校友活動(dòng)
圓夢(mèng)北大博士 感恩母校長(zhǎng)電 | 優(yōu)秀校友馬志鵬回母校作報(bào)告
6月1日,我校校友會(huì)邀請(qǐng)光電工程學(xué)院優(yōu)秀校友、成功考取北京大學(xué)博士研究生馬志鵬回到母校,受聘“校友導(dǎo)師”并在第三期校友思行講壇上作題為"提燈引路,伴你前行——從長(zhǎng)春電子科技學(xué)院到北京大學(xué)的求學(xué)心路"的成長(zhǎng)報(bào)告。學(xué)校校友會(huì)主任李揚(yáng)老師主次本次活動(dòng)。


下午1:30,在圖書館報(bào)告廳舉辦了“長(zhǎng)春電子科技學(xué)院校友導(dǎo)師聘任儀式暨第二期校友思行講壇”。學(xué)校黨委書記汪洋、黨委組織部部長(zhǎng) 校友會(huì)主任李楊、光電工程學(xué)院院長(zhǎng)孫曉冰、光電工程學(xué)院黨總支副書記李琢、副院長(zhǎng)張欣婷、教授劉赟、副處級(jí)組織員宋陽(yáng)等教師及350名在校生參加活動(dòng)?;顒?dòng)由李楊主持。
黨委書記汪洋同志頒發(fā)聘書,聘請(qǐng)馬志鵬為我校校友導(dǎo)師。校友導(dǎo)師的聘任,充分發(fā)揮了校友在學(xué)生社會(huì)認(rèn)知、學(xué)業(yè)發(fā)展、職業(yè)規(guī)劃、創(chuàng)新創(chuàng)業(yè)等方面的榜樣和引導(dǎo)作用,導(dǎo)師發(fā)揮自身專業(yè)優(yōu)勢(shì)和知識(shí)結(jié)構(gòu)優(yōu)勢(shì),引導(dǎo)學(xué)生制定個(gè)性化、全周期的學(xué)業(yè)生涯規(guī)劃方案,促進(jìn)學(xué)生學(xué)業(yè)能力提升。


[1] 《應(yīng)用差異性金屬離子摻雜方法進(jìn)行配位聚合物多功能材料設(shè)計(jì)研究》國(guó)家自然科學(xué)基金面上項(xiàng)目(21571132)
[2] 遼寧省教育廳青年科技人才培養(yǎng)項(xiàng)目(LQGD2020005)
[3]遼寧省教育廳重點(diǎn)項(xiàng)目(ZDZRGD2020033)
發(fā)表高水平論文5篇
[1] Zhipeng Ma, Linnan Zhang*, Xue Ma, Fanian Shi*, A dual strategy for synthesizing crystal plane/defect co-modified BiOCl microsphere and photodegradation mechanism insights, Journal of Colloid and Interface Science, 2022, 617, 73-83.(中科院一區(qū)TOP期刊論文)
[2] Zhipeng Ma, Linnan Zhang*, Xue Ma, Fanian Shi*, Z-scheme g-C3N4/Bi/Bi3.64Mo0.36O6.55 photocatalyst with dual charge transfer channels: photodegradation of pollutants and mechanism insights, Separation and Purification Technology, 2022, 297, 121435.(中科院一區(qū)TOP期刊論文)
[3] Zhipeng Ma, Linnan Zhang*, Xue Ma, Yuhang Zhang, Fanian Shi*, Design of Z-scheme g-C3N4/BC/Bi25FeO40 photocatalyst with unique electron transfer channels for efficient degradation of tetracycline hydrochloride waste, Chemosphere, 2022, 289, 133262.(中科院二區(qū)TOP期刊論文)
[4] Zhipeng Ma, Xue Ma, Linnan Zhang*, Hefa Cheng*, Fanian Shi*, 1T-WS2/NCN photocatalyst with unique trion behavior and cyano-defects: photocatalytic hydrogen evolution and mechanistic insights. (Submission)
[5] Zhipeng Ma, Hefa Cheng*, Mechanistic insight into visible light-induced reactive oxygen species generation from goethite surface hydroxyls. (In preparation)