期刊文章
1.yang, j.; li, g.; qian, y.; zhang, f.*, increased soil methane emissions and methanogenesis in oil contaminated areas. land degradation & development, 2018, in press. (if 9.787)
2.rahimi, m.; straub, a. p.; zhang, f.; zhu, x.; elimelech, m.; gorski, c.; logan, b. e., emerging electrochemical and membrane-based systems to convert low-grade heat to electricity. energy environ. sci. 2018, in press. (if 29.518)
3.zhang, h.; wan, x.; li, g.; zhang, f.*, a three-electrode electro-fenton system supplied by self-generated oxygen with automatic ph-regulation for groundwater remediation. electrochimica acta 2017, 250, 42-48. (if 4.798)
4.si, y.; li, g.*; zhang, f.*, energy-efficient oxidation and removal of arsenite from groundwater using air-cathode iron electrocoagulation. environ. sci. technol. lett. 2017, 4, (2), 71-75. (if 5.308)
5.sun, d.; cheng, s.; zhang, f.; logan, b. e., current density reversibly alters metabolic spatial structure of exoelectrogenic anode biofilms. j. power sources 2017, 356, 566-571. (if 6.395)
6.rahimi, m.; schoener, z.; zhu, x.; zhang, f.; gorski, c. a.; logan, b. e., removal of copper from water using a thermally regenerative electrodeposition battery. j. hazard. mater. 2017, 322, 551-556. (if 6.065)
7.jiang, j.; li, g.; li, z.; zhang, x.; zhang, f.*, an fe–mn binary oxide (fmbo) modified electrode for effective electrochemical advanced oxidation at neutral ph. electrochimica acta 2016, 194, 104-109. (if 4.798)
8.zhang, f.; li, g., china released the action plan on prevention and control of soil pollution. frontier of environmental science & engineering 2016, 10(4): 19 (if 1.716)
9.coulon, f.; jones, k.; li, h.; hu, q.; gao, j.; li, f.; chen, m.; zhu, y.-g.; liu, r.; liu, m.; canning, k.; harries, n.; bardos, p.; nathanail, p.; sweeney, r.; middleton, d.; charnley, m.; randall, j.; richell, m.; howard, t.; martin, i.; spooner, s.; weeks, j.; cave, m.; yu, f.; zhang, f.; jiang, y.; longhurst, p.; prpich, g.; bewley, r.; abra, j.; pollard, s., china's soil and groundwater management challenges: lessons from the uk's experience and opportunities for china. environment international 2016, 91, 196-200. (if 7.088)
10.柯杭,张芳,李广贺,张旭;铁源对碳热合成磁性碳质吸附剂的影响,环境工程学报,2016
prior to joining thu
11.zhang, f.; liu, j.; yang, w.; logan, b.e., a thermally regenerative ammonia-based battery for efficient harvesting of low-grade thermal energy as electrical power. energy & environmental science 2015, 8, 343-3249. (if 29.518)
12.zhang, f.; labarge, n.; yang, w.; liu, j.; logan, b.e., enhancing the performance of low-grade thermal energy recovery in a thermally regenerative ammonia-based battery (trab) using elevated temperatures. chemsuschem 2015, 8, 1043-1048. (if 7.226)
13.zhang, f.; liu, j.; ivanov, i.; hatzell, m.c.; yang, w.; ahn, y.; logan, b.e., reference and counter electrode positions affect electrochemical characterization of bioanodes in microbial electrochemical systems. biotechnology and bioengineering 2014, 111, 1931-1939. (if 4.481)
14.zhang, f.; ahn, y.; logan, b.e., treating refinery wastewaters in microbial fuel cells using separator electrode assembly or spaced electrode configurations. bioresource technology 2014, 152, 46-52. (if 5.651)
15.zhang, f., xia, x., luo, y., sun, d.; call, d., logan, b.e., improving startup performance with carbon mesh anodes in separator electrode assembly microbial fuel cells. bioresource technology 2013, 133, 74-81. (if 5.651)
16.zhang, f.; chen, g.; hickner, m.a.; logan, b.e., novel anti-flooding poly(dimethylsiloxane) (pdms) catalyst binder for microbial fuel cell cathodes. journal of power sources 2012, 218, 100-105. (if 6.395)
17.zhang, f.; pant, d.; logan, b.e., long-term performance of activated carbon air cathodes with different diffusion layer porosities in microbial fuel cells. biosensors and bioelectronics 2011, 30, 49-55. (if 7.780)
18.zhang, f.; merrill, m.d.; tokash, j.c.; saito, t.; cheng, s.; hickner, m.a.; logan, b.e., mesh optimization for microbial fuel cell cathodes constructed around stainless steel mesh current collectors. journal of power sources 2011, 196, 1097-1102. (if 6.395)
19.zhang, f.; saito, t.; cheng, s.; hickner, m.a.; logan, b.e., microbial fuel cell cathodes with poly(dimethylsiloxane) diffusion layers constructed around stainless steel mesh current collectors. environmental science & technology 2010, 44, 1490-1495. (if 6.198)
20.zhang, f.; cheng, s.; pant, d.; bogaert, g.v.; logan, b.e., power generation using an activated carbon and metal mesh cathode in a microbial fuel cell. electrochemistry communications 2009, 11, 2177-2179. (if 4.396)
21.liu, j.; zhang, f.; he, w.; yang, w.; feng, y.; logan, b.e., a microbial fluidized electrode electrolysis cell for enhanced hydrogen production. journal of power sources 2014, 271, 530-533. (if 6.395)
22.luo, x.; zhang, f.; liu, j.; zhang, x.; huang, x.; logan, b.e., methane production in microbial reverse-electrodialysis methanogenesis cells (mrmc) using thermolytic solutions. environmental science & technology 2014, 48, 8911-8918. (if 6.198)
23.yang, w.; zhang, f.; he, w.; liu, j.; hickner, m.a.; logan, b.e., poly(vinylidene fluoride-co- hexafluoropropylene) phase inversion coating as a diffusion layer to enhance the cathode performance in microbial fuel cells. journal of power sources 2014, 269, 379-384. (if 6.395)
24.liu, j.; zhang, f.; he, w.; zhang, x.; feng, y.; logan, b.e., intermittent contact of fluidized anode particles containing exoelectrogenic biofilms for continuous power generation in microbial fuel cells. journal of power sources 2014, 261, 278–284. (if 6.395)
25.ahn, y.; zhang, f.; logan, b.e., air humidity and water pressure effects on the performance of air-cathode microbial fuel cell cathodes. journal of power sources 2014, 247, 655-659. (if 6.395)
26.yang, w.; he, w.; zhang, f.; hickner, m.a.; logan, b.e., single-step fabrication using a phase inversion method of poly(vinylidene fluoride) (pvdf) activated carbon air cathodes for microbial fuel cells. environmental science & technology letters 2014, 1, 416-420. (if 5.308)
27.zhang, x.; pant, d.; zhang, f.; liu, j.; logan, b.e., long-term performance of chemically and physically modified activated carbons in microbial fuel cell air-cathodes. chemelectrochem 2014, 1 (11), 1859-1866. (if 4.136)
28.ahn, y.; hatzell, m.c.; zhang, f.; logan, b.e., different electrode configurations to optimize performance of multi-electrode microbial fuel cells for generating power or treating domestic wastewater. journal of power sources 2014, 249, 440-445. (if 6.395)
29.ren, l.; ahn, y.; hou, h.; zhang, f.; logan, b.e., electrochemical study of multi-electrode microbial fuel cells under fed-batch and continuous flow conditions. journal of power sources 2014, 257, 454-460. (if 6.395)
30.liu, j.; geise, g.m.; luo, x.; hou, h.; zhang, f.; feng, y.; hickner, m.a.; logan, b.e., patterned ion exchange membranes for improved power production in microbial reverse-electrodialysis cells. journal of power sources 2014, 271, 437-443. (if 6.395)
31.xia, x.; zhang, f.; zhang, x.; liang, p.; huang, x.; logan, b.e., use of pyrolyzed iron ethylenediaminetetraacetic acid modified activated carbon as air-cathode catalyst in microbial fuel cells. acs applied materials & interfaces 2013, 5, 7862-7866. (if 7.504)
32.chen, g.; zhang, f.; logan, b.e.; hickner, m.a., poly(vinyl alcohol) separators improve the coulombic efficiency of activated carbon cathodes in microbial fuel cells. electrochemistry communications 2013, 34, 150-152. (if 4.396)
33.luo, y.; zhang, f.; wei, b.; liu, g.; zhang, r.; logan, b.e., the use of cloth fabric diffusion layers for scalable microbial fuel cells. biochemical engineering journal 2013, 73, 49-52. (if 2.892)
34.cusick, r.d.; hatzell, m.c.; zhang, f.; logan, b.e., minimal red cell pairs markedly improve electrode kinetics and power production in microbial reverse electrodialysis cells. environmental science & technology 2013, 47, 14518-14524. (if 6.198)
35.xia, x.; tokash, j.c.; zhang, f.; liang, p.; huang, x.; logan, b.e., oxygen-reducing biocathodes operating with passive oxygen transfer in microbial fuel cells. environmental science & technology 2013, 47, 2085-2091. (if 6.198)
36.wei, b.; tokash, j.c.; zhang, f.; kim, y.; logan, b.e., electrochemical analysis of separators used in single-chamber, air-cathode microbial fuel cells. electrochimica acta 2013, 89, 45-51. (if 4.798)
37.luo, x.; nam, j.-y.; zhang, f.; zhang, x.; liang, p.; huang, x.; logan, b.e., optimization of membrane stack configuration for efficient hydrogen production in microbial reverse-electrodialysis electrolysis cells coupled with thermolytic solutions. bioresource technology 2013, 140, 399-405. (if 5.651)
38.hays, s.; zhang, f.; logan, b.e., performance of two different types of anodes in membrane electrode assembly microbial fuel cells for power generation from domestic wastewater. journal of power sources 2011, 196, 8293-8300. (if 6.395)
39.luo, y.; zhang, f.; wei, b.; liu, g.; zhang, r.; logan, b.e., power generation using carbon mesh cathodes with different diffusion layers in microbial fuel cells. journal of power sources 2011, 196, 9317-9321. (if 6.395)
发明专利
40.张芳,蒋晶,李广贺,张旭;纳米铁锰复合氧化物负载的气体扩散电极及其制备与应用,201510080569.8
41.黄霞;王丽;梁鹏;魏锦程;夏雪;张芳;布鲁斯?洛根,含氮过渡金属微生物燃料电池催化剂及其制备方法。专利号:zl201110021367.8