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Steven D Lacey

Explore the profile of Steven D Lacey including associated specialties, affiliations and a list of published articles. Areas
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Articles 22
Citations 505
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Recent Articles
11.
Xu S, Chen Y, Li Y, Lu A, Yao Y, Dai J, et al.
Nano Lett . 2017 Aug; 17(9):5817-5822. PMID: 28771364
The synthesis of nanoscale metal compound catalysts has attracted much research attention in the past decade. The challenges of preparation of the metal compound include the complexity of the synthesis...
12.
Wang C, Fu K, Dai J, Lacey S, Yao Y, Pastel G, et al.
Nat Commun . 2017 Jul; 8:15609. PMID: 28737174
In a lithium-ion battery, electrons are released from the anode and go through an external electronic circuit to power devices, while ions simultaneously transfer through internal ionic media to meet...
13.
Yao Y, Chen F, Nie A, Lacey S, Jacob R, Xu S, et al.
ACS Cent Sci . 2017 May; 3(4):294-301. PMID: 28470046
Nanoparticles (NPs) dispersed within a conductive host are essential for a range of applications including electrochemical energy storage, catalysis, and energetic devices. However, manufacturing high quality NPs in an efficient...
14.
Fu K, Gong Y, Liu B, Zhu Y, Xu S, Yao Y, et al.
Sci Adv . 2017 Apr; 3(4):e1601659. PMID: 28435874
Solid-state batteries are a promising option toward high energy and power densities due to the use of lithium (Li) metal as an anode. Among all solid electrolyte materials ranging from...
15.
Chen F, Gong A, Zhu M, Chen G, Lacey S, Jiang F, et al.
ACS Nano . 2017 Apr; 11(4):4275-4282. PMID: 28362487
Wood, an earth-abundant material, is widely used in our everyday life. With its mesoporous structure, natural wood is comprised of numerous long, partially aligned channels (lumens) as well as nanochannels...
16.
Lin Y, Moitoso B, Martinez-Martinez C, Walsh E, Lacey S, Kim J, et al.
Nano Lett . 2017 Apr; 17(5):3252-3260. PMID: 28362096
Lithium-oxygen (Li-O) batteries have the highest theoretical energy density of all the Li-based energy storage systems, but many challenges prevent them from practical use. A major obstacle is the sluggish...
17.
Walsh E, Han X, Lacey S, Kim J, Connell J, Hu L, et al.
ACS Appl Mater Interfaces . 2016 Oct; 8(43):29478-29485. PMID: 27718542
For commercial applications, the need for smaller footprint energy storage devices requires more energy to be stored per unit area. Carbon nanomaterials, especially graphene, have been studied as supercapacitor electrodes...
18.
Wan J, Lacey S, Dai J, Bao W, Fuhrer M, Hu L
Chem Soc Rev . 2016 Oct; 45(24):6742-6765. PMID: 27704060
2D materials have attracted tremendous attention due to their unique physical and chemical properties since the discovery of graphene. Despite these intrinsic properties, various modification methods have been applied to...
19.
Luo W, Gong Y, Zhu Y, Fu K, Dai J, Lacey S, et al.
J Am Chem Soc . 2016 Aug; 138(37):12258-62. PMID: 27570205
All-solid-state Li-batteries using solid-state electrolytes (SSEs) offer enhanced safety over conventional Li-ion batteries with organic liquid electrolytes due to the nonflammable nature of SSEs. The superior mechanical strength of SSEs...
20.
Chen Y, Li Y, Wang Y, Fu K, Danner V, Dai J, et al.
Nano Lett . 2016 Aug; 16(9):5553-8. PMID: 27505433
High capacity battery electrodes require nanosized components to avoid pulverization associated with volume changes during the charge-discharge process. Additionally, these nanosized electrodes need an electronically conductive matrix to facilitate electron...