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<!DOCTYPE HTML>
<!--
Strongly Typed by HTML5 UP
html5up.net | @ajlkn
Free for personal and commercial use under the CCA 3.0 license (html5up.net/license)
-->
<html>
<head>
<title>Natalia Spitha</title>
<meta charset="utf-8" />
<meta name="viewport" content="width=device-width, initial-scale=1, user-scalable=no" />
<link rel="stylesheet" href="/assets/css/main.css" />
<script src="assets/js/jquery.min.js"></script>
</head>
<body class="homepage is-preload">
<div id="page-wrapper">
<!-- Header -->
<section id="header">
<div class="container">
<!-- Logo -->
<!-- <h1 id="logo">Research, Teaching, & Learning Portfolio</h1> -->
<h2>Natalia Spitha</h2>
<p>Alexander von Humboldt Postdoctoral Fellow <red>|</red> Humboldt-Universität zu Berlin</p>
<!-- Menu -->
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<script>$("#nav").load("/menu.html")</script>
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<img src="images/20220323_222218_2.jpg" width=100% height=auto>
</div>
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<div id="content" style="margin-left:15%; margin-right: 15%">
<!-- class="col-9 col-8-medium col-12-small" -->
<!-- Post -->
<article class="box post">
<h3>About Me</h3>
<p> I am a scientist who has spent most of her graduate school time researching spectroscopy of solar-energy materials, before finding herself increasingly passionate about chemistry education research. I am currently a postdoctoral fellow at Humboldt University of Berlin (<a href="https://www.tiemannlab.de/" target="_blank">Tiemann Chemistry Education Lab</a>), creating and evaluating digital learning environments for chemistry. This website was initially created to host my teaching portfolio as part of the Delta program at UW-Madison, but it is also a starting point linking to my research and other professional projects.</p>
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Banner
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<h3>Recent Updates</h3>
<p><strong>December 2020:</strong> Received an Outstanding Chemistry TA Award at
<a href="https://chem.wisc.edu/2021/01/08/bertram-and-bain-receive-james-w-taylor-excellence-teaching-awards/"
target="_blank">UW-Madison Chemistry Department Taylor Symposium</a></p>
<p><strong>March 2021:</strong> <a href="https://pubs.acs.org/doi/10.1021/jacs.0c10000"
target="_blank">Collaboration on 2D/3D perovskite heterostructure photophysics published in JACS</a> </p>
<p><strong>March 2021:</strong> <a href="https://pubs.acs.org/doi/10.1021/acs.jchemed.0c01433"
target="_blank">Beer's Law Simulation Activity published in J. Chem. Educ.</a> </p>
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<h2>Projects</h2>
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<div class="col-4 col-6-medium col-12-small">
<!-- Feature -->
<!-- <section>
<header>
<h3>Perovskite Photophysics</h3>
</header>
<img src="images/per_photophysics_dark.png">
<p>Lead halide perovskites are an emerging technology in the design of solar cells and
optoelectronics. They are efficient and inexpensive to synthesize, but can have shortcomings in their stability.
As attempts are constantly made to synthesize new perovskites that balance high performance with stability,
my research focuses on characterizing their charge carrier behavior using spectroscopy. </p>
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<li><a href="/projects/perovskite+photophysics.html#main-ds" class="button">Read More...</a></li>
</ul>
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<!-- Feature -->
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<h3>Beer's Law Simulation</h3>
</header>
<img src="images/BLSim-wide.png">
<p>This simulation was developed to give undergraduate analytical chemistry students
a more intuitive explanation as to why Beer's law (i.e. absorbance being directly
proportional to concentration) holds. We are currently investigating the effects
of an activity based on this simulation on students' reasoning about the phenomenon
of absorption.
</p>
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<li><a href="/projects/beer's+law+simulation+project.html#main-ds" class="button">Read More...</a></li>
</ul>
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<h3>KinetiKit</h3>
</header>
<img src="images/use_kinetikit.jpg">
<p><em>KinetiKit</em> is a Python-based software package that I developed during my graduate work.
It can be used to analyze temporal data (in my case, time-resolved photoluminescence of semiconductors)
using models of any desired complexity that represent the physical behavior of particles in a system.</p>
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