 2 (for 1), PhPO 4 22 (for 2), S 2 O 4 22 (for 1 and 2) and ATP 22 (for 1). In contrast, the ATP 22 † Electronic supplementary information (ESI) available

Supplementary Materials for

2019/5/6Supplementary Information Estimate of charge transferred per cycle: The volume of the PANI shell (thickness 𝑡) per NP (diameter 𝐷) is given by 𝑉𝑃𝐴𝑁𝐼= 4 3 [(𝐷 2 +𝑡) 3 −(𝐷 2) 3] which given the density of PANI =1.25 g/cm3 and molecular weight of each unit 𝑀 𝑤 =0.3

Improvement of Electrochemical Properties of Poly(3,4

Electrochemical redox supercapcitor is one of promising rechargeable power sources for portable electronic, display or telecommunication devices since it has a large energy density, very fast charge/discharge time and long life cycle. In this study, poly(3,4-ethylene

electrochemical immunosensor

Electronic Supplementary Material (ESI) ChemicalCommunications RoyalSociety Chemistry2011 IL-6added normalhuman serum Table S2 Determination IL-6added normalhuman serum proposedimmunosensor. All resultswere measured PBS(pH 7.4) solution containing 1.0 NumberAdd (pg mL -1 Found(pg mL -1 1.251.039 4.351.157 9.621.014 1615.38 0.9815 2019.46 0.8823 Reference

Electronic Supplementary Information

Electronic Supplementary Information Boosting oxygen reduction activity with low-temperature derived high-loading atomic cobalt on nitrogen-doped graphene for efficient Zn-air batteries 1. Experimental section 2. Supplemental figures and tables 7KLV

Vacancy Engineering of Iron‐Doped W18O49 Nanoreactors

The electrochemical nitrogen reduction reaction (NRR) is a promising energy‐efficient and low‐emission alternative to the traditional Haber–Bosch process. Usually, the competing hydrogen evolution reaction (HER) and the reaction barrier of ambient electrochemical NRR are significant challenges, making a simultaneous high NH 3 formation rate and high Faradic efficiency (FE) difficult.

Oxacycle‐Fused [1]Benzothieno[3,2‐b][1]benzothiophene

Oxacycle‐Fused [1]Benzothieno[3,2‐b][1]benzothiophene Derivatives: Synthesis, Electronic Structure, Electrochemical Properties, Ionisation Potential, and Crystal Structure Dr. Meera Mohankumar Corresponding Author meerams87gmail

Electronic Supplementary Information for

Electronic Supplementary Information for: Nitrogenase bioelectrocatalysis: heterogeneous ammonia and hydrogen production by MoFe protein by Ross D. Milton, Sofiene Abdellaoui, Nimesh Khadka, Dennis R. Dean, Dnal Leech, Lance C. Seefeldt and Shelley D. Minteer

Electronic Supplementary Information

S1 Electronic Supplementary Information A novel redox-responsive pillar[6]arene-based inclusion complex with the ferrocenium guest Wei Xia,a Xiao-Yu Hu, a Yong Chen,b Chen Lin,*a and Leyong Wang* a Key Laboratory of Mesoscopic Chemistry of MOE, Center for Multimolecular

Electronic Supplementary Information (ESI) for for Multiplex Heavy

Electronic Supplementary Information (ESI) for Bifunctional MOFs-based Ratiometric Electrochemical Sensor for Multiplex Heavy Metal Ions Rong Hu*, Xi Zhang, Kuan-Neng Chi, Tong Yang, Yun-Hui Yang* College of Chemistry and Chemical Engineering

Electrochemical Oxidative [4+2] Annulation for the

Herein, we developed electrochemical oxidative [4+2] annulation reactions of heterobiaryl compounds with alkynes or alkenes, leading to the formation of several polycyclic heteroaromatic compounds. This electrosynthetic methodology serves for the straightforward π‐extension of

Electronic Supplementary Information

1 Electronic Supplementary Information Design and Characterization of Alkoxy-wrapped Push-pull Porphyrins for Dye-sensitized Solar Cells Teresa Ripolles-Sanchis,a Bo-Cheng Guo,b Hui-Ping Wu,c Tsung-Yu Pan,c Hsuan-Wei Lee,b Sonia R. Raga, a Francisco Fabregat-Santiago,a Juan Bisquert,*a Chen-Yu Yeh,*b

Electrochemical Energy Technology

Why subscribe and read Electrochemical Energy Technology is aiming to become a premier source of knowledge and a widely recognized platform of exchange for scientists of different disciplines and backgrounds (e.g. chemists, physicists, materials scientists, chemical and electrical engineers). This journal covers all aspects of electrochemical energy storage and conversion in primary and

Vacancy Engineering of Iron‐Doped W18O49 Nanoreactors

The electrochemical nitrogen reduction reaction (NRR) is a promising energy‐efficient and low‐emission alternative to the traditional Haber–Bosch process. Usually, the competing hydrogen evolution reaction (HER) and the reaction barrier of ambient electrochemical NRR are significant challenges, making a simultaneous high NH 3 formation rate and high Faradic efficiency (FE) difficult.

Doping dynamics in light

2011/10/1(see Supplementary Information Fig. D.2c for the potential evolution). This combination results in a sharp doping front. For a doping dependent mobility (panel g), the same behavior of the ions is observed; ions accumulate at the front to screen the intrinsic region from the applied field.

Electronic Supplementary Information Electrochemical

Electronic Supplementary Information Electrochemical Desalination of Seawater and Hypersaline Brines with Coupled Electricity Storage Divyaraj Desai,a,† aEugene S. Beh, aSaroj Sahu, Vedasri Vedharathinam,a,b Quentin van Overmeere, a Charles F. de Lannoy,a,c aArun P. Jose, Armin R. Vӧlkel,a and Jessy B. Rivest,†

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