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用于快速析氢反应和析氧反应动力学的铁-(1T)-VSe纳米片与掺磷铁-钴硒纳米棒的同步表面-界面和晶相工程多面混合纳米结构

Synchronous Surface-Interface and Crystal-Phase Engineered Multifaceted Hybrid Nanostructure of Fe-(1T)-VSe Nanosheet and Fe-CoSe Nanorods Doped with P for Rapid HER and OER, Kinetics.

作者信息

Pan Uday Narayan, Kandel Mani Ram, Tomar Anuj Kumar, Kim Nam Hoon, Lee Joong Hee

机构信息

Department of Nano Convergence Engineering (BK21 FOUR), Jeonbuk National University, Jeonju, Jeonbuk, 54896, Republic of Korea.

Department of Chemistry, Tribhuvan University, Amrit Campus, Kathmandu, 44613, Nepal.

出版信息

Small. 2024 Feb;20(7):e2305519. doi: 10.1002/smll.202305519. Epub 2023 Oct 9.

Abstract

Two different nanostructures of two dissimilar highly-potent active electrocatalysts, P-dopped metallic-(1T)-Fe-VSe (P,Fe-1T-VSe ) nanosheet and P-dopped Fe-CoSe (P,Fe-CoSe ) nanorods are hybridized and integrated into a single heterostructure (P,Fe-(VCo)Se ) on Ni-foam for high-performance water splitting (WS). The catalytic efficiency of VSe nanosheets is first enhanced by enriching metallic (1T)-phase, then forming bimetallic Fe-V selenide, and finally by P-doping. Similarly, the catalytic efficiency of CoSe nanorods is boosted by first fabricating Fe-Co bimetallic selenide and then P-doping. To develop super-efficient electrocatalysts for WS, two individual electrocatalysts P,Fe-1T-VSe nanosheet and P,Fe-CoSe are hybridized and integrated to form a heterostructure (P,Fe-(VCo)Se ). Metallic (1T)-phase of transition metal dichalcogenides has much higher conductivity than the 2H-phase, while bimetallization and P-doping activate basal planes, develop various active components, and form heterostructures that develop a synergistic interfacial effect, all of which, significantly boost the catalytic efficacy of the P,Fe-(VCo)Se . P,Fe-(VCo)Se shows excellent performance requiring very low overpotential (η = 50 mV@10 mAcm and η = 230 mV@20 mAcm ). P,Fe-(VCo)Se (+, -) device requires a cell potential of 1.48 V to reach 10 mA cm for overall WS.

摘要

两种不同的高效活性电催化剂——P掺杂金属型(1T)-Fe-VSe(P,Fe-1T-VSe)纳米片和P掺杂Fe-CoSe(P,Fe-CoSe)纳米棒的两种不同纳米结构被杂交并整合到泡沫镍上的单一异质结构(P,Fe-(VCo)Se)中,用于高效水分解(WS)。VSe纳米片的催化效率首先通过富集金属(1T)相得到提高,接着形成双金属Fe-V硒化物,最后通过P掺杂进一步提高。同样,CoSe纳米棒的催化效率首先通过制备Fe-Co双金属硒化物得到提升,然后通过P掺杂进一步提高。为了开发用于WS的超高效电催化剂,将两种单独的电催化剂P,Fe-1T-VSe纳米片和P,Fe-CoSe杂交并整合以形成异质结构(P,Fe-(VCo)Se)。过渡金属二硫属化物的金属(1T)相比2H相具有更高的电导率,而双金属化和P掺杂激活基面,产生各种活性成分,并形成具有协同界面效应的异质结构,所有这些都显著提高了P,Fe-(VCo)Se的催化效率。P,Fe-(VCo)Se表现出优异的性能,在10 mAcm时过电位极低(η = 50 mV),在20 mAcm时过电位为230 mV。P,Fe-(VCo)Se(+,-)装置在整体水分解达到10 mA cm时需要1.48 V的电池电位。

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